Turning WIDIA Victory...D2 D44. Grades and Grade Descriptions...D4. Chipbreaker Geometries...D5 D7. Catalog Numbering System...

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2 Turning WIDIA Victory D2 D44 Grades and Grade Descriptions D4 Chipbreaker Geometries D5 D7 Catalog Numbering System D8 D9 Speed and Feed Chart Negative Inserts D10 D11 Speed and Feed Chart Positive Inserts D12 D13 Inserts D14 D44 WT Turning, Grooving, Cut-Off, and Profiling D47 D61 Choosing the Correct WT Tooling D50 D53 Grades and Grade Descriptions D54 Catalog Numbering System D55 Speed and Feed Chart D56 D57 Inserts D58 D61 WGT and WGF Cut-Off Inserts D62 D65 WIDIA Value D66 D90 Speed and Feed Chart Negative Inserts D68 D69 Speed and Feed Chart Positive Inserts D70 D71 Chipbreaker Geometries D72 D73 Grades and Grade Descriptions D74 Catalog Numbering System D76 D77 Inserts D78 D91 D1

3 New WIDIA Victory Turning Grades and New Geometries Specifically engineered multilayer coating provides high-speed capability for finishing to roughing operations. New geometries enhance chip control for better tool life and superior surface finshes. Victory Reduce cycle times high speed and feed capability. Long tool life new multilayer coating provides better wear resistance. Proven seating smooth and secure seating surface. New violet coating easily identifies flank wear. Post-coat treatment Improves edge toughness. Long, predictable tool life. Reduces depth-of-cut notching. Wide range of applications. Improved edge toughness Provides smooth outer surface to reduce forces, friction, and workpiece sticking. Post-coat grinding Provides secure seating surface. New geometry identification system T-CVD/CVD TiN-TiCN-AI ZrCN Alpha alumina layer Provides coating integrity at elevated speeds. igher productivity and dependability at high cutting temperatures. D2

4 wear resistance WP Grades for Steel Three grades and 11 geometries for use in roughing to finishing operations. Increase cutting speed and/or feed rate to gain productivity. toughness wear resistance W Grades for Stainless Steel Three grades across 11 geometries for use in roughing to finishing operations. Very good balance of wear resistance and toughness for long predictable tool life. toughness wear resistance W Grades for Cast Iron Two grades to cover all of your cast iron turning operations. Increase cutting speed and/or feed rate by up to 30% over similar competitive grades. toughness wear resistance WS Grades for igh-temp Alloys Two grades for your rough and finish turning operations. Very good wear resistance for longer tool life. toughness D3

5 WIDIA Victory Grades and Grade Descriptions Coatings provide high-speed capability and are engineered for finishing to light roughing. P N S Steel Stainless Steel Cast Iron Non-Ferrous aterials igh-temp Alloys ardened aterials wear resistance toughness Coating Grade Description P WP15CT Coated carbide. T-CVD/CVD TiN-TiCN-Al 2 O 3 -ZrCN. Good balance of wear resistance and toughness properties. Light and medium machining. For steels. WP25CT C-P15 Coated carbide. T-CVD/CVD TiN-TiCN-Al 2 O 3 -ZrCN. Good toughness properties. edium and heavy machining. For steels. P C-P25 P WP35CT Coated carbide. T-CVD/CVD TiN-TiCN-Al 2 O 3 -ZrCN. Proven on all roughing and heavy roughing operations, wet or dry, on interrupted and non-interrupted cuts. C-P35 W15CT Coated carbide. T-CVD/CVD TiN-TiCN-Al 2 O 3 -ZrCN. igh degree of wear resistance and good resistance to depth-of-cut notching for long tool life in finishing to medium turning applications. C-15 Grade W25CT Coated carbide. T-CVD/CVD TiN-TiCN-Al 2 O 3 -ZrCN. Good balance of wear resistance and toughness properties. Light and medium machining. For austenitic stainless steel AISI series. C-25 W35CT Coated carbide. T-CVD/CVD TiN-TiCN-Al 2 O 3 -ZrCN. Good toughness and wear resistance balance. For medium to roughing operations with light and heavily interrupted cuts. C-35 W05CT Coated carbide. T-CVD/CVD TiN-TiCN-Al 2 O 3. Increased wear resistance for long tool life at high cutting speeds. Enhanced edge strength against depth-of-cut notching in interrupted cuts. C-05 W20CT Coated carbide. T-CVD/CVD TiN-TiCN-Al 2 O 3. Light and medium machining. For cast irons. C-20 WS10PT C-S10 Coated carbide. PVD TiAN Nano-multilayer. Light machining. For difficult-to-machine alloys and stainless steels. S WS25PT C-S25 Coated carbide. PVD TiAN Nano-multilayer. Light and medium machining. For difficult-to-machine alloys and stainless steels. S D4

6 WIDIA Victory Chipbreaker Geometries Negative Inserts..A Flat top geometry for machining cast iron. For finishing to roughing applications. 16,0 8, depth of cut (mm) a p 4,0 2,0 1,0 0,5 0,1 0,2 0,4 0,8 1,6 depth of cut (inch) a p feed rate (mm) f n feed rate (inch) f n.np For medium duty machining of tough work materials, such as chrome- and nickel-based alloys. inimizes tendency for materials to adhere to insert. S depth of cut (mm) a p 16,0 8,0 4,0 2,0 1,0 0,5 0,1 0,2 0,4 0,8 1,6 S depth of cut (inch) a p feed rate (mm) f n feed rate (inch) f n CT Designed for outward copy turning. Where other geometries produce long chips, the unique distribution of the cut results in good chip control. depth of cut (mm) a p 16,0 8,0 4,0 2,0 1,0 0,5 0,1 0,2 0,4 0,8 1,6 depth of cut (inch) a p feed rate (mm) f n feed rate (inch) f n FF For finish turning, producing smooth, accurate surfaces. Very good chip control, especially at low depths of cut. 16,0 P 8,0 4,0 depth of cut (mm) a p 2,0 1,0 0,5 0,1 0,2 0,4 0,8 1,6.630 P.315 depth of cut (inch) a p feed rate (mm) f n feed rate (inch) f n FW Wiper geometry for finishing, when good surface finish is needed using high feed rates. First choice for high-performance finishing. depth of cut (mm) a p 16,0 8,0 4,0 2,0 1,0 0,5 0,1 0,2 0,4 0,8 1,6 depth of cut (inch) a p feed rate (mm) f n feed rate (inch) f n D5

7 WIDIA Victory Chipbreaker Geometries Negative Inserts L For finishing to medium machining with a negative, stable cutting edge. P 16,0 8,0 P depth of cut (mm) a p 4,0 2,0 1,0 0,5 0,1 0,2 0,4 0,8 1,6 depth of cut (inch) a p feed rate (mm) f n feed rate (inch) f n R For medium to light roughing of steels, difficult-to-machine high-alloy titanium, and aluminum materials. igh strength to deal with heavy chip deformation. P 16,0 depth of cut (mm) a p 8,0 4,0 2,0 1,0 0,5 0,1 0,2 0,4 0,8 1,6 P.630 depth of cut (inch) a p feed rate (mm) f n feed rate (inch) f n W Wiper geometry for light to medium turning with high feed rates. Feed twice as high as with edges with full corner radii to produce same surface finish. depth of cut (mm) a p 16,0 8,0 4,0 2,0 1,0 0,5 0,1 0,2 feed rate (mm) 0,4 0,8 f n 1,6 depth of cut (inch) a p feed rate (inch) f n R For medium-duty to roughing. Outstanding chip control. igh edge strength for interrupted cuts, forging skin, or scale. Preferred for all cast iron such as gray, malleable, and nodular. 16,0 P 8,0 4,0 depth of cut (mm) a p 2,0 1,0 0,5 0,1 0,2 feed rate (mm) 0,4 0,8 f n 1,6 P depth of cut (inch) a p feed rate (inch) f n UF For finishing with a positive cutting edge for reduced cutting forces and superior surface quality. depth of cut (mm) a p 16,0 8,0 4,0 2,0 1,0 0,5 0,1 0,2 feed rate (mm) 0,4 0,8 f n 1,6 depth of cut (inch) a p feed rate (inch) f n D6

8 WIDIA Victory Chipbreaker Geometries Negative Inserts U For medium-duty turning operations. Soft-cutting chipbreaker. Used in applications producing varying chip sections, such as profile or copy turning. Good dimensional accuracy. For soft steel materials and stainless steels. depth of cut (mm) a p 16,0 8,0 4,0 2,0 1,0 0,5 0,1 0,2 feed rate (mm) 0,4 0,8 f n 1,6 depth of cut (inch) a p feed rate (inch) f n UR Roughing geometry with smooth chip forming and improved coolant flow for increased tool life. Positive geometry reduces cutting forces and improves depth-of-cut notching resistance. Ideally suitable for stainless steel applications and for smooth machining of steel. P 16,0 depth of cut (mm) a p 8,0 4,0 2,0 1,0 0,5 0,1 0,2 0,4 0,8 1,6 P depth of cut (inch) a p feed rate (mm) f n feed rate (inch) f n Positive Inserts FP For finishing to medium turning operations with optimal chip control over a wide range of cutting conditions and workpiece materials. P 16,0 depth of cut (mm) a p 8,0 4,0 2,0 1,0 0,5 0,1 0,2 0,4 0,8 1,6 P depth of cut (inch) a p feed rate (mm) f n feed rate (inch) f n P For medium to rough turning with reduced cutting forces and improved chip control for high feed rates. Suitable for high metal removal rates and spindling applications. P 16,0 depth of cut (mm) a p 8,0 4,0 2,0 1,0 0,5 0,1 0,2 0,4 0,8 1,6 P depth of cut (inch) a p feed rate (mm) f n feed rate (inch) f n D7

9 WIDIA Victory Catalog Numbering System ow Do Catalog Numbers Work? Each character in our signifies a specific trait of that product. Use the following key columns and corresponding images to easily identify which attributes apply. CNG432UR C N G 4 Insert Shape Insert Clearance Angle Tolerance Class Insert Features Size exagon 120 O Octagon 135 P Pentagon 108 R Round S Square 90 T C D E V Triangular 60 Rhomboid A B C D E F G Tolerances apply prior to edge prep and coating Rε Rε Rε D: Theoretical diameter of the insert inscribed circle S: Thickness B: See figures below Special Design Code for inch cutting edge length L10 D inch inch C D R S T V W 1.2 (5) 5/32 S (6) 3/ S3 1.8 (7) 7/ / / / / / / / / / / / W Trigon 80 with enlarged corner angles N tolerance tolerance tolerance tolerance class on D on B on S C ±.0010" ±.0005" ±.001" L Rectangular 90 P ±.0005" ±.0005" ±.001" E ±.0010" ±.0010" ±.001" G ±.0010" ±.0010" ±.005" A B N/ Parallelogram O Indicated for other clearance angles requiring descriptions. See tables in size column ±.005" U See tables in size column ±.005" D8

10 WIDIA Victory Catalog Numbering System By referencing this easy-to-use guide, you can identify the correct product to meet your needs. CNG432UR 3 Thickness S 2 Corner Radius Rε and of Insert (optional) Cutting Edge (optional) UR Chipbreaker (optional) symbol thickness inch inch.5 (1) 1/ (2) 1/ (3) 3/32 2 1/ /32 3 3/ /32 4 1/4 5 5/16 6 3/8 7 7/ /2 corner symbol radius inch inch X /64 2 1/32 3 3/64 4 1/16 5 5/64 6 3/32 7 7/64 8 1/8 round insert R = Right hand L = Left hand N = Neutral L N R F Sharp Rounded Chamfered Chamfered and Rounded Double-Chamfered Double-Chamfered and Rounded 13 Railroad Light L edium Light UF Universal Finishing CT Copy Turning R edium Roughing U Universal edium FF Fine Finishing W edium Wiper UR Universal Roughing FP Finish Positive R Roughing eavy.np Sharp edium FW Finish Wiper T Negative Land D9

11 WIDIA Victory Speed and Feed Chart Negative Inserts etric Turning WIDIA Victory DIN 513 VDI 3323 A Finishing (ap x f = 1 x 0,10) B edium (ap x f = 2 x 0,20) C Roughing (ap x f = 4 x 0,25) D eavy Roughing (ap x f = 6 x 0,60) aterial Group min Start max min Start max min Start max min Start max min Start max min Start max min Start max Geometry FF L L UR R UR R R R ap [mm] 0,2 2,0 0,8 5,0 1,0 8,0 2,0 15,0 f [mm] 0,05 0,20 0,16 0,40 0,20 0,60 0,40 1,00 WP15CT WP15CT WP25CT WP15CT WP25CT WP25CT WP35CT P Geometry FF UF FW UF U W.NP U.NP UR R R ap [mm] 0,2 2,0 0,6 5,0 0,5 6,0 4,0 15,0 f [mm] 0,05 0,20 0,12 0,40 0,10 0,60 0,4 1,0 W15CT W15CT W25CT W25CT W35CT W35CT Geometry FF FW W.NA L UR.NA R UR R.NA ap [mm] 0,2 2,0 1,0 8,0 1,0 8,0 2,0 15,0 f [mm] 0,05 0,20 0,20 0,60 0,2 0,6 0,25 1,20 W05CT/W20CT/ WS10PT W05CT/W20CT/ WS10PT W05CT/W20CT W05CT/W20CT Geometry.NP.NP U.NP UR ap [mm] 0,5 4,0 0,5 4,0 0,5 6,0 f [mm] 0,10 0,50 0,10 0,50 0,10 0,60 WS10PT/WS25PT WS10PT/WS25PT/ W25CT W25CT S D10

12 WIDIA Victory Speed and Feed Chart Negative Inserts Inch DIN 513 VDI 3323 aterial Group P S A Finishing (doc x feed =.0394 x.0039) B edium (doc x feed =.0787 x.0079) C Roughing (d.o.c. x feed =.1575 x.0098) D eavy roughing (d.o.c. x feed =.2362 x.0236) min Start max min Start max min Start max min Start max min Start max min Start max min Start max Geometry FF L L UR R UR R R R DOC [in] f [in] WP15CT WP15CT WP25CT WP15CT WP25CT WP25CT WP35CT Geometry FF UF FW U FF U W.NP U.NP UR R R DOC [in] f [in] W15CT W15CT W25CT W25CT W35CT W35CT Geometry FF FW W.NA L UR.NA R UR R.NA DOC [in] f [in] W05CT/W20CT/ WS10PT W05CT/W20CT/ WS10PT W05CT/W20CT W05CT/W20CT Geometry.NP.NP U.NP UR DOC [in] f [in] WS10PT/WS25PT WS10PT/WS25PT/ W25CT W25CT Turning WIDIA Victory D11

13 WIDIA Victory Speed and Feed Chart Positive Inserts etric Turning WIDIA Victory DIN 513 VDI 3323 A Finishing (ap x f = 1 x 0,10) B edium (ap x f = 2 x 0,20) C Roughing (ap x f = 4 x 0,25) aterial Group min Start max min Start max min Start max min Start max min Start max Geometry FP FP P P ap [mm] 0,2 2,0 0,3 4,5 0,7 5,0 f [mm] 0,05 0,20 0,08 0,35 0,12 0,40 WP15CT WP15CT WP15CT/WP25CT WP25CT WP35CT P Geometry FP FP P P ap [mm] 0,2 2,0 0,3 4,5 0,3 4,5 f [mm] 0,05 0,20 0,08 0,35 0,08 0,35 W15CT W15CT W25CT W25CT W35CT Geometry FP FP P.CW P.CW ap [mm] 0,2 2,0 0,3 4,5 1,0 8,0 f [mm] 0,05 0,20 0,08 0,35 0,1 0,5 W05CT/W20CT W05CT/W20CT W20CT D12

14 WIDIA Victory Speed and Feed Chart Positive Inserts Inch DIN 513 VDI 3323 A Finishing (doc x feed =.0394 x.0039) B edium (doc x feed =.0787 x.0079) C Roughing (doc x feed =.1575 x.0098) aterial Group min Start max min Start max min Start max min Start max min Start max Geometry FP FP P P DOC [in] f [in] WP15CT WP15CT WP15CT/WP25CT WP25CT WP35CT P Geometry FP FP P P DOC [in] f [in] W15CT W15CT W25CT W25CT W35CT Geometry FP FP P.CW P.CW DOC [in] f [in] W05CT/W20CT W05CT/W20CT W20CT Turning WIDIA Victory D13

15 WIDIA Victory Carbide Inserts P N S CCT-FP Turning WIDIA Victory WP15CT WP25CT WP35CT W15CT W25CT W35CT W05CT W20CT WS10PT WS25PT mm in mm in mm in mm in mm in CCT060202FP CCT21505FP 6,35 1/4 6, ,38 3/32 0, , CCT060204FP CCT2151FP 6,35 1/4 6, ,38 3/32 0,4 1/64 2, CCT060208FP CCT2152FP 6,35 1/4 6, ,38 3/32 0,8 1/32 2, CCT09T302FP CCT32505FP 9,53 3/8 9, ,97 5/32 0, , CCT09T304FP CCT3251FP 9,53 3/8 9, ,97 5/32 0,4 1/64 4, CCT09T308FP CCT3252FP 9,53 3/8 9, ,97 5/32 0,8 1/32 4, CCT120404FP CCT431FP 12,70 1/2 12, ,76 3/16 0,4 1/64 5, CCT120408FP CCT432FP 12,70 1/2 12, ,76 3/16 0,8 1/32 5, CCT120412FP CCT433FP 12,70 1/2 12, ,76 3/16 1,2 3/64 5, CCT-P mm in mm in mm in mm in mm in CCT060204P CCT2151P 6,35 1/4 6, ,38 3/32 0,4 1/64 2, CCT09T304P CCT3251P 9,53 3/8 9, ,97 5/32 0,4 1/64 4, CCT09T308P CCT3252P 9,53 3/8 9, ,97 5/32 0,8 1/32 4, CCT09T312P CCT3253P 9,53 3/8 9, ,97 5/32 1,2 3/64 4, CCT120408P CCT432P 12,70 1/2 12, ,76 3/16 0,8 1/32 5, CCT120412P CCT433P 12,70 1/2 12, ,76 3/16 1,2 3/64 5, CCW mm in mm in mm in mm in mm in CCW CCW2151 6,35 1/4 6, ,38 3/32 0,4 1/64 2, CCW CCW321 9,53 3/8 9, ,18 1/8 0,4 1/64 4, CCW CCW322 9,53 3/8 9, ,18 1/8 0,8 1/32 4, CCW09T304 CCW3251 9,53 3/8 9, ,97 5/32 0,4 1/64 4, CCW09T308 CCW3252 9,53 3/8 9, ,97 5/32 0,8 1/32 4, CCW CCW431 12,70 1/2 12, ,76 3/16 0,4 1/64 5, CCW CCW432 12,70 1/2 12, ,76 3/16 0,8 1/32 5, D14

16 WIDIA Victory Carbide Inserts P N S CNA WP15CT WP25CT WP35CT W15CT W25CT W35CT W05CT W20CT WS10PT WS25PT mm in mm in mm in mm in mm in CNA CNA431 12,70 1/2 12, ,76 3/16 0,4 1/64 5, CNA CNA432 12,70 1/2 12, ,76 3/16 0,8 1/32 5, CNA CNA433 12,70 1/2 12, ,76 3/16 1,2 3/64 5, CNA CNA434 12,70 1/2 12, ,76 3/16 1,6 1/16 5, CNA CNA542 15,88 5/8 16, ,35 1/4 0,8 1/32 6, CNA CNA543 15,88 5/8 16, ,35 1/4 1,2 3/64 6, CNA CNA544 15,88 5/8 16, ,35 1/4 1,6 1/16 6, CNA CNA642 19,05 3/4 19, ,35 1/4 0,8 1/32 7, CNA CNA643 19,05 3/4 19, ,35 1/4 1,2 3/64 7, CNA CNA644 19,05 3/4 19, ,35 1/4 1,6 1/16 7, Turning WIDIA Victory CNG-FF mm in mm in mm in mm in mm in CNG120404FF CNG431FF 12,70 1/2 12, ,76 3/16 0,4 1/64 5, CNG120408FF CNG432FF 12,70 1/2 12, ,76 3/16 0,8 1/32 5, CNG120412FF CNG433FF 12,70 1/2 12, ,76 3/16 1,2 3/64 5, CNG-FW mm in mm in mm in mm in mm in CNG120404FW CNG431FW 12,70 1/2 12, ,76 3/16 0,4 1/64 5, CNG120408FW CNG432FW 12,70 1/2 12, ,76 3/16 0,8 1/32 5, CNG120412FW CNG433FW 12,70 1/2 12, ,76 3/16 1,2 3/64 5, D15

17 WIDIA Victory Carbide Inserts P N S CNG-L Turning WIDIA Victory mm in mm in mm in mm in mm in CNG120404L CNG431L 12,70 1/2 12, ,76 3/16 0,4 1/64 5, CNG120408L CNG432L 12,70 1/2 12, ,76 3/16 0,8 1/32 5, CNG120412L CNG433L 12,70 1/2 12, ,76 3/16 1,2 3/64 5, CNG120416L CNG434L 12,70 1/2 12, ,76 3/16 1,6 1/16 5, CNG-R WP15CT WP25CT WP35CT W15CT W25CT W35CT W05CT W20CT WS10PT WS25PT mm in mm in mm in mm in mm in CNG120404R CNG431R 12,70 1/2 12, ,76 3/16 0,4 1/64 5, CNG120408R CNG432R 12,70 1/2 12, ,76 3/16 0,8 1/32 5, CNG120412R CNG433R 12,70 1/2 12, ,76 3/16 1,2 3/64 5, CNG120416R CNG434R 12,70 1/2 12, ,76 3/16 1,6 1/16 5, CNG160608R CNG542R 15,88 5/8 16, ,35 1/4 0,8 1/32 6, CNG160612R CNG543R 15,88 5/8 16, ,35 1/4 1,2 3/64 6, CNG160616R CNG544R 15,88 5/8 16, ,35 1/4 1,6 1/16 6, CNG190612R CNG643R 19,05 3/4 19, ,35 1/4 1,2 3/64 7, CNG190616R CNG644R 19,05 3/4 19, ,35 1/4 1,6 1/16 7, CNG-W mm in mm in mm in mm in mm in CNG120408W CNG432W 12,70 1/2 12, ,76 3/16 0,8 1/32 5, CNG120412W CNG433W 12,70 1/2 12, ,76 3/16 1,2 3/64 5, D16

18 WIDIA Victory Carbide Inserts P N S CNG-R WP15CT WP25CT WP35CT W15CT W25CT W35CT W05CT W20CT WS10PT WS25PT mm in mm in mm in mm in mm in CNG120408R CNG432R 12,70 1/2 12, ,76 3/16 0,8 1/32 5, CNG120412R CNG433R 12,70 1/2 12, ,76 3/16 1,2 3/64 5, CNG120416R CNG434R 12,70 1/2 12, ,76 3/16 1,6 1/16 5, CNG160608R CNG542R 15,88 5/8 16, ,35 1/4 0,8 1/32 6, CNG160612R CNG543R 15,88 5/8 16, ,35 1/4 1,2 3/64 6, CNG160616R CNG544R 15,88 5/8 16, ,35 1/4 1,6 1/16 6, CNG190608R CNG642R 19,05 3/4 19, ,35 1/4 0,8 1/32 7, CNG190612R CNG643R 19,05 3/4 19, ,35 1/4 1,2 3/64 7, CNG190616R CNG644R 19,05 3/4 19, ,35 1/4 1,6 1/16 7, CNG190624R CNG646R 19,05 3/4 19, ,35 1/4 2,4 3/32 7, Turning WIDIA Victory CNG-UF mm in mm in mm in mm in mm in CNG120404UF CNG431UF 12,70 1/2 12, ,76 3/16 0,4 1/64 5, CNG120408UF CNG432UF 12,70 1/2 12, ,76 3/16 0,8 1/32 5, CNG120412UF CNG433UF 12,70 1/2 12, ,76 3/16 1,2 3/64 5, CNG-U mm in mm in mm in mm in mm in CNG120404U CNG431U 12,70 1/2 12, ,76 3/16 0,4 1/64 5, CNG120408U CNG432U 12,70 1/2 12, ,76 3/16 0,8 1/32 5, CNG120412U CNG433U 12,70 1/2 12, ,76 3/16 1,2 3/64 5, D17

19 WIDIA Victory Carbide Inserts P N S CNG-UR Turning WIDIA Victory WP15CT WP25CT WP35CT W15CT W25CT W35CT W05CT W20CT WS10PT WS25PT mm in mm in mm in mm in mm in CNG120404UR CNG431UR 12,70 1/2 12, ,76 3/16 0,4 1/64 5, CNG120408UR CNG432UR 12,70 1/2 12, ,76 3/16 0,8 1/32 5, CNG120412UR CNG433UR 12,70 1/2 12, ,76 3/16 1,2 3/64 5, CNG120416UR CNG434UR 12,70 1/2 12, ,76 3/16 1,6 1/16 5, CNG160608UR CNG542UR 15,88 5/8 16, ,35 1/4 0,8 1/32 6, CNG160612UR CNG543UR 15,88 5/8 16, ,35 1/4 1,2 3/64 6, CNG160616UR CNG544UR 15,88 5/8 16, ,35 1/4 1,6 1/16 6, CNG190612UR CNG643UR 19,05 3/4 19, ,35 1/4 1,2 3/64 7, CNG190616UR CNG644UR 19,05 3/4 19, ,35 1/4 1,6 1/16 7, CNP mm in mm in mm in mm in mm in CNP CNP431 12,70 1/2 12, ,76 3/16 0,4 1/64 5, CNP CNP432 12,70 1/2 12, ,76 3/16 0,8 1/32 5, CNP CNP433 12,70 1/2 12, ,76 3/16 1,2 3/64 5, CNP CNP542 15,88 5/8 16, ,35 1/4 0,8 1/32 6, CNP CNP543 15,88 5/8 16, ,35 1/4 1,2 3/64 6, CNP CNP643 19,05 3/4 19, ,35 1/4 1,2 3/64 7, CNP CNP644 19,05 3/4 19, ,35 1/4 1,6 1/16 7, CPT-FP mm in mm in mm in mm in mm in CPT060202FP CPT21505FP 6,35 1/4 6, ,38 3/32 0, , CPT060204FP CPT2151FP 6,35 1/4 6, ,38 3/32 0,4 1/64 2, CPT060208FP CPT2152FP 6,35 1/4 6, ,38 3/32 0,8 1/32 2, CPT09T302FP CPT32505FP 9,53 3/8 9, ,97 5/32 0, , CPT09T304FP CPT3251FP 9,53 3/8 9, ,97 5/32 0,4 1/64 4, CPT09T308FP CPT3252FP 9,53 3/8 9, ,97 5/32 0,8 1/32 4, D18

20 WIDIA Victory Carbide Inserts P N S CPT-P WP15CT WP25CT WP35CT W15CT W25CT W35CT W05CT W20CT WS10PT WS25PT mm in mm in mm in mm in mm in CPT060208P CPT2152P 6,35 1/4 6, ,38 3/32 0,8 1/32 2, CPT09T308P CPT3252P 9,53 3/8 9, ,97 5/32 0,8 1/32 4, CPT09T312P CPT3253P 9,53 3/8 9, ,97 5/32 1,2 3/64 4, DCT-FP Turning WIDIA Victory mm in mm in mm in mm in mm in DCT070202FP DCT21505FP 6,35 1/4 7, ,38 3/32 0, , DCT070204FP DCT2151FP 6,35 1/4 7, ,38 3/32 0,4 1/64 2, DCT070208FP DCT2152FP 6,35 1/4 7, ,38 3/32 0,8 1/32 2, DCT11T302FP DCT32505FP 9,53 3/8 11, ,97 5/32 0, , DCT11T304FP DCT3251FP 9,53 3/8 11, ,97 5/32 0,4 1/64 4, DCT11T308FP DCT3252FP 9,53 3/8 11, ,97 5/32 0,8 1/32 4, DCT11T312FP DCT3253FP 9,53 3/8 11, ,97 5/32 1,2 3/64 4, DCT150404FP DCT431FP 12,70 1/2 15, ,76 3/16 0,4 1/64 5, DCT150408FP DCT432FP 12,70 1/2 15, ,76 3/16 0,8 1/32 5, DCT-P mm in mm in mm in mm in mm in DCT11T304P DCT3251P 9,53 3/8 11, ,97 5/32 0,4 1/64 4, DCT11T308P DCT3252P 9,53 3/8 11, ,97 5/32 0,8 1/32 4, DCT11T312P DCT3253P 9,53 3/8 11, ,97 5/32 1,2 3/64 4, D19

21 WIDIA Victory Carbide Inserts P N S DCW Turning WIDIA Victory DNA WP15CT WP25CT WP35CT W15CT W25CT W35CT W05CT W20CT WS10PT WS25PT mm in mm in mm in mm in mm in DCW DCW2151 6,35 1/4 7, ,38 3/32 0,4 1/64 2, DCW11T304 DCW3251 9,53 3/8 11, ,97 5/32 0,4 1/64 4, DCW DCW432 12,70 1/2 15, ,76 3/16 0,8 1/32 5, mm in mm in mm in mm in mm in DNA DNA332 9,53 3/8 11, ,76 3/16 0,8 1/32 3, DNA DNA333 9,53 3/8 11, ,76 3/16 1,2 3/64 3, DNA DNA432 12,70 1/2 15, ,76 3/16 0,8 1/32 5, DNA DNA433 12,70 1/2 15, ,76 3/16 1,2 3/64 5, DNA DNA434 12,70 1/2 15, ,76 3/16 1,6 1/16 5, DNA DNA442 12,70 1/2 15, ,35 1/4 0,8 1/32 5, DNA DNA443 12,70 1/2 15, ,35 1/4 1,2 3/64 5, DNA DNA444 12,70 1/2 15, ,35 1/4 1,6 1/16 5, DNG-CT mm in mm in mm in mm in mm in DNG150604CT DNG441CT 12,70 1/2 15, ,35 1/4 0, , DNG150608CT DNG442CT 12,70 1/2 15, ,35 1/4 0, , DNG150612CT DNG443CT 12,70 1/2 15, ,35 1/4 1, , D20

22 WIDIA Victory Carbide Inserts P N S DNG-FF WP15CT WP25CT WP35CT W15CT W25CT W35CT W05CT W20CT WS10PT WS25PT mm in mm in mm in mm in mm in DNG110404FF DNG331FF 9,53 3/8 11, ,76 3/16 0,4 1/64 3, DNG110408FF DNG332FF 9,53 3/8 11, ,76 3/16 0,8 1/32 3, DNG110412FF DNG333FF 9,53 3/8 11, ,76 3/16 1,2 3/64 3, DNG150404FF DNG431FF 12,70 1/2 15, ,76 3/16 0,4 1/64 5, DNG150408FF DNG432FF 12,70 1/2 15, ,76 3/16 0,8 1/32 5, DNG150412FF DNG433FF 12,70 1/2 15, ,76 3/16 1,2 3/64 5, DNG150604FF DNG441FF 12,70 1/2 15, ,35 1/4 0,4 1/64 5, DNG150608FF DNG442FF 12,70 1/2 15, ,35 1/4 0,8 1/32 5, DNG150612FF DNG443FF 12,70 1/2 15, ,35 1/4 1,2 3/64 5, Turning WIDIA Victory DNG-FW mm in mm in mm in mm in mm in DNG150404FW DNG431FW 12,70 1/2 15, ,76 3/16 0,4 1/64 5, DNG150408FW DNG432FW 12,70 1/2 15, ,76 3/16 0,4 5, DNG150604FW DNG441FW 12,70 1/2 15, ,35 1/4 0,4 1/64 5, DNG150608FW DNG442FW 12,70 1/2 15, ,35 1/4 0,4 5, DNG-L mm in mm in mm in mm in mm in DNG120412L DNG331L 9,53 3/8 11, ,76 3/16 0,4 1/64 3, DNG110408L DNG332L 9,53 3/8 11, ,76 3/16 0,8 1/32 3, DNG110412L DNG333L 9,53 3/8 11, ,76 3/16 1,2 3/64 3, DNG150404L DNG431L 12,70 1/2 15, ,76 3/16 0,4 1/64 5, DNG150408L DNG432L 12,70 1/2 15, ,76 3/16 0,8 1/32 5, DNG150412L DNG433L 12,70 1/2 15, ,76 3/16 1,2 3/64 5, DNG150604L DNG441L 12,70 1/2 15, ,35 1/4 0,4 1/64 5, DNG150608L DNG442L 12,70 1/2 15, ,35 1/4 0,8 1/32 5, DNG150612L DNG443L 12,70 1/2 15, ,35 1/4 1,2 3/64 5, D21

23 WIDIA Victory Carbide Inserts P N S DNG-R Turning WIDIA Victory mm in mm in mm in mm in mm in DNG110408R DNG332R 9,53 3/8 11, ,76 3/16 0,8 1/32 3, DNG150404R DNG431R 12,70 1/2 15, ,76 3/16 0,4 1/64 5, DNG150408R DNG432R 12,70 1/2 15, ,76 3/16 0,8 1/32 5, DNG150412R DNG433R 12,70 1/2 15, ,76 3/16 1,2 3/64 5, WP15CT WP25CT WP35CT W15CT W25CT W35CT W05CT W20CT WS10PT WS25PT DNG150604R DNG441R 12,70 1/2 15, ,35 1/4 0,4 1/64 5, DNG150608R DNG442R 12,70 1/2 15, ,35 1/4 0,8 1/32 5, DNG150612R DNG443R 12,70 1/2 15, ,35 1/4 1,2 3/64 5, DNG-W mm in mm in mm in mm in mm in DNG150408W DNG432W 12,70 1/2 15, ,76 3/16 0,4 5, DNG150412W DNG433W 12,70 1/2 15, ,76 3/16 1,2 3/64 5, DNG150608W DNG442W 12,70 1/2 15, ,35 1/4 0,4 5, DNG150612W DNG443W 12,70 1/2 15, ,35 1/4 1,2 3/64 5, DNG-R mm in mm in mm in mm in mm in DNG150408R DNG432R 12,70 1/2 15, ,76 3/16 0,8 1/32 5, DNG150412R DNG433R 12,70 1/2 15, ,76 3/16 1,2 3/64 5, DNG150608R DNG442R 12,70 1/2 15, ,35 1/4 0,8 1/32 5, DNG150612R DNG443R 12,70 1/2 15, ,35 1/4 1,2 3/64 5, DNG150616R DNG444R 12,70 1/2 15, ,35 1/4 1,6 1/16 5, DNG190612R DNG543R 15,88 5/8 19, ,35 1/4 1,2 3/64 6, D22

24 WIDIA Victory Carbide Inserts P N S DNG-UF WP15CT WP25CT WP35CT W15CT W25CT W35CT W05CT W20CT WS10PT WS25PT mm in mm in mm in mm in mm in DNG110404UF DNG331UF 9,53 3/8 11, ,76 3/16 0,4 1/64 3, DNG110408UF DNG332UF 9,53 3/8 11, ,76 3/16 0,8 1/32 3, DNG150404UF DNG431UF 12,70 1/2 15, ,76 3/16 0,4 1/64 5, DNG150408UF DNG432UF 12,70 1/2 15, ,76 3/16 0,8 1/32 5, DNG150412UF DNG433UF 12,70 1/2 15, ,76 3/16 1,2 3/64 5, DNG150604UF DNG441UF 12,70 1/2 15, ,35 1/4 0,4 1/64 5, DNG150608UF DNG442UF 12,70 1/2 15, ,35 1/4 0,8 1/32 5, DNG150612UF DNG443UF 12,70 1/2 15, ,35 1/4 1,2 3/64 5, Turning WIDIA Victory DNG-U mm in mm in mm in mm in mm in DNG110404U DNG331U 9,53 3/8 11, ,76 3/16 0,4 1/64 3, DNG110408U DNG332U 9,53 3/8 11, ,76 3/16 0,8 1/32 3, DNG110412U DNG333U 9,53 3/8 11, ,76 3/16 1,2 3/64 3, DNG150404U DNG431U 12,70 1/2 15, ,76 3/16 0,4 1/64 5, DNG150408U DNG432U 12,70 1/2 15, ,76 3/16 0,8 1/32 5, DNG150412U DNG433U 12,70 1/2 15, ,76 3/16 1,2 3/64 5, DNG150604U DNG441U 12,70 1/2 15, ,35 1/4 0,4 1/64 5, DNG150608U DNG442U 12,70 1/2 15, ,35 1/4 0,8 1/32 5, DNG150612U DNG443U 12,70 1/2 15, ,35 1/4 1,2 3/64 5, DNG150616U DNG444U 12,70 1/2 15, ,35 1/4 1,6 1/16 5, DNG-UR mm in mm in mm in mm in mm in DNG110408UR DNG332UR 9,53 3/8 11, ,76 3/16 0,8 1/32 3, DNG110412UR DNG333UR 9,53 3/8 11, ,76 3/16 1,2 3/64 3, DNG150408UR DNG432UR 12,70 1/2 15, ,76 3/16 0,8 1/32 5, DNG150412UR DNG433UR 12,70 1/2 15, ,76 3/16 1,2 3/64 5, DNG150416UR DNG434UR 12,70 1/2 15, ,76 3/16 1,6 1/16 5, DNG150608UR DNG442UR 12,70 1/2 15, ,35 1/4 0,8 1/32 5, DNG150612UR DNG443UR 12,70 1/2 15, ,35 1/4 1,2 3/64 5, DNG150616UR DNG444UR 12,70 1/2 15, ,35 1/4 1,6 1/16 5, D23

25 WIDIA Victory Carbide Inserts P N S DNP Turning WIDIA Victory WP15CT WP25CT WP35CT W15CT W25CT W35CT W05CT W20CT WS10PT WS25PT mm in mm in mm in mm in mm in DNP DNP431 12,70 1/2 15, ,76 3/16 0,4 1/64 5, DNP DNP432 12,70 1/2 15, ,76 3/16 0,8 1/32 5, DNP DNP433 12,70 1/2 15, ,76 3/16 1,2 3/64 5, DNP DNP441 12,70 1/2 15, ,35 1/4 0,4 1/64 5, DNP DNP442 12,70 1/2 15, ,35 1/4 0,8 1/32 5, DNP DNP443 12,70 1/2 15, ,35 1/4 1,2 3/64 5, D 55 DPT-FP Rε L10 11 mm in mm in mm in mm in mm in DPT070204FP DPT2151FP 6,35 1/4 7, ,38 3/32 0,4 1/64 2, DPT11T304FP DPT3251FP 9,53 3/8 11, ,97 5/32 0,4 1/64 4, DPT11T308FP DPT3252FP 9,53 3/8 11, ,97 5/32 0,8 1/32 4, D 55 DPT-P Rε L10 11 mm in mm in mm in mm in mm in DPT11T308P DPT3252P 9,53 3/8 11, ,97 5/32 0,8 1/32 4, LNUX-13 W LI S Rε D1 mm in mm in mm in mm in mm in LNUX LNUX , , ,05 3/4 4, , LNUX LNUX , , ,05 3/4 4, , D24

26 WIDIA Victory Carbide Inserts P N S LNUX-T W LI S Rε D1 WP15CT WP25CT WP35CT W15CT W25CT W35CT W05CT W20CT WS10PT WS25PT mm in mm in mm in mm in mm in LNUX191940T LNUX191940T 10, , ,05 3/4 4, , LNUX301940T LNUX301940T 12, , ,05 3/4 4, , RCT Turning WIDIA Victory mm in mm in mm in mm in mm in RCT06020 RCT , ,38 3/32 2, RCT08030 RCT , ,18 1/8 3, RCT10T30 RCT10T30 10, ,97 5/32 4, RCT12040 RCT , ,76 3/16 4, RCT16060 RCT , ,35 1/4 5, D1 RCT-T D 7 S mm in mm in mm in mm in mm in RCT16060T RCT16060T 16, ,35 1/4 5, RCX mm in mm in mm in mm in mm in RCX20060T RCX20060T 20, ,35 1/4 6, RCX25070T RCX25070T 25, ,94 5/16 7, RCX32090T RCX32090T 32, ,53 3/8 9, D25

27 WIDIA Victory Carbide Inserts P N S RNA WP15CT WP25CT WP35CT W15CT W25CT W35CT W05CT W20CT WS10PT WS25PT mm in mm in mm in mm in mm in RNA RNA43 12,70 1/2 4,76 3/16 5, Turning WIDIA Victory RNG-R mm in mm in mm in mm in mm in RNG090300R RNG32R 9,53 3/8 3,18 1/8 3, RNG120400R RNG43R 12,70 1/2 4,76 3/16 5, RNG190600R RNG64R 19,05 3/4 6,35 1/4 7, SCT-FP mm in mm in mm in mm in mm in SCT09T304FP SCT3251FP 9,53 3/8 9, ,97 5/32 0,4 1/64 4, SCT09T308FP SCT3252FP 9,53 3/8 9, ,97 5/32 0,8 1/32 4, SCT120404FP SCT431FP 12,70 1/2 12, ,76 3/16 0,4 1/64 5, SCT120408FP SCT432FP 12,70 1/2 12, ,76 3/16 0,8 1/32 5, SCT120412FP SCT433FP 12,70 1/2 12, ,76 3/16 1,2 3/64 5, SCT-P mm in mm in mm in mm in mm in SCT09T304P SCT3251P 9,53 3/8 9, ,97 5/32 0,4 1/64 4, SCT09T308P SCT3252P 9,53 3/8 9, ,97 5/32 0,8 1/32 4, SCT120404P SCT431P 12,70 1/2 12, ,76 3/16 0,4 1/64 5, SCT120408P SCT432P 12,70 1/2 12, ,76 3/16 0,8 1/32 5, SCT120412P SCT433P 12,70 1/2 12, ,76 3/16 1,2 3/64 5, D26

28 WIDIA Victory Carbide Inserts P N S SCW WP15CT WP25CT WP35CT W15CT W25CT W35CT W05CT W20CT WS10PT WS25PT mm in mm in mm in mm in mm in SCW SCW321 9,53 3/8 9, ,18 1/8 0,4 1/64 4, SCW09T308 SCW3252 9,53 3/8 9, ,97 5/32 0,8 1/32 4, SNA SCW SCW432 12,70 1/2 12, ,76 3/16 0,8 1/32 5, Turning WIDIA Victory mm in mm in mm in mm in mm in SNA SNA432 12,70 1/2 12, ,76 3/16 0,8 1/32 5, SNA SNA433 12,70 1/2 12, ,76 3/16 1,2 3/64 5, SNA SNA434 12,70 1/2 12, ,76 3/16 1,6 1/16 5, SNA SNA542 15,88 5/8 15, ,35 1/4 0,8 1/32 6, SNA SNA543 15,88 5/8 15, ,35 1/4 1,2 3/64 6, SNA SNA544 15,88 5/8 15, ,35 1/4 1,6 1/16 6, SNA SNA643 19,05 3/4 19, ,35 1/4 1,2 3/64 7, SNA SNA644 19,05 3/4 19, ,35 1/4 1,6 1/16 7, SNG-FF mm in mm in mm in mm in mm in SNG090304FF SNG321FF 9,53 3/8 9, ,18 1/8 0,4 1/64 3, SNG090308FF SNG322FF 9,53 3/8 9, ,18 1/8 0,8 1/32 3, SNG120404FF SNG431FF 12,70 1/2 12, ,76 3/16 0,4 1/64 5, SNG120408FF SNG432FF 12,70 1/2 12, ,76 3/16 0,8 1/32 5, SNG120412FF SNG433FF 12,70 1/2 12, ,76 3/16 1,2 3/64 5, SNG120416FF SNG434FF 12,70 1/2 12, ,76 3/16 1,6 1/16 5, D27

29 WIDIA Victory Carbide Inserts P N S SNG-L Turning WIDIA Victory WP15CT WP25CT WP35CT W15CT W25CT W35CT W05CT W20CT WS10PT WS25PT mm in mm in mm in mm in mm in SNG090304L SNG321L 9,53 3/8 9, ,18 1/8 0,4 1/64 3, SNG090308L SNG322L 9,53 3/8 9, ,18 1/8 0,8 1/32 3, SNG120404L SNG431L 12,70 1/2 12, ,76 3/16 0,4 1/64 5, SNG120408L SNG432L 12,70 1/2 12, ,76 3/16 0,8 1/32 5, SNG120412L SNG433L 12,70 1/2 12, ,76 3/16 1,2 3/64 5, SNG120416L SNG434L 12,70 1/2 12, ,76 3/16 1,6 1/16 5, SNG-R mm in mm in mm in mm in mm in SNG120408R SNG432R 12,70 1/2 12, ,76 3/16 0,8 1/32 5, SNG120412R SNG433R 12,70 1/2 12, ,76 3/16 1,2 3/64 5, SNG120416R SNG434R 12,70 1/2 12, ,76 3/16 1,6 1/16 5, SNG150608R SNG542R 15,88 5/8 15, ,35 1/4 0,8 1/32 6, SNG150612R SNG543R 15,88 5/8 15, ,35 1/4 1,2 3/64 6, SNG150616R SNG544R 15,88 5/8 15, ,35 1/4 1,6 1/16 6, SNG190612R SNG643R 19,05 3/4 19, ,35 1/4 1,2 3/64 7, SNG190616R SNG644R 19,05 3/4 19, ,35 1/4 1,6 1/16 7, SNG-R mm in mm in mm in mm in mm in SNG120408R SNG432R 12,70 1/2 12, ,76 3/16 0,8 1/32 5, SNG120412R SNG433R 12,70 1/2 12, ,76 3/16 1,2 3/64 5, SNG120416R SNG434R 12,70 1/2 12, ,76 3/16 1,6 1/16 5, SNG150608R SNG542R 15,88 5/8 15, ,35 1/4 0,8 1/32 6, SNG150612R SNG543R 15,88 5/8 15, ,35 1/4 1,2 3/64 6, SNG150616R SNG544R 15,88 5/8 15, ,35 1/4 1,6 1/16 6, SNG190608R SNG642R 19,05 3/4 19, ,35 1/4 0,8 1/32 7, SNG190612R SNG643R 19,05 3/4 19, ,35 1/4 1,2 3/64 7, SNG190616R SNG644R 19,05 3/4 19, ,35 1/4 1,6 1/16 7, D28

30 WIDIA Victory Carbide Inserts P N S SNG-UF WP15CT WP25CT WP35CT W15CT W25CT W35CT W05CT W20CT WS10PT WS25PT mm in mm in mm in mm in mm in SNG120404UF SNG431UF 12,70 1/2 12, ,76 3/16 0,4 1/64 5, SNG120408UF SNG432UF 12,70 1/2 12, ,76 3/16 0,8 1/32 5, SNG120412UF SNG433UF 12,70 1/2 12, ,76 3/16 1,2 3/64 5, SNG-U Turning WIDIA Victory mm in mm in mm in mm in mm in SNG120404U SNG431U 12,70 1/2 12, ,76 3/16 0,4 1/64 5, SNG120408U SNG432U 12,70 1/2 12, ,76 3/16 0,8 1/32 5, SNG120412U SNG433U 12,70 1/2 12, ,76 3/16 1,2 3/64 5, SNG-UR mm in mm in mm in mm in mm in SNG120408UR SNG432UR 12,70 1/2 12, ,76 3/16 0,8 1/32 5, SNG120412UR SNG433UR 12,70 1/2 12, ,76 3/16 1,2 3/64 5, SNG120416UR SNG434UR 12,70 1/2 12, ,76 3/16 1,6 1/16 5, SNG150612UR SNG543UR 15,88 5/8 15, ,35 1/4 1,2 3/64 6, SNG150616UR SNG544UR 15,88 5/8 15, ,35 1/4 1,6 1/16 6, SNG190612UR SNG643UR 19,05 3/4 19, ,35 1/4 1,2 3/64 7, SNG190616UR SNG644UR 19,05 3/4 19, ,35 1/4 1,6 1/16 7, D29

31 WIDIA Victory Carbide Inserts P N S SNP Turning WIDIA Victory WP15CT WP25CT WP35CT W15CT W25CT W35CT W05CT W20CT WS10PT WS25PT mm in mm in mm in mm in mm in SNP SNP432 12,70 1/2 12, ,76 3/16 0,8 1/32 5, SNP SNP433 12,70 1/2 12, ,76 3/16 1,2 3/64 5, SNP SNP542 15,88 5/8 15, ,35 1/4 0,8 1/32 6, SNP SNP543 15,88 5/8 15, ,35 1/4 1,2 3/64 6, SNP SNP544 15,88 5/8 15, ,35 1/4 1,6 1/16 6, SNP SNP644 19,05 3/4 19, ,35 1/4 1,6 1/16 7, SNU mm in mm in mm in mm in mm in SNUN SNU432 12,70 1/2 12, ,76 3/16 0,8 1/32 SNUN SNU433 12,70 1/2 12, ,76 3/16 1,2 3/64 SPG mm in mm in mm in mm in mm in SPGN SPG322 9,53 3/8 9, ,18 1/8 0,8 1/32 SPGN SPG422 12,70 1/2 12, ,18 1/8 0,8 1/32 SPGN SPG423 12,70 1/2 12, ,18 1/8 1,2 3/64 SPR mm in mm in mm in mm in mm in SPR SPR322 9,53 3/8 9, ,18 1/8 0,8 1/32 SPR SPR421 12,70 1/2 12, ,18 1/8 0,4 1/64 SPR SPR422 12,70 1/2 12, ,18 1/8 0,8 1/32 SPR SPR423 12,70 1/2 12, ,18 1/8 1,2 3/64 D30

32 WIDIA Victory Carbide Inserts P N S SPT-FP WP15CT WP25CT WP35CT W15CT W25CT W35CT W05CT W20CT WS10PT WS25PT mm in mm in mm in mm in mm in SPT09T304FP SPT3251FP 9,53 3/8 9, ,97 5/32 0,4 1/64 4, SPT09T308FP SPT3252FP 9,53 3/8 9, ,97 5/32 0,8 1/32 4, SPT-P Turning WIDIA Victory mm in mm in mm in mm in mm in SPT09T308P SPT3252P 9,53 3/8 9, ,97 5/32 0,8 1/32 4, SPT120408P SPT432P 12,70 1/2 12, ,76 3/16 0,8 1/32 5, SPU mm in mm in mm in mm in mm in SPUN SPU421 12,70 1/2 12, ,18 1/8 0,4 1/64 SPUN SPU422 12,70 1/2 12, ,18 1/8 0,8 1/32 SPUN SPU423 12,70 1/2 12, ,18 1/8 1,2 3/64 SPU-T mm in mm in mm in mm in mm in SPUN250620T SPU845T 25, , ,35 1/4 2,0 5/64 D31

33 WIDIA Victory Carbide Inserts P N S TCT-FP Turning WIDIA Victory WP15CT WP25CT WP35CT W15CT W25CT W35CT W05CT W20CT WS10PT WS25PT mm in mm in mm in mm in mm in TCT110202FP TCT21505FP 6,35 1/4 11, ,38 3/32 0, , TCT110204FP TCT2151FP 6,35 1/4 11, ,38 3/32 0,4 1/64 2, TCT110208FP TCT2152FP 6,35 1/4 11, ,38 3/32 0,8 1/32 2, TCT16T304FP TCT3251FP 9,53 3/8 16, ,97 5/32 0,4 1/64 4, TCT16T308FP TCT3252FP 9,53 3/8 16, ,97 5/32 0,8 1/32 4, TCT16T312FP TCT3253FP 9,53 3/8 16, ,97 5/32 1,2 3/64 4, TCT220408FP TCT432FP 12,70 1/2 22, ,76 3/16 0,8 1/32 5, TCT-P mm in mm in mm in mm in mm in TCT110208P TCT2152P 6,35 1/4 11, ,38 3/32 0,8 1/32 2, TCT16T304P TCT3251P 9,53 3/8 16, ,97 5/32 0,4 1/64 4, TCT16T308P TCT3252P 9,53 3/8 16, ,97 5/32 0,8 1/32 4, TCT16T312P TCT3253P 9,53 3/8 16, ,97 5/32 1,2 3/64 4, TCW mm in mm in mm in mm in mm in TCW TCW2151 6,35 1/4 11, ,38 3/32 0,4 1/64 2, TCW16T304 TCW3251 9,53 3/8 16, ,97 5/32 0,4 1/64 4, D32

34 WIDIA Victory Carbide Inserts P N S TNA WP15CT WP25CT WP35CT W15CT W25CT W35CT W05CT W20CT WS10PT WS25PT mm in mm in mm in mm in mm in TNA TNA332 9,53 3/8 16, ,76 3/16 0,8 1/32 3, TNA TNA333 9,53 3/8 16, ,76 3/16 1,2 3/64 3, TNA TNA334 9,53 3/8 16, ,76 3/16 1,6 1/16 3, TNA TNA432 12,70 1/2 22, ,76 3/16 0,8 1/32 5, TNA TNA433 12,70 1/2 22, ,76 3/16 1,2 3/64 5, TNA TNA434 12,70 1/2 22, ,76 3/16 1,6 1/16 5, TNA TNA544 15,88 5/8 27, ,35 1/4 1,6 1/16 6, Turning WIDIA Victory TNG-FF mm in mm in mm in mm in mm in TNG110304FF TNG221FF 6,35 1/4 11, ,18 1/8 0,4 1/64 2, TNG110308FF TNG222FF 6,35 1/4 11, ,18 1/8 0,8 1/32 2, TNG160404FF TNG331FF 9,53 3/8 16, ,76 3/16 0,4 1/64 3, TNG160408FF TNG332FF 9,53 3/8 16, ,76 3/16 0,8 1/32 3, TNG160412FF TNG333FF 9,53 3/8 16, ,76 3/16 1,2 3/64 3, TNG-L mm in mm in mm in mm in mm in TNG110304L TNG221L 6,35 1/4 11, ,18 1/8 0,4 1/64 2, TNG110308L TNG222L 6,35 1/4 11, ,18 1/8 0,8 1/32 2, TNG160404L TNG331L 9,53 3/8 16, ,76 3/16 0,4 1/64 3, TNG160408L TNG332L 9,53 3/8 16, ,76 3/16 0,8 1/32 3, TNG160412L TNG333L 9,53 3/8 16, ,76 3/16 1,2 3/64 3, TNG220404L TNG431L 12,70 1/2 22, ,76 3/16 0,4 1/64 5, TNG220408L TNG432L 12,70 1/2 22, ,76 3/16 0,8 1/32 5, D33

35 WIDIA Victory Carbide Inserts P N S TNG-R Turning WIDIA Victory mm in mm in mm in mm in mm in TNG160404R TNG331R 9,53 3/8 16, ,76 3/16 0,4 1/64 3, TNG160408R TNG332R 9,53 3/8 16, ,76 3/16 0,8 1/32 3, TNG160412R TNG333R 9,53 3/8 16, ,76 3/16 1,2 3/64 3, TNG220404R TNG431R 12,70 1/2 22, ,76 3/16 0,4 1/64 5, TNG220408R TNG432R 12,70 1/2 22, ,76 3/16 0,8 1/32 5, TNG220412R TNG433R 12,70 1/2 22, ,76 3/16 1,2 3/64 5, TNG220416R TNG434R 12,70 1/2 22, ,76 3/16 1,6 1/16 5, WP15CT WP25CT WP35CT W15CT W25CT W35CT W05CT W20CT WS10PT WS25PT TNG-R mm in mm in mm in mm in mm in TNG160408R TNG332R 9,53 3/8 16, ,76 3/16 0,8 1/32 3, TNG160412R TNG333R 9,53 3/8 16, ,76 3/16 1,2 3/64 3, TNG220408R TNG432R 12,70 1/2 22, ,76 3/16 0,8 1/32 5, TNG220412R TNG433R 12,70 1/2 22, ,76 3/16 1,2 3/64 5, TNG220416R TNG434R 12,70 1/2 22, ,76 3/16 1,6 1/16 5, TNG270612R TNG543R 15,88 5/8 27, ,35 1/4 1,2 3/64 6, TNG270616R TNG544R 15,88 5/8 27, ,35 1/4 1,6 1/16 6, TNG330924R TNG666R 19,05 3/4 33, ,53 3/8 2,4 3/32 7, TNG-UF mm in mm in mm in mm in mm in TNG160404UF TNG331UF 9,53 3/8 16, ,76 3/16 0,4 1/64 3, TNG160408UF TNG332UF 9,53 3/8 16, ,76 3/16 0,8 1/32 3, TNG160412UF TNG333UF 9,53 3/8 16, ,76 3/16 1,2 3/64 3, TNG220404UF TNG431UF 12,70 1/2 22, ,76 3/16 0,4 1/64 5, TNG220408UF TNG432UF 12,70 1/2 22, ,76 3/16 0,8 1/32 5, D34

36 WIDIA Victory Carbide Inserts P N S TNG-U WP15CT WP25CT WP35CT W15CT W25CT W35CT W05CT W20CT WS10PT WS25PT mm in mm in mm in mm in mm in TNG160404U TNG331U 9,53 3/8 16, ,76 3/16 0,4 1/64 3, TNG160408U TNG332U 9,53 3/8 16, ,76 3/16 0,8 1/32 3, TNG160412U TNG333U 9,53 3/8 16, ,76 3/16 1,2 3/64 3, TNG160416U TNG334U 9,53 3/8 16, ,76 3/16 1,6 1/16 3, TNG220404U TNG431U 12,70 1/2 22, ,76 3/16 0,4 1/64 5, TNG220408U TNG432U 12,70 1/2 22, ,76 3/16 0,8 1/32 5, TNG220412U TNG433U 12,70 1/2 22, ,76 3/16 1,2 3/64 5, Turning WIDIA Victory TNG-UR mm in mm in mm in mm in mm in TNG160408UR TNG332UR 9,53 3/8 16, ,76 3/16 0,8 1/32 3, TNG160412UR TNG333UR 9,53 3/8 16, ,76 3/16 1,2 3/64 3, TNG160416UR TNG334UR 9,53 3/8 16, ,76 3/16 1,6 1/16 3, TNG220408UR TNG432UR 12,70 1/2 22, ,76 3/16 0,8 1/32 5, TNG220412UR TNG433UR 12,70 1/2 22, ,76 3/16 1,2 3/64 5, TNG220416UR TNG434UR 12,70 1/2 22, ,76 3/16 1,6 1/16 5, TNG270612UR TNG543UR 15,88 5/8 27, ,35 1/4 1,2 3/64 6, TNG270616UR TNG544UR 15,88 5/8 27, ,35 1/4 1,6 1/16 6, TNP mm in mm in mm in mm in mm in TNP TNP331 9,53 3/8 16, ,76 3/16 0,4 1/64 3, TNP TNP332 9,53 3/8 16, ,76 3/16 0,8 1/32 3, TNP TNP333 9,53 3/8 16, ,76 3/16 1,2 3/64 3, TNP TNP431 12,70 1/2 22, ,76 3/16 0,4 1/64 5, TNP TNP432 12,70 1/2 22, ,76 3/16 0,8 1/32 5, TNP TNP433 12,70 1/2 22, ,76 3/16 1,2 3/64 5, D35

37 WIDIA Victory Carbide Inserts P N S TNU WP15CT WP25CT WP35CT W15CT W25CT W35CT W05CT W20CT WS10PT WS25PT mm in mm in mm in mm in mm in TNUN TNU332 9,53 3/8 16, ,76 3/16 0,8 1/32 Turning WIDIA Victory TPG mm in mm in mm in mm in mm in TPGN TPG222 6,35 1/4 11, ,18 1/8 0,8 1/32 TPGN TPG322 9,53 3/8 16, ,18 1/8 0,8 1/32 TPR mm in mm in mm in mm in mm in TPR TPR221 6,35 1/4 11, ,18 1/8 0,4 1/64 TPR TPR222 6,35 1/4 11, ,18 1/8 0,8 1/32 TPR TPR321 9,53 3/8 16, ,18 1/8 0,4 1/64 TPR TPR322 9,53 3/8 16, ,18 1/8 0,8 1/32 TPR TPR323 9,53 3/8 16, ,18 1/8 1,2 3/64 D36

38 WIDIA Victory Carbide Inserts D 60 P N S TPT-FP Rε L10 11 WP15CT WP25CT WP35CT W15CT W25CT W35CT W05CT W20CT WS10PT WS25PT mm in mm in mm in mm in mm in TPT090208FP TPT18152FP 5,56 7/32 9, ,38 3/32 0,8 1/32 2, TPT110204FP TPT2151FP 6,35 1/4 11, ,38 3/32 0,4 1/64 2, TPT110208FP TPT2152FP 6,35 1/4 11, ,38 3/32 0,8 1/32 2, TPT16T304FP TPT3251FP 9,53 3/8 16, ,97 5/32 0,4 1/64 4, TPT16T308FP TPT3252FP 9,53 3/8 16, ,97 5/32 0,8 1/32 4, TPT16T312FP TPT3253FP 9,53 3/8 16, ,97 5/32 1,2 3/64 4, TPT220408FP TPT432FP 12,70 1/2 22, ,76 3/16 0,8 1/32 5, Turning WIDIA Victory D TPT-P Rε L10 11 mm in mm in mm in mm in mm in TPT110208P TPT2152P 6,35 1/4 11, ,38 3/32 0,8 1/32 2, TPT16T308P TPT3252P 9,53 3/8 16, ,97 5/32 0,8 1/32 4, TPT16T312P TPT3253P 9,53 3/8 16, ,97 5/32 1,2 3/64 4, TPU mm in mm in mm in mm in mm in TPUN TPU221 6,35 1/4 11, ,18 1/8 0,4 1/64 TPUN TPU222 6,35 1/4 11, ,18 1/8 0,8 1/32 TPUN TPU321 9,53 3/8 16, ,18 1/8 0,4 1/64 TPUN TPU322 9,53 3/8 16, ,18 1/8 0,8 1/32 TPUN TPU323 9,53 3/8 16, ,18 1/8 1,2 3/64 TPUN TPU432 12,70 1/2 22, ,76 3/16 0,8 1/32 TPUN TPU433 12,70 1/2 22, ,76 3/16 1,2 3/64 D37

39 WIDIA Victory Carbide Inserts P N S VBT Turning WIDIA Victory mm in mm in mm in mm in mm in VBT VBT331 9,53 3/8 16, ,76 3/16 0,4 1/64 4, VBT VBT332 9,53 3/8 16, ,76 3/16 0,8 1/32 4, VBT-FP VBT VBT333 9,53 3/8 16, ,76 3/16 1,2 3/64 4, WP15CT WP25CT WP35CT W15CT W25CT W35CT W05CT W20CT WS10PT WS25PT mm in mm in mm in mm in mm in VBT110302FP VBT2205FP 6,35 1/4 11, ,18 1/8 0, , VBT110304FP VBT221FP 6,35 1/4 11, ,18 1/8 0,4 1/64 2, VBT110308FP VBT222FP 6,35 1/4 11, ,18 1/8 0,8 1/32 2, VBT160402FP VBT3305FP 9,53 3/8 16, ,76 3/16 0, , VBT160404FP VBT331FP 9,53 3/8 16, ,76 3/16 0,4 1/64 4, VBT160408FP VBT332FP 9,53 3/8 16, ,76 3/16 0,8 1/32 4, VBT160412FP VBT333FP 9,53 3/8 16, ,76 3/16 1,2 3/64 4, VBT-P mm in mm in mm in mm in mm in VBT160404P VBT331P 9,53 3/8 16, ,76 3/16 0,4 1/64 4, VBT160408P VBT332P 9,53 3/8 16, ,76 3/16 0,8 1/32 4, VNA mm in mm in mm in mm in mm in VNA VNA332 9,53 3/8 16, ,76 3/16 0,8 1/32 3, D38

40 WIDIA Victory Carbide Inserts P N S VNG WP15CT WP25CT WP35CT W15CT W25CT W35CT W05CT W20CT WS10PT WS25PT mm in mm in mm in mm in mm in VNG12T308 VNG12T308 7,14 9/32 12, ,97 5/32 0,8 1/32 3, VNG-FF mm in mm in mm in mm in mm in VNG160404FF VNG331FF 9,53 3/8 16, ,76 3/16 0,4 1/64 3, VNG160408FF VNG332FF 9,53 3/8 16, ,76 3/16 0,8 1/32 3, Turning WIDIA Victory VNG-L mm in mm in mm in mm in mm in VNG160404L VNG331L 9,53 3/8 16, ,76 3/16 0,4 1/64 3, VNG160408L VNG332L 9,53 3/8 16, ,76 3/16 0,8 1/32 3, VNG-R mm in mm in mm in mm in mm in VNG160408R VNG332R 9,53 3/8 16, ,76 3/16 0,8 1/32 3, D39

41 WIDIA Victory Carbide Inserts P N S VNG-R Turning WIDIA Victory mm in mm in mm in mm in mm in VNG160408R VNG332R 9,53 3/8 16, ,76 3/16 0,8 1/32 3, VNG220408R VNG432R 12,70 1/2 22, ,76 3/16 0,8 1/32 5, VNG220412R VNG433R 12,70 1/2 22, ,76 3/16 1,2 3/64 5, VNG-UF WP15CT WP25CT WP35CT W15CT W25CT W35CT W05CT W20CT WS10PT WS25PT mm in mm in mm in mm in mm in VNG160404UF VNG331UF 9,53 3/8 16, ,76 3/16 0,4 1/64 3, VNG160408UF VNG332UF 9,53 3/8 16, ,76 3/16 0,8 1/32 3, VNG-UR mm in mm in mm in mm in mm in VNG160408UR VNG332UR 9,53 3/8 16, ,76 3/16 0,8 1/32 3, VNG160412UR VNG333UR 9,53 3/8 16, ,76 3/16 1,2 3/64 3, VNP mm in mm in mm in mm in mm in VNP VNP331 9,53 3/8 16, ,76 3/16 0,4 1/64 3, VNP VNP332 9,53 3/8 16, ,76 3/16 0,8 1/32 3, D40

42 WIDIA Victory Carbide Inserts P N S WNA WP15CT WP25CT WP35CT W15CT W25CT W35CT W05CT W20CT WS10PT WS25PT mm in mm in mm in mm in mm in WNA WNA332 9,53 3/8 6, ,76 3/16 0,8 1/32 3, WNA WNA333 9,53 3/8 6, ,76 3/16 1,2 3/64 3, WNA WNA432 12,70 1/2 8, ,76 3/16 0,8 1/32 5, WNA WNA433 12,70 1/2 8, ,76 3/16 1,2 3/64 5, WNA WNA434 12,70 1/2 8, ,76 3/16 1,6 1/16 5, Turning WIDIA Victory WNG-FF mm in mm in mm in mm in mm in WNG060404FF WNG331FF 9,53 3/8 6, ,76 3/16 0,4 1/64 3, WNG060408FF WNG332FF 9,53 3/8 6, ,76 3/16 0,8 1/32 3, WNG080404FF WNG431FF 12,70 1/2 8, ,76 3/16 0,4 1/64 5, WNG080408FF WNG432FF 12,70 1/2 8, ,76 3/16 0,8 1/32 5, WNG-FW mm in mm in mm in mm in mm in WNG080404FW WNG431FW 12,70 1/2 8, ,76 3/16 0,4 1/64 5, WNG080408FW WNG432FW 12,70 1/2 8, ,76 3/16 0,8 1/32 5, WNG080412FW WNG433FW 12,70 1/2 8, ,76 3/16 1,2 3/64 5, D41

43 WIDIA Victory Carbide Inserts P N S WNG-L Turning WIDIA Victory WP15CT WP25CT WP35CT W15CT W25CT W35CT W05CT W20CT WS10PT WS25PT mm in mm in mm in mm in mm in WNG060404L WNG331L 9,53 3/8 6, ,76 3/16 0,4 1/64 3, WNG060408L WNG332L 9,53 3/8 6, ,76 3/16 0,8 1/32 3, WNG080404L WNG431L 12,70 1/2 8, ,76 3/16 0,4 1/64 5, WNG080408L WNG432L 12,70 1/2 8, ,76 3/16 0,8 1/32 5, WNG-R mm in mm in mm in mm in mm in WNG080408R WNG432R 12,70 1/2 8, ,76 3/16 0,8 1/32 5, WNG080412R WNG433R 12,70 1/2 8, ,76 3/16 1,2 3/64 5, WNG080416R WNG434R 12,70 1/2 8, ,76 3/16 1,6 1/16 5, WNG-W mm in mm in mm in mm in mm in WNG080408W WNG432W 12,70 1/2 8, ,76 3/16 0,8 1/32 5, WNG080412W WNG433W 12,70 1/2 8, ,76 3/16 1,2 3/64 5, D42

44 WIDIA Victory Carbide Inserts P N S WNG-R WP15CT WP25CT WP35CT W15CT W25CT W35CT W05CT W20CT WS10PT WS25PT mm in mm in mm in mm in mm in WNG060408R WNG332R 9,53 3/8 6, ,76 3/16 0,8 1/32 3, WNG080408R WNG432R 12,70 1/2 8, ,76 3/16 0,8 1/32 5, WNG080412R WNG433R 12,70 1/2 8, ,76 3/16 1,2 3/64 5, WNG080416R WNG434R 12,70 1/2 8, ,76 3/16 1,6 1/16 5, WNG-UF Turning WIDIA Victory mm in mm in mm in mm in mm in WNG060404UF WNG331UF 9,53 3/8 6, ,76 3/16 0,4 1/64 3, WNG060408UF WNG332UF 9,53 3/8 6, ,76 3/16 0,8 1/32 3, WNG080404UF WNG431UF 12,70 1/2 8, ,76 3/16 0,4 1/64 5, WNG080408UF WNG432UF 12,70 1/2 8, ,76 3/16 0,8 1/32 5, WNG080412UF WNG433UF 12,70 1/2 8, ,76 3/16 1,2 3/64 5, WNG-U mm in mm in mm in mm in mm in WNG060404U WNG331U 9,53 3/8 6, ,76 3/16 0,4 1/64 3, WNG060408U WNG332U 9,53 3/8 6, ,76 3/16 0,8 1/32 3, WNG060412U WNG333U 9,53 3/8 6, ,76 3/16 1,2 3/64 3, WNG080404U WNG431U 12,70 1/2 8, ,76 3/16 0,4 1/64 5, WNG080408U WNG432U 12,70 1/2 8, ,76 3/16 0,8 1/32 5, WNG080412U WNG433U 12,70 1/2 8, ,76 3/16 1,2 3/64 5, WNG080416U WNG434U 12,70 1/2 8, ,76 3/16 1,6 1/16 5, D43

45 WIDIA Victory Carbide Inserts P N S WNG-UR Turning WIDIA Victory WP15CT WP25CT WP35CT W15CT W25CT W35CT W05CT W20CT WS10PT WS25PT mm in mm in mm in mm in mm in WNG060408UR WNG332UR 9,53 3/8 6, ,76 3/16 0,8 1/32 3, WNG060412UR WNG333UR 9,53 3/8 6, ,76 3/16 1,2 3/64 3, WNG080408UR WNG432UR 12,70 1/2 8, ,76 3/16 0,8 1/32 5, WNG080412UR WNG433UR 12,70 1/2 8, ,76 3/16 1,2 3/64 5, WNG080416UR WNG434UR 12,70 1/2 8, ,76 3/16 1,6 1/16 5, WNP mm in mm in mm in mm in mm in WNP WNP432 12,70 1/2 8, ,76 3/16 0,8 1/32 5, WNP WNP433 12,70 1/2 8, ,76 3/16 1,2 3/64 5, WPT-FP mm in mm in mm in mm in mm in WPTS3T104FP WPT15121FP 4,76 3/16 3, ,98 5/64 0,4 1/64 2, WPT040204FP WPT2151FP 6,35 1/4 4, ,38 3/32 0,4 1/64 2, WPT06T304FP WPT3251FP 9,53 3/8 6, ,97 5/32 0,4 1/64 4, WPT06T308FP WPT3252FP 9,53 3/8 6, ,97 5/32 0,8 1/32 4, D44

46 CBN Inserts for ard Turning CBN Inserts are available in a wide range of grades, making them ideal for all your continuous to heavily interrupted turning applications. Best choice for hardened steels and powdered metals. Coated grades for increased tool life and consistent results. Uncoated grades for superior surface finish in close-tolerance machining. To learn more about our innovations, contact your local Authorised Distributor or visit

47 S-Style Toolholders Now Available An expanded selection of S-Style toolholders and boring bars (steel and carbide) are now available from WIDIA. S Center clamping by screw for inserts with hole Screw clamping system for positive indexable inserts CPT, DPT, and TPT (included in the new WIDIA Victory carbide insert line). Compact design for simplicity, high reliability, and cost effectiveness. A carbide shim provides additional tool protection. Toolholders with cutting edge heights upwards of 16mm and insert ICs from 9,52mm are secured by means of a threaded bushing. Qualified to current standards. Visit us at for a complete listing of these new tools. To learn more about our innovations, contact your local Authorized Distributor or visit Win with WIDIA

48 WT System Our WT toolholders now have a smart new naming system. ere are some examples of the improved nomenclature for our WT Toolholders. Integral Toolholders WT A R Tooling System WT = Groove and Turn (WT Insert) Tool Style and R = Right hand S = Straight L = Left hand C = Straight with circular support E = End mount A = Straight, face grooving inboard sweep B = Straight, face grooving outboard sweep Shank Size For square shanks, the number indicates the height and width in 1/16" increments. For rectangular shanks, the first digit indicates the number of eights of width B and the second digit indicates the number of quarters of height. Seat Size 1 2 2B ax Grooving Depth CD max in 1/100" Note: Values <1.00" use a preceeding zero e.g. 075 =.75" max groove depth Face Grooving Diameter diameters are min and max for outer face groove diameter 999 = unlimited D max D min D max in 1/100" e.g = 2.75" D min 4.00" D max odular Blades WT R 6 19 B Tooling System SLS Connection Type and R = Right hand L = Left hand Seat Size ax Grooving Depth Tool Style Face Grooving Diameter odular Toolholders SLS R 16 Tooling System DG = odular Deep Grooving SLS = odular Serrated Locking System Integral Boring Bars S Tool Style S = Straight E = End mount and R = Right hand L = Left hand Shank Size For square shanks, the number indicates the height and width in 1/16" increments. For rectangular shanks, the first digit indicates the number of eights of width B and the second digit indicates the number of quarters of height. A Bar Type 16 Bar Diameter R Bar Length WT Tooling System E R 6 12 Tool Style and R = Right hand L = Left hand Seat Size ax Grooving Depth Tool Units odular Boring Bars Bar Type 16 Bar Diameter R Bar Length SLS Tooling System E Tool Style R and R = Right hand L = Left hand Tool Units Win with WIDIA For more detailed information about our new nomenclature system, visit us at

49 One System for Turning, Grooving, Cut-Off and Profiling WT System The WIDIA line of WT toolholders is the economical and reliable option for all your grooving, cut-off, turning, and profiling applications. Trust the WT system to ensure precise insert positioning and provide only the most accurate machining with exceptionally fast cycle times and superior performance. WT Exceptional versatility in one tool for all your OD and ID applications. Extra-long clamping area for unsurpassed grooving and turning stability. Interchangeable grooving and cut-off inserts designed for excellent chip control. D48

50 Versatile and Well Constructed Specifically designed to increase speeds and feeds. Excellent geometry for even the most demanding deep grooving applications. The WT system enables heavy stock removal in turning applications. Ensures finer surface finishes and a long, reliable tool life. WT Toolholders Outstanding system rigidity and clamping capabilities. Guarantees fast cycles times and limited turret indexes. Precise insert positioning for accurate machining. Double-V shape means operator-friendly insert indexing and optimum insert positioning. WT SLS odular Serrated Locking System (SLS) accepts C, C-W, and PT/PC inserts. Replaceable cartridge makes changing applications quick and easy. Adaptable and easy to use, it reduces setup time and downtime between jobs. A variety of insert widths available to meet your specific needs. C and C-W inserts PC grooving and profiling inserts PT grooving inserts D49

51 WT Turning, Grooving, Cut-Off, and Profiling Choosing the Correct WT Tooling The ost Advanced Turning Solutions in the Industry For unsurpassed quality, value, and performance, look no further than the WIDIA comprehensive line of specially engineered and dependable grooving and cut-off solutions. All the tools you need from the reliable name you can trust! The WT system, with its extra-long clamping area and precise insert positioning, ensures exceptionally fast and accurate machining, all-in-one tool, for your most demanding grooving, cut-off, turning, and profiling applications. It is perfect for all general purpose operations, including both shallow and deep grooving. Utilize this handy, easy-to-use guide to identify and select the appropriate grooving and cut-off tools for your specific needs. 1 Choose the application to be performed: Groove depth, width, and profile. Inside Diameter (I.D.) Grooving Face Grooving Cut-Off Profiling Outside Diameter (O.D.) Grooving Plunge and Turn 2 Identify the material to be machined: Each tool has a material grid marked with a letter indicating the materials that can be machined. P N S Steel Stainless Steel Cast Iron Non-Ferrous aterials igh-temp Alloys ardened aterials D50

52 WT Turning, Grooving, Cut-Off, and Profiling Choosing the Correct WT Tooling 3 Select your toolholder based on the application: A Choose the appropriate width W required for the application. B Choose the shortest cutting depth CD dimension for increased tool rigidity. B C C Select the largest toolholder shank and B dimensions for maximum rigidity. A A B C application conventional toolholders modular blades O.D. Grooving and Cut-Off pages D10 D12 pages D16 D17 Face Grooving pages D13 D14 pages D18 D19 I.D. Grooving pages D20 D21 Plunge and Turn pages D10 D12 pages D16 D17 NOTE: Referenced pages are from the WIDIA Turning Catalog, A Please visit for more information on available toolholders. D51

53 WT Turning, Grooving, Cut-Off, and Profiling Choosing the Correct WT Tooling 4 Select chipbreaker style for the application: C C-W PT PC Cut-off Cut-off with wipers Grooving and turning Profiling and turning NOTE: Chart shows recommended starting feed rates. A Choose the appropriate insert width W for your specific application. B Select the required corner radius value RR. A B D52

54 WT Turning, Grooving, Cut-Off, and Profiling Choosing the Correct WT Tooling 5 Select grade: Recommended Grades cutting condition steel stainless steel cast iron non-ferrous metals high-temp alloys hardened materials smooth cut, pre-turned surface WP10CT WU10PT WP10CT WU10PT WU10PT WU10PT varying depth of cut, casting, or forging skin WP10CT WU10PT WP10CT WP10CT WP10CT WP10CT lightly interrupted cut WP25CT WU25PT WP25CT WU25PT WU25PT WU25PT heavily interrupted cut WU25PT WU25PT WP25CT WU25PT WU25PT WU25PT See page D54 for Grades and Grade Descriptions. 6 Determine cutting data: A Based on material group and grade, identify starting speed (vc). B First choice starting speed is in bold. See pages D56 and D57 for cutting data. WT Turning, Grooving, and Cut-Off Speed and Feed Chart etric 513 VDI 3323 aterial Group Cutting Speed vc m/min min Start max min Start max min Start max min Start max min Start max WU10T WU10PT WU25PT WP10CT WP25CT A B P WU10T WU10PT WU25PT WP10CT WP25CT WU10T WU10PT WU25PT WP10CT WP25CT WU10T WU10PT WU25PT WP10CT WP25CT N WU10T WU10PT WU25PT WP10CT WP25CT S D53

55 WT Turning, Grooving, and Cut-Off Grades and Grade Descriptions Coatings provide high-speed capability and are engineered for finishing to light roughing. P N S Steel Stainless Steel Cast Iron Non-Ferrous aterials igh-temp Alloys ardened aterials wear resistance toughness Coating Grade Description P WU10PT C-P15 An advanced PVD-TiAlN coating over a very deformation-resistant unalloyed carbide substrate. The WU10PT grade s new and improved coating enables speeds to be increased by %. The WU10PT grade is ideal for finishing to general machining of most workpiece materials at higher speeds. Excellent for machining most steels, stainless steels, cast irons, non-ferrous materials, and super alloys under stable conditions. It also performs well machining hardened and short chipping materials. N S P WU25PT C-P30 An advanced PVD-TiAlN-coated grade with a tough, ultra-fine-grain, unalloyed substrate. For general-purpose machining of most steels, stainless steels, high-temperature alloys, titanium, irons, and non-ferrous materials. Speeds may vary from low to medium and will handle interruptions and high feed rates. N S WU10T A hard, low binder content, unalloyed WC/Co fine-grained grade. Exceptional edge wear resistance combined with very high strength for machining titanium, cast irons, austenitic stainless steels, non-ferrous metals, non-metals, and most high-temperature alloys. Superior thermal deformation and depth of cut notch resistance. The grain structure is well controlled for minimal pits and flaws, which contributes to long, reliable service. N S Grade W-15 P WP10CT C-P10 A specially engineered, patented, cobalt-enriched carbide grade with thick -TCVD-TiCN coating layer, an Al 2 O 3 layer of controlled grain size, and outer layers of TiCN and TiN for maximum wear resistance. An excellent finishing to medium machining grade for a variety of workpiece materials including most steels, ferritic and martensitic stainless steels, and cast irons. The specially engineered, cobalt-enriched substrate offers a balanced combination of deformation resistance and edge toughness, while the thick coating layers offer outstanding abrasion resistance and crater wear resistance for high-speed machining. The smooth coating provides good resistance to edge build-up and microchipping and produces excellent surface finishes. For rougher cutting, use the WP10CT grade. P WP25CT C-P25 A tough cobalt-enriched carbide grade with a newly designed multilayer -TCVD TiCN-Al 2 O 3 -TiCN- TiN coating with superior interlayer adhesion. This is the industry s best general-purpose turning grade for most steels and ferritic and martensitic stainless steels. The substrate design, with cobalt-enrichment, ensures adequate deformation resistance along with excellent bulk toughness and insert edge strength. The coating layers offer good wear resistance over a wide range of machining conditions. The smoothness of the coating leads to reduced frictional heat, minimizes microchipping, and improves workpiece surface finishes. The WP25CT grade performs well in moderately heavy roughing to semi-finishing cuts. Use the WP25CT grade for finishing cuts. D54

56 WT Turning, Grooving, and Cut-Off Catalog Numbering System WT Identification System Cut-Off WTC015N00C08 WT C 015 N 00 C 08 Tooling System Cut-Off W in mm*10 inch*1000 and of Insert ain Cutting Edge Lead Angle Chipbreaker Geometry C = Cut-Off C-W = Cut-Off with Wiper Corner Radius in mm* 10 Grooving WTS2052U02PT WT S U 02 PT Tooling System Square mm*10 inch*1000 Unit of easurement for Width m = mm i = inch Seat Size U = olded or P = Ground Corner Radius in mm * 10 Chipbreaker Geometry Plunge Contour WTR3053UPC WT R U PC Tooling System Full Radius mm*10 inch*1000 Unit of easurement for Width m = mm i = inch Seat Size U = olded or P = Ground Chipbreaker Geometry D55

57 WT Turning, Grooving, and Cut-Off Speed and Feed Chart etric Turning WT Turning, Grooving, and Cut-Off 513 VDI 3323 aterial Group Cutting Speed vc m/min min Start max min Start max min Start max min Start max min Start max WU10T WU10PT WU25PT WP10CT WP25CT P WU10T WU10PT WU25PT WP10CT WP25CT WU10T WU10PT WU25PT WP10CT WP25CT WU10T WU10PT WU25PT WP10CT WP25CT N WU10T WU10PT WU25PT WP10CT WP25CT S D56

58 WT Turning, Grooving, and Cut-Off Speed and Feed Chart Inch 513 VDI 3323 aterial Group Cutting Speed vc SF min Start max min Start max min Start max min Start max min Start max WU10T WU10PT WU25PT WP10CT WP25CT P WU10T WU10PT WU25PT WP10CT WP25CT WU10T WU10PT WU25PT WP10CT WP25CT WU10T WU10PT WU25PT WP10CT WP25CT N WU10T WU10PT WU25PT WP10CT WP25CT S Turning WT Turning, Grooving, and Cut-Off D57

59 WT Turning, Grooving, and Cut-Off Cut-Off Inserts right hand neutral P N S RR = RL on neutral inserts Turning WT Turning, Grooving, and Cut-Off WT-C W RR LI seat size mm in mm in mm in α hand WTC015N00C08 1 1, , , N - Neutral WTC020N00C08 2 2, , , N - Neutral WTC094N00C13 2B 2, , , N - Neutral WTC030N00C17 3 3, , , N - Neutral WTC125N00C17 3 3, , , N - Neutral WTC040N00C17 4 4, , , N - Neutral W RR LI seat size mm in mm in mm in α hand WTC015L05C08 1 1, , , L - Left WTC020L05C08 2 2, , , L - Left WTC020L12C08 2 2, , , L - Left WTC030L05C17 3 3, , , L - Left WTC030L12C17 3 3, , , L - Left WTC040L12C17 4 4, , , L - Left WTC040L05C17 4 4, , , L - Left WU25PT W RL LI seat size mm in mm in mm in α hand WTC015R12C08 1 1, , , R - Right WTC015R05C08 1 1, , , R - Right WTC020R05C08 2 2, , , R - Right WTC020R12C08 2 2, , , R - Right WTC094R12C13 2B 2, , , R - Right WTC094R05C13 2B 2, , , R - Right WTC030R05C17 3 3, , , R - Right WTC030R12C17 3 3, , , R - Right WTC125R05C17 3 3, , , R - Right WTC125R12C17 3 3, , , R - Right WTC040R05C17 4 4, , , R - Right WTC040R12C17 4 4, , , R - Right D58

60 WT Turning, Grooving, and Cut-Off Cut-Off Inserts with Wiper right hand neutral P N S RR = RL on neutral inserts WT-C-W W RR LI seat size mm in mm in mm in α hand WTC015N00CW08 1 1, , , N - Neutral WTC020N00CW08 2 2, , , N - Neutral WTC094N00CW13 2B 2, , , N - Neutral WTC030N00CW17 3 3, , , N - Neutral WTC125N00CW17 3 3, , , N - Neutral WTC040N00CW17 4 4, , , N - Neutral W RR LI seat size mm in mm in mm in α hand WTC020L12CW08 2 2, , , L - Left WTC030L05CW17 3 3, , , L - Left WTC030L12CW17 3 3, , , L - Left WU25PT Turning WT Turning, Grooving, and Cut-Off W RL LI seat size mm in mm in mm in α hand WTC020R05CW08 2 2, , , R - Right WTC020R12CW08 2 2, , , R - Right WTC094R12CW13 2B 2, , , R - Right WTC094R05CW13 2B 2, , , R - Right WTC030R05CW17 3 2, , , R - Right WTC030R12CW17 3 2, , , R - Right WTC125R05CW17 3 3, , , R - Right WTC125R12CW17 3 3, , , R - Right WU25PT D59

61 WT Turning, Grooving, and Cut-Off Grooving and Turning Inserts P N S RR = RL Turning WT Turning, Grooving, and Cut-Off WT-U-PT olded WT-P-PT Precision W RR LI WP10CT WP25CT WU10PT WU25PT WU10T seat size mm in mm in mm in WTS2052U02PT 2 2, , , WTS3053U03PT 3 3, , , WTS3053U06PT 3 3, , , WTS4054U03PT 4 4, , , WTS4054U06PT 4 4, , , WTS5055U03PT 5 5, , , WTS5055U06PT 5 5, , , WTS6056U03PT 6 6, , , WTS6056U06PT 6 6, , , WTS8058U06PT 8 8, , , WTS8058U15PT 8 8, , , W RR LI seat size mm in mm in mm in WTS2002P02PT 2 2, , , WTS094I2BP02PT 2B 2, , , WTS094I2BP04PT 2B 2, , , WTS3003P03PT 3 3, , , WTS3003P06PT 3 3, , , WTS125I3P03PT 3 3, , , WTS125I3P08PT 3 3, , , WTS4004P03PT 4 4, , , WTS4004P06PT 4 4, , , WTS188I5P03PT 5 4, , , WTS188I5P08PT 5 4, , , WTS5005P03PT 5 5, , , WTS5005P06PT 5 5, , , WTS6006P03PT 6 6, , , WTS6006P06PT 6 6, , , WTS250I6P08PT 6 6, , , WTS250I6P03PT 6 6, , , WTS8008P06PT 8 8, , , WTS8008P15PT 8 8, , , D60

62 WT Turning, Grooving, and Cut-Off Plunge and Contour Inserts P N S WT-U-PC olded W RC LI WP10CT WU10PT WU25PT seat size mm in mm in mm in WTR3053UPC 3 3, , , WTR4054UPC 4 4, , , WT-P-PC Precision WTR5055UPC 5 5, , , WTR6056UPC 6 6, , , WTR8058UPC 8 8, , , W RC LI WU10PT WU25PT WU10T seat size mm in mm in mm in WTR3003PPC 3 3, , , WTR125I3PPC 3 3, , , WTR4004PPC 4 4, , , WTR188I5PPC 5 4, , , WTR5005PPC 5 5, , , WTR6006PPC 6 6, , , WTR250I6PPC 6 6, , , WTR312I8PPC 8 7, , , WTR8008PPC 8 8, , , Turning WT Turning, Grooving, and Cut-Off D61

63 ProGroove With easy-to-change inserts available in multiple high-performance carbide grades, the ProGroove system ensures accurate, reliable, and reproducible cutting edge performance. ProGroove Grooving and Cut-Off Single-end inserts for grooving and cut-off. Offered with integral shanks and blades. Shallow, deep grooving, and cut-off capabilities. Available in four different geometries. To learn more about our innovations, contact your local Authorized Distributor or visit Win with WIDIA

64 WGT and WGF Cut-Off Inserts WGT and WGF inserts specifically designed to fit the SELF-GRIP toolholders available from Iscar. For traditional cut-off applications, the original WGT-style inserts are available in widths ranging from 2,25 4,80mm. For increased stability in large diameter cut-off applications, the WGF geometry is available in widths ranging from 1,60 9,50mm. *SELF-GRIP is a registered trademark owned by ISCAR Ltd. WGT & WGF WGT inserts WGT inserts are T-type with no stopper. The WGT inserts replace single-end cutting inserts. WGF inserts Single-side insert for cut-off applications. This insert has a hard stop that seats insert securely into the pocket. center stub (stock) part WGT The WGT inserts fit into all T-cut type integral and blade toolholders. cut-off to center WGF The WGF inserts fit into all F-type integral and blade toolholders. D63

65 WGT Cut-Off Inserts Carbide Inserts P N S Turning WGT Cut-Off WGT-N RR = RL on neutral inserts mm in mm in WGTN2 2, , WGTN24 2, , W WGTN3J 3, , WGTN3 3, , WGTN6 6, , WGTN3W 3, , WGTN5 5, , WGTN4 4, , WGTN48 4, , RL TN6025 WGT-R W αr RL mm in mm in WGTR28D 2, , WGTR24D 2, , WGTR248D 2, , WGTR244D 2, , WGTR38D 3, , WGTR34D 3, , WGTR44D 4, , D64

66 WGF Cut-Off Inserts Carbide Inserts P N S WGF-N RR = RL on neutral inserts mm in mm in WGFN16 1, , WGFN2J 2, , WGFN2 2, , WGFN24 2, , WGFN3 3, , WGFN3J 3, , WGFN3 3, , WGFN4J 4, , WGFN4B 4, , WGFN4 4, , WGFN48 4, , WGFN6 6, , WGFN9 9, , W RL TN6025 Turning WGF Cut-Off WGF-L W αl RR mm in mm in WGFL38D 2, , WGFL48D 4, , WGF-R W αr RL mm in mm in WGFR168D 1, , WGFR248D 2, , WGFR315D 2, , WGFR38D 2, , WGFR34D 3, , D65

67 The Gold Standard for Value WIDIA Value WIDIA Value is the cost-effective line of inserts from the brand you already know and trust for quality. Each insert is 100% manufactured by WIDIA to outperform competitive inserts when cutting steel, stainless steel, cast iron, and high-temperature alloys. With a simple grade selection method, and because these inserts can be used in an astounding 80% of all applications, WIDIA Value is perfect for small and midsize turning operations. WIDIA Value Engineered to optimize performance. Gold coating on every insert. Proven grade technologies. Post-coat treatment Improves edge toughness. Wide range of applications. Improved edge toughness Provides smooth outer surface to reduce forces, friction, and workpiece sticking. T-CVD/CVD TiN-TiCN-AI TiN Post-coat grinding Provides secure seating surface. D66

68 Getting the ost from Every Insert WIDIA Value products make it simple to get the most out of your inserts, and your money. Every insert is gold, which exposes wear as the tool continues to be used. This makes it easy to detect when an insert is ready to be changed maximizing the product s value and protecting the workpiece. Also, because WIDIA Value inserts can be used in most applications, a single insert can take on any number of tasks, thus reducing your inventory. WIDIA Value products are also reliable enough to cut steel, stainless steel, cast iron, and high-temperature alloys, enabling quick changes in workpiece materials without the need to swap inserts, saving time and money. Save up to 50% WIDIA Value inserts were developed to make it easy for small and midsize turning operations to utilize an affordable, quality product. With greater durability than competitively listed products, WIDIA Value inserts ensure an overall reduction of tooling costs. Locate the lowest prices for these inserts by purchasing through our distributor partners or online, where savings can be as high as 50%. WIDIA Value Options This platform offers a simple geometry selection system. This versaltile line offers eight grades to chose from, and eight geometries, including negative rake and screw-on. With this many options, it s no wonder WIDIA Value inserts cover 80% of all general turning applications. D67

69 WIDIA Value Speed and Feed Chart Negative Inserts etric Turning WIDIA Value DIN 513 VDI 3323 A Finishing (ap x f = 1 x 0,1) B edium (ap x f = 2 x 0,2) C Roughing (ap x f = 4 x 0,25) D eavy roughing (ap x f = 6 x 0,6) aterial Group Cutting Speed vc m/min min Start max min Start max min Start max min Start max min Start max min Start max Geometry 2P 2P 6P 6P 7N 7N ap [mm] 0,20 2,00 0,80 5,00 1,00 8,00 2,00 15,00 f [mm] 0,05 0,20 0,16 0,40 0,20 0,60 0,40 1,00 TN10P TN10P TN20P TN20P TN30P P Geometry 2P 2P 4P 4P 7N ap [mm] 0,20 2,00 0,60 5,00 0,50 6,00 f [mm] 0,05 0,20 0,12 0,40 0,10 0,60 TN30 TN30 TN Geometry 2P 2P 6P..A 6P 7P..A 7N ap [mm] 0,20 2,00 1,00 8,00 1,00 8,00 2,00 15,00 f [mm] 0,05 0,20 0,20 0,60 0,20 0,60 0,25 1,20 TN20 TN20 TN20 TN Geometry 2P 2P.NGP 4P 4P 6P ap [mm] 0,50 4,00 0,50 4,00 0,50 4,00 0,50 6,00 f [mm] 0,10 0,50 0,10 0,50 0,10 0,50 0,10 0,60 TN15U TN10U T10U TN15U TN15U S D68

70 WIDIA Value Speed and Feed Chart Negative Inserts Inch 513 VDI 3323 A Finishing (DOC x feed =.0394 x.0039) B edium (DOC x feed =.0787 x.0079) C Roughing (DOC x feed =.1575 x.0098) D eavy roughing (DOC x feed =.2362 x.0236) aterial Group Cutting Speed vc SF min Start max min Start max min Start max min Start max min Start max min Start max Geometry 2P 2P 6P 6P 7N 7N DOC [inch] feed [inch] TN10P TN10P TN20P TN20P TN30P P Geometry 2P 2P 4P 4P 7N DOC [inch] feed [inch] TN30 TN30 TN Geometry 2P 2P 6P..A 6P 7P..A 7N DOC [inch] feed [inch] TN20 TN20 TN20 TN Geometry 2P 2P.NGP 4P 4P 6P DOC [inch] feed [inch] TN15U TN10U TN10U TN15U TN15U S Turning WIDIA Value D69

71 WIDIA Value Speed and Feed Chart Positive Inserts etric Turning WIDIA Value DIN 513 VDI 3323 A Finishing (ap x f = 1x 0,1) B edium (ap x f = 2 x 0,2) C Roughing (ap x f = 4 x 0,25) aterial Group Cutting Speed vc m/min min Start max min Start max min Start max min Start max min Start max min Start max Geometry 1P 1P 1P ap [mm] 0,20 2,00 0,30 4,50 0,70 5,00 f [mm] 0,05 0,20 0,08 0,35 0,12 0,40 TN10P TN10P TN20P P Geometry 1P 1P 1P 1P ap [mm] 0,20 2,00 0,30 4,50 0,30 4,50 0,30 4,50 f [mm] 0,05 0,20 0,08 0,35 0,08 0,35 0,08 0,35 TN30 TN30 TN15U TN30 TN15U Geometry 1P 1P 1P ap [mm] 0,20 2,00 0,30 4,50 1,00 8,00 f [mm] 0,05 0,20 0,08 0,35 0,10 0,50 TN20 TN20 TN Geometry 1P 1P 1P ap [mm] 0,30 2,00 0,30 4,50 0,30 4,50 f [mm] 0,08 0,20 0,08 0,35 0,08 0,35 TN15U TN10U TN15U TN10U TN15U S D70

72 WIDIA Value Speed and Feed Chart Positive Inserts Inch 513 VDI 3323 A Finishing (doc x feed =.0394 x.0039) B edium (doc x feed =.0787 x.0079) C Roughing (d.o.c. x feed =.1575 x.0098) aterial Group Cutting Speed vc SF min Start max min Start max min Start max min Start max min Start max min Start max 1P 1P 1P DOC [inch] feed [inch] TN10P TN10P TN20P P P 1P 1P 1P DOC [inch] feed [inch] TN30 TN30 TN15U TN30 TN15U P 1P 1P DOC [inch] feed [inch] ,08 0, TN20 TN20 TN P 1P 1P 1P 1P DOC [inch] f [inch] TN15U TN10U TN15U TN10U TN15U S Turning WIDIA Value D71

73 WIDIA Value Chipbreaker Geometries Positive and Negative Inserts 1P Preferred for light finishing. Low cutting forces and reduced power requirements due to positive rake angle. Good chip control over a wide range. P S depth of cut (mm) a p P S depth of cut (inch) a p feed rate (mm) f n feed rate (inch) f n 2P For finish turning, producing smooth, accurate surfaces. Very good chip control, especially at low depths of cut. P S depth of cut (mm) a p P S depth of cut (inch) a p feed rate (mm) f n feed rate (inch) f n 4P For medium-duty turning operations. Soft-cutting chipbreaker. Used in applications producing varying chip sections, such as profile or copy turning. Good dimensional accuracy. For soft steel materials and stainless steels depth of cut (mm) a p depth of cut (inch) a p feed rate (mm) f n feed rate (inch) f n 6P For medium to rough turning. Outstanding chip control due to specially configured chipbreaker element in corner area. Good chip forming with low depths of cut. P depth of cut (mm) a p P depth of cut (inch) a p feed rate (mm) f n feed rate (inch) f n D72

74 WIDIA Value Chipbreaker Geometries Positive and Negative Inserts 7N For medium-duty to roughing. Outstanding chip control. igh edge strength for interrupted cuts, forging skin or scale. Preferred for all cast iron such as gray, malleable, and nodular. P depth of cut (mm) a p P depth of cut (inch) a p feed rate (mm) f n feed rate (inch) f n..a Flat top geometry for machining cast iron. For finishing to roughing applications. depth of cut (mm) a p depth of cut (inch) a p feed rate (mm) f n feed rate (inch) f n..gp For light machining to light roughing. S depth of cut (mm) a p S depth of cut (inch) a p feed rate (mm) f n feed rate (inch) f n D73

75 WIDIA Value Grades and Grade Descriptions Coatings provide high-speed capability and are engineered for finishing to light roughing. P N S Steel Stainless Steel Cast Iron Non-Ferrous aterials igh-temp Alloys ardened aterials wear resistance toughness Coating Grade Description P TN10P Coated carbide. TCVD-TiN-TiCN-Al 2 O 3 -TiN. Ideal for light finishing to medium machining applications. Superior wear resistance. Turning WIDIA Value TN20P TN30P TN15 C-P10 C-P20 C-P30 Coated carbide. TCVD-TiN-TiCN-Al 2 O 3 -TiN. Great general-purpose turning grade for steels. Ideal for semi-finishing to moderately heavy roughing. Coated carbide. TCVD-TiN-TiCN-Al 2 O 3 -TiN. Tough carbide grade. Ideal for roughing and heavy roughing applications. Coated carbide. TCVD-TiN-TiCN-Al 2 O 3 -TiN. Ideal for finishing to medium machining of austentic stainless steels. P P P Grade TN30 C-15 Coated carbide. TCVD-TiN-TiCN-Al 2 O 3 -TiN. Ideal for general-purpose machining of stainless steels. P C-30 P TN20 Coated carbide. TCVD-TiN-TiCN-Al 2 O 3 -TiN. Great when used for straight or lightly interrupted cut applications of ductile and cast irons. TN10U TN15U C-20 C-S10 W-P15 Coated carbide. PVD-TiAlN-TiN. Ideal for finishing of difficult to machine alloys and stainless steels. Uncoated carbide. Excellent abarasion resistance for machining cast irons, austentic stainless steels, and most high-temperature alloys. P N S P N S D74

76 WIDIA-CIRCLE Small-ole Tooling Series The WIDIA line of small-hole boring tools is an excellent, economical choice for a wide range of applications. Our solid carbide bars provide exceptional machining versatility and rupture strength. Indexable inserts are available in both steel and carbide shanks. A/B Series Unique locking system enables quick, accurate insert changes. Quadralock V-slots and limit-stop bolts for increased indexability. icro Boring Bars Free cutting action, better surface finishes, and greater chip evacuation. Solid Carbide Bars Accurate, quick-change tooling and toolholders are ideal for small parts machining applications. To learn more about our innovations, contact your local Authorized Distributor or visit

77 WIDIA Value Catalog Numbering System ow Do Catalog Numbers Work? Each character in our signifies a specific trait of that product. Use the following key columns and corresponding images to easily identify which attributes apply. CNG4326P C N G 4 Insert Shape Insert Clearance Angle Tolerance Class Insert Features Size exagon 120 O Octagon 135 P Pentagon 108 R Round S Square 90 T C D E V Triangular 60 Rhomboid A B C D E F G Tolerances apply prior to edge prep and coating Rε Rε Rε D= Theoretical diameter of the insert inscribed circle S= Thickness B= See figures below Special Design Code for inch cutting edge length L10 D inch inch C D R S T V W 1.2 (5) 5/32 S (6) 3/ S3 1.8 (7) 7/ / / / / / / / / / / / W Trigon 80 with enlarged corner angles N tolerance tolerance tolerance tolerance class on D on B on S C ±.0010" ±.0005" ±.001" L Rectangular 90 P ±.0005" ±.0005" ±.001" E ±.0010" ±.0010" ±.001" G ±.0010" ±.0010" ±.0005" A B N/ Parallelogram O Indicated for other clearance angles requiring descriptions. See tables in size column ±.0005" U See tables in size column ±.0005" D76

78 WIDIA Value Catalog Numbering System By referencing this easy-to-use guide, you can identify the correct product to meet your needs. CNG4326P 3 Thickness S 2 Corner Radius Rε and of Insert (optional) Cutting Edge (optional) 6P Chipbreaker (optional) symbol thickness inch inch.5 (1) 1/ (2) 1/ (3) 3/32 2 1/ /32 3 3/ /32 4 1/4 5 5/16 6 3/8 7 7/ /2 corner symbol radius inch inch X /64 2 1/32 3 3/64 4 1/16 5 5/64 6 3/32 7 7/64 8 1/8 round insert R = Right hand L = Left hand N = Neutral L N R F Sharp Rounded Chamfered Chamfered and Rounded Double-Chamfered Double-Chamfered and Rounded 1P Finishing 4P edium achining 7N eavy Roughing 2P Finishing 6P edium Roughing..GP edium achining..a Roughing D77

Chipbreaker Geometry Negative...F2 F3. Chipbreaker Geometry Positive...F3. Grades and Grade Descriptions...F4. Speed and Feed Chart...

Chipbreaker Geometry Negative...F2 F3. Chipbreaker Geometry Positive...F3. Grades and Grade Descriptions...F4. Speed and Feed Chart... WIDIA Value Chipbreaker Geometry egative....................................................................f2 F3 Chipbreaker Geometry ositive.......................................................................f3

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