Centred disc butterfly valves with special AMRING elastomer liner. ND 40 to 1000 mm Allowable pressure p s 16 bar. AMRI is ISO 9001 approved.

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Technical leaflet 8445.1/2-10 ISORIA 16 Centred disc butterfly valves with special AMRING elastomer liner ND 40 to 1000 mm Allowable pressure p s 16 bar The ISORIA 16 series, developed by AMRI-KSB, is the answer to many flow shut-off or regulation problems that may be encountered in all sectors of industry. Designed for an allowable pressure p s of 16 bar, the ISORIA 16 valves include ranging in sizes from 40 to 1000 mm. This technical leaflet supplies technical information concerning these valves. AMRI is ISO 9001 approved.

Contents Page Manufacturing programme - Design - Dimensional characteristics...... 3 Hydraulic characteristics... 4 Operating torques......... 5 Materials... 5, 6 and 7 Vacuum limits... 8 Flange connection... 8, 9 and 10 Tests Inspection... 11 Marking Coating... 11 Construction - Parts list... 12 and 13 Dimensions and weight - Type 1... 14 Dimensions and weight - Type 2... 15 Dimensions and weight - Type 4... 16 and 17 Dimensions and weight - Type 5... 18 and 19 Dimensions and weight - Type 6... 20 Flanging dimensions......... 21 Installation............ 22 Manual control by ¼ turn handles, MA and MR reducers...... 23 Electric control by ACTELEC ¼ turn and multi-turn actuators...... 24 Pneumatic control by ACTAIR double acting actuators...... 25 Pneumatic control by DYNACTAIR spring return actuators...... 26 Hydraulic control by ACTO double acting actuators and DYNACTO spring return actuators... 27 Data to be supplied upon request or when ordering...... 28 2

Manufacturing range Designed for an allowable pressure p s of 16 bar, the ISORIA 16 valves are available in five body shapes : wafer type, semi-lug type, full lug type with raised faces, flanged type body with flat faces, U-section body with raised faces. 125 mm Body type 2 Body shape Type (mm) Wafer type body with flat faces allowing dead-end service under p s 1 40 to 600 Semi-lug type body with flat faces, allowing downstream dismantling 2 40 to 600 and/or dead-end service under p s Full-lug type body with raised faces, allowing downstream dismantling 4 40 to 600 and/or dead-end service under p s Flanged type body with flat faces, allowing downstream dismantling 5 150 to 1000 and/or dead-end service under p s U-section body with raised faces, allowing downstream dismantling 6 650 to 1000 and/or dead-end service under p s Body type 4 350 mm Body type 2 Body type 1 Body type 4 Body type 5 Design The ISORIA 16 butterfly valves are designed in accordance with EN 593 standard (NF E 29-430 and 29-431). Dimensional characteristics The ISORIA 16 valves conform to the following standards : Face-to-face dimensions : ISO 5752 series 20, EN 558.1 series 20. Body type 1 Actuation mounting plate : ISO 5211. 3

Hydraulic characteristics Flow coefficients The following tables give the flow coefficients relating to the opening angle of the disc and the zeta coefficient. The flow coefficient Kv (or Cv) is the flow in m 3 /h (or US gallon/mn) passing through a valve with a resulting pressure drop of 1 bar (or 1 psi). The relationship between Cv and Kv is : Cv = 1.16 Kv Zeta is the factor which proportionally links the pressure drop in the valve to the kinetic energy of the fluid in the upstream side of the valve. Flow coefficients Kv in metric units (m³/h/bar 1/2 ) Flow coefficient Kv relating to the opening angle of the disc Zeta mm inch 10 20 30 40 50 60 70 80 90 40 50 65 80 100 125 150 200 250 300 350 400 450 500 550 600 650 700 750 800 900 1000 1 ½ 2 2 ½ 3 4 5 6 8 10 12 14 16 18 20 22 24 26 28 30 32 36 40 0 0 0 0 1 1 2 4 7 9 8 11 13 17 21 25 31 34 41 47 60 83 1 2 4 6 10 14 27 53 110 137 121 158 200 261 315 375 467 512 621 707 894 1239 2 6 11 18 29 41 81 160 331 410 363 473 599 783 945 1125 1400 1535 1863 2120 2682 3717 5 13 24 41 66 90 180 355 735 910 806 1050 1330 1740 2100 2500 3110 3410 4140 4710 5960 8260 10 24 43 74 118 162 324 639 1323 1638 1451 1890 2394 3132 3780 4500 5598 6138 7452 8478 10728 14868 16 40 72 123 197 270 540 1065 2205 2730 2418 3150 3990 5220 6300 7500 9330 10230 12420 14130 17880 24780 27 67 120 205 328 450 900 1775 3675 4550 4030 5250 6650 8700 10500 12500 15550 17050 20700 23550 29800 41300 48 120 216 369 590 810 1620 3195 6615 8190 7254 9450 11970 15660 18900 22500 27990 30690 37260 42390 53640 74340 53 133 240 410 655 900 1800 3550 7350 9100 8060 10500 13300 17400 21000 25000 31100 34100 41400 47100 59600 82600 1,46 0,56 0,49 0,39 0,37 0,48 0,25 0,20 0,12 0,16 0,37 0,37 0,37 0,33 0,33 0,33 0,30 0,33 0,30 0,30 0,30 0,23 Flow Coefficients Cv in american units (gallon US/mn/psi 1/2 ) Flow coefficient Cv relating to the opening angle of the disc mm inch 10 20 30 40 50 60 70 80 90 40 50 65 80 1 ½ 2 2 ½ 3 0 0 0 0 1 2 4 7 3 7 13 21 6 15 28 48 11 28 50 86 18 46 84 143 31 77 140 238 55 139 252 428 61,5 154 280 475 100 125 150 200 250 300 350 400 450 500 550 600 650 700 750 800 900 1000 4 5 6 8 10 12 14 16 18 20 22 24 26 28 30 32 36 40 1 1 2 4 8 10 9 12 15 20 24 29 36 40 48 55 69 96 11 16 31 62 127 157 139 181 229 300 362 431 542 594 720 819 1037 1437 34 47 94 185 380 471 417 543 688 900 1087 1294 1625 1782 2160 2457 3110 4311 76 104 209 412 845 1047 927 1208 1530 2001 2415 2875 3610 3960 4800 5460 6910 9580 137 188 376 742 1521 1884 1668 2174 2753 3602 4347 5175 6498 7128 8640 9828 12438 17244 228 313 627 1236 2536 3140 2781 3623 4589 6003 7245 8625 10830 11880 14400 16380 20730 28740 380 522 1045 2060 4226 5233 4635 6038 7648 10005 12075 14375 18050 19800 24000 27300 34550 47900 684 940 1881 3708 7607 9419 8342 10868 13766 18009 21735 25875 32490 35640 43200 49140 62190 86220 760 1044 2090 4120 8453 10465 9269 12075 15295 20010 24150 28750 36100 39600 48000 54600 69100 95800 4

Operating torques The operating torques (in Nm) stated in the tables below are the maximum torques encountered near the closing position when the disc edge compresses the liner. These torques integrate : - the manufacturing tolerances, - the different natures of elastomers, - the variations of the elastomer characteristics due to the temperature. No safety coefficient must be applied in the selection definition as per pages 23 to 27. In intermediate position and up to the fully open position, the friction torque is about 1/10 of the maximum values. Note : an important increase of the torque in intermediate position can be generated by the hydrodynamic torque in case of flow velocity increasing. Materials Torque Torque mm inch Nm mm inch Nm 40 1 ½ 20 450 18 1200 50 2 30 500 20 1500 65 2 ½ 40 550 22 1800 80 3 50 600 24 2100 100 4 70 650 26 3400 125 5 100 700 28 3800 150 6 140 750 30 4300 200 8 210 800 32 4500 250 10 330 900 36 5300 300 12 520 1000 40 6300 350 14 720 400 16 980 The materials used for the construction of ISORIA 16 valves and their mechanical characteristics are listed in the following tables. They conform to the standards in grey divisions. On request, certificates of material conformity can be supplied. Body : in one piece, achieved by casting, it has an extended neck allowing the pipe insulation. AMRI Material Designation in accordance with standards Mechanical characteristics KSBI Type EN ASTM JIS Uts MPa Yp MPa El. A % code 1 Carbon steel GP240GH (1) 3g 3t Ductile iron Cast iron JS 1030 (2) JL 1040 (3) A 216 gr. WCC A 536 gr.60-40-18 A 48 cl.35 Uts : Ultimate tensile strength - Yp : Yield point - El : Elongation (1) Previous standards : : DIN 17245 GSC-25 (2) Previous standards : DIN GGG 40 / NF FGS 400-15 (3) Previous standards : DIN GG 25 / NF FGL 250 The table below defines the body material relating its shape. JIS G5101 SC 49 JIS G5502 FCD 40 JIS G5501 FC 25 485 275 22 400 250 15 250 ---- ---- Model Type Material (mm) Wafer type 1 Cast iron - code 3t 40 to 600 Semi-lug type 2 Ductile iron - code 3g 40 to 600 Full-lug type with raised faces 4 Cast iron - code 3t 40 to 600 Flanged type body with flat faces 5 Ductile iron - code 3g 150 to 1000 U-section body 6 Ductile iron - code 3g 650 to 1000 with raised faces Carbon steel - code 1 650 to 1000 5

Shafts : in two parts, with anti blow-out device. Flat shaft end for sizes 40 to 300 mm and square shaft end for sizes 350 to 600 mm. The shaft/disc connection is achieved by splines for sizes up to 600 mm and by keys for upper sizes. AMRI-KSB Material Designation in accordance with standards Mechanical characteristics code type EN ASTM JIS Uts MPa Yp MPa El. A % 13% Cr 6k Stainless steel X29 CrS13 ----------- 850 to > 650 > 9 1000 EN 10088-3 X5CrNiCuNb16-4 17-4 N 1.4542 A 35-574 JIS G4303 6e stainless or A 564 gr. 630 > 900 > 700 > 9 steel X4CrNiMo16-5-1 SUS 630 N 1.4418 nickel alloy 8 MONEL > 912 > 647 > 15 ------------ K500 aged Uts : Ultimate tensile strength - Yp : Yield point - El : Elongation Materials The opposite table defines the various shaft materials mm inch relating to the valve size. 40 to 600 1 ½ to 24 6k* - 6e - 8 650 to 1000 26 to 40 6e* - 8 * standard Version Disc : spherically machined, casted or punched relating to the size and the materials. AMRI Designation in accordance with standards Mechanical KSB Material characteristics code type EN ASTM BS DIN UNI JIS Uts Yp El. 3g 6 6i 2* 3b* Ductile iron 18-12 type stainless steel 18-12 type stainless steel 18-12 type stainless steel mirror polished Aluminium Bronze Ductile iron titanium carbide coated JS 1030 (1) NF A 32-060 Z6CND18-12M EN 10088-3 A35-574 X2CrNiMo17-12-2 N 1.4404 NFA 53-709 CuAl10Fe5Ni5 A 536 gr.60-40-18 A 351 gr. CF8M A 182 Gr.F316 -------- -------- -------- BS 1504 316C16 DIN 17245 GX6CrNi Mo 18-10 N 1.4408 UNI 6901 X5CrNiMo 17-12 JIS G5502 FCD 40 JIS G5121 SCS 14 MPa MPa A % > 400 > 250 > 15 > 530 > 240 > 35 --------- > 485 > 170 > 30 Sames grades and characteristics as stainless steel, type 18-12 - code 6 B148-955 BS 1400 A B2 Uts : Ultimate tensile strength - Yp : Yield point - El : Elongation (1) Previous standards : DIN GGG40 / NF FGS 400-15 * For the availability of these materials, please consult us. DIN 1714 GCuAl10Ni UNI 5275 CuAl11Fe4 Ni4 JIS 5114 AlBC3 > 630 > 250 > 12 40 to 1000 250 to 1000 40 to 200 40 to 1000 40 to 1000 Sames grades and characteristics as ductile iron - code 3g 40 to 1000 6

AMRING liner : in-house designed, formulated and manufactured, it ensures the leak-tightness at the shaft passages, at the flanges and upstream/downstream : it is the only part with the disc in contact with the fluid. Flexible and interchangeable, its replacement is easy. Standard liners AMRING code Elastomer group Main properties Some examples of applications XA E.P.D.M. Good mechanical characteristics. Exceptional resistance to oxydations, ketones, alcohols, mineral and organic acids, acids, neutral or alcaline salts, esters, vegetable or animal oils. Sea water, sewage,... Ventilation circuits, ozone and ozone derivatives. Weak acids circuits, aldehydes, amines, ketones, esters Food industry : water, wine, beer, milk, alcohols, fruit juice,... Approved for foodstuffs (I.A.N.E.S.C.O.) and in conformity with F.D.A. regulations. XV Heat E.P.D.M. Special formulation for high temperature Industrial higher temperature processes. Sugar industry (massecuite and juice). Chemical industry. Evaporators. K High content nitrile Good mechanical characteristics. Good resistance to hydrocarbons. Liners on request Hydrocarbons and oils with low aromatic content. General services : compressed air, water, fuel. AMRING code Elastomer group Main properties Some examples of applications XC E.P.D.M. Special formulation for drinking water - Conform to French regulations and agreed by the Paris laboratory - Approved WRC foodstuff special formulation according to BS6920 standard (UK rules drinking water circuits) - Conform to American regulations FDA-water. XW E.P.D.M. Special formulation for German market Conform to German regulations KTV GM Very high content nitrile Y HYPALON chlorosulphonated polyethylene For others formulations, please consult us. Exceptional resistance to all known types of crude oil Good mechanical characteristics. Good resistance to mineral acids, bases, alcohols, animal and vegetable oils. Resistance to ozone. Marine / Off-shore : - ballast system, - crude oil transport Soda, potash, phosphoric and superphosphoric acids. Manufacture and treatment of brine in chlorine production. Treatment of steel plates and other steel products. Working pressure limits and diameter for the AMRING liners on ISORIA 16 valve The table below defines the working limits for the liners relating the elastomer nature and the diameter. mm inch Maximum working pressure p S (bar) Liner Standard on request XA XV K XC XW GM Y CB-CC-SK EG-VA-VC 40 1 1/2 to to 16 16 600 24 Max. 16 16 16 16 16 10 bar See ISORIA 10 650 26 valve to to 1000 40 7

Vacuum limits For valves used under conditions of vacuum and according to the quality of vacuum, the size of valve, the nature of the AMRING liners and the temperature, it is necessary to make the liner steadily bound up with the body by vulcanisation. This operation is very tricky, it is carried out hot, using a complex process, and must be done imperatively in our factory. It is impossible to remove the liner after vulcanisation, and if the substitution of the liner is necessary, a set body / liner is proposed. The table below defines vacuum and technical conditions. Pressure mini maxi T maxi Construction mm inch (absolute bar) (relative bar) with or without sticking 40 1 1/2 T maxi of to to 1,33. 10-5 16 bar XA and XV liners Without sticking 150 6 (10-2 torr) T 80 C for others liners T maxi of 0,3 bar 16 bar XA and XV liners Without sticking T 80 C 200 8 for others liners to to 1000 40 16 bar for 1,33. 10-5 XA and XV liners 80 C With sticking (10-2 torr) 10 bar for other liners Connections The natural connection for an ISORIA 16 valve is the one corresponding to its p S, but the valve can be fitted onto various other flange connection standards. The shape of the body has been so designed as to allow fitting on to currently used flange connection standards, mainly : - PN 10, 16, and 20, - ANSI B16-1 class 125 and B 16-5 class 150, - MSS SP 44 class 150, - AWWA C 207 class B, D and E, - AS 2129 tables D and E, - BS 10 tables D and E, - JIS B 2210-5K, 10K, 16K and 20K. 8

Wafer type body - Type 1 The wafer type ISORIA 16 valves can be fitted between all the previously listed flange connection standards. Its fitting on the pipe is achieved by means of tie-rods, without pipe line gasket. The design of the body allows dead-end service. For sizes 350 to 600 mm, if the body has threaded holes at the shaft passages, the threads are in accordance with the connection standards (ISO, UNC or UN). Semi-lug type body - Type 2 The semi-lug type ISORIA 16 valves can be fitted between all the previously listed flange connection standards. Its fitting on the pipe is achieved by means of tie-rods (sizes 40 to 300 mm) and by screws and tie-rods (sizes 350 to 600 mm). For sizes 350 to 600 mm, the holes of the lugs are threaded in accordance with the connection standards (ISO, UNC or UN). The design of the body allows the downstream pipe dismantling and the dead-end service under p S. The table below shows for sizes 40 to 300 mm the various possibilities of downstream pipe dismantling relating to the connection standards. For sizes 350 to 600 mm, the downstream dismantling is allowed in any case. PN ANSI Connection in accordance with standards MSS AWWA SP 44 JIS B 2210 C 207 BS 10 AS 2129 mm inch 10 16 20 B16-1 B16-5 B, D cl.125 cl.150 cl.150 5K 10K 16K 20K and E table D table E table D table E 40 1 ½ 50 2 65 2 ½ 80 3 100 4 125 5 150 6 n n 200 8 n n n n n n n n n n 250 10 n n n 300 12 n n Key Downstream dismantling allowed Connection not defined by this standard Downstream dismantling not allowed n Insert a washer between the nut and the rib of the valve Full-lug type body with raised faces - Type 4 The full-lug type ISORIA 16 valves can be fitted between all the previously listed flange connection standards. Its fitting on the pipe is achieved by means of screws. The holes of the lugs are threaded in accordance with the connection standards (ISO, UNC or UN). The design of the body allows the downstream pipe dismantling and the dead-end service under p S. PN ANSI Connection in accordance with standards MSS AWWA SP 44 JIS B 2210 C 207 BS 10 AS 2129 mm inch 10 16 20 B16-1 B16-5 B, D cl.125 cl.150 cl.150 5K 10K 16K 20K and E table D table E table D table E 40 1 ½ 50 2 l l 65 2 ½ l l 80 3 100 4 l l 125 5 l l 150 6 l l 200 8 l l 250 10 l l l l 300 12 l l l 350 14 400 16 l l l l 450 18 l l 500 20 l l l l 550 22 l l l l 600 24 l l l l Key Downstream dismantling allowed Connection not defined by this standard l Fitting not allowed 9 9

Flanged body with flat faces - Type 5 The ISORIA 16 valves with flanged body with flat faces type 5 can be fitted between all the previously listed flange connection standards. Its fitting on the pipe is achieved by means of tie-rods and screws, without pipe line gasket. The holes provided for screws are threaded in accordance with the connection standards (ISO, UNC or UN). The design of the body allows the downstream pipe dismantling and the dead-end service under p S. For sizes 650 to 1000 mm, the flange fitting is allowed in some cases. PN ANSI Connection in accordance with standards MSS SP 44 JIS B 2210 AWWA C 207 BS 10 AS 2129 mm inch 10 16 20 B16-1 B16-5 B, D cl.125 cl.150 cl.150 5K 10K 16K 20K and E table D table E table D table E 150 6 200 8 250 10 l l 300 12 350 14 400 16 450 18 l 500 20 550 22 l 600 24 650 26 ) 700 28 ) 750 30 ) 800 32 ) ) 900 36 ) ) 1000 40 ) Key Downstream dismantling allowed l Fitting not allowed Flange fitting allowed Connection not defined by this standard Downstream dismantling not allowed ) Please consult us U-section body with raised faces - Type 6 The ISORIA 16 valves with U-section body with raised faces can be fitted between all the previously listed flange connection standards. Its fitting on the pipe is achieved by means of tie-rods and screws, without pipe line gasket. The holes provided for screws are threaded in accordance with the connection standards (ISO, UNC or UN). The design of the body allows the downstream pipe dismantling and the dead-end service under p S. PN ANSI Connection in accordance with standards MSS SP 44 JIS B 2210 AWWA C 207 BS 10 AS 2129 mm inch 10 16 20 B16-1 B16-5 B, D cl.125 cl.150 cl.150 5K 10K 16K 20K and E table D table E table D table E 650 26 ) 700 28 ) 750 30 ) 800 32 ) ) 900 36 ) ) 1000 40 ) Key Downstream dismantling allowed in case of ductile iron (3g) or steel body (1) Connection not defined by this standard Downstream dismantling not allowed ) Please consult us Downstream dismantling allowed only for ductile iron body (3g) 10

Tests - Inspection Guaranteed performances Isolating tight shut-off The ISORIA 16 valves are perfectly tight shut-off (no visible leakage at the naked eye) in either flow direction, in accordance with the following standards : - ISO 5208 category A, - NF E 29-311 rate 3, - DIN 3230 part 3 rate 1, and all other standards which allow a leakage rate (ANSI/FCI 70-2 class 6 for instance). Atmospheric tight shut-off In accordance with the above mentioned standards, the ISORIA 16 valves are guaranteed 100% leak-tight to atmosphere. Endurance tests The endurance of ISORIA 16 valves conforms to EN 593 (march 1998) standard. Standard tests Body strength test 1.5 time the allowable pressure (p S) with water. This test is performed after valve assembly and with the disc in half open position Upstream/downstream and shaft tight shut-off test 1.1 time the allowable pressure (p S) with water. Operating test During the final inspection, each valve, fitted with its actuator, undergoes a complete operating test (open/close). This test is carried out without pressure and at ambient temperature. It ensures the correct operation of the valve/actuator assembly, including the accessories. Optional tests On request, any other test can be carried out according to special instructions. Marking ISORIA 16 valves marking is in accordance with EN 19 standard. Marking on cast body - Name of manufacturer : AMRI - Nominal size : ND (in mm) - Grade of body material : standardised designation - Reference number of casting pattern Marking on the identity plate fastened on the body In addition to the valve name, the identity plate fastened on the body mainly includes the month and the year of manufacturing, the materials code (type), the allowable pressure (p s) in bar, the drilling pattern (if necessary with the tapping standard) and the reference of particular construction (construction S, R 107,...). Coating The bodies of ISORIA 16 valves are coated with polyurethane paint, thickness 80 µ, colour blue ref. RAL 5002. The discs made of ductile iron (AMRI code 3g) are coated with epoxy powder paint, thickness 70 µ, colour grey white ref. RAL 7035. On request, a special food coating can be carried out on the disc. Please, consult us. 11

Construction - s 40 to 600 mm (1 1 /2 to 24 ) The drawings below show the sections of ISORIA 16 valve type 1. Except the external shape of the body, the construction is the same for all types. s s s 40 to 150 mm 200 mm 250 and 300 mm 350 to 600 mm 412 100 412 100 412 310.1 310.1 100 900.1 970 412 310.1 970 900.1 100 900.1 900.1 970 310.2 310.2 213 970 310.2 213 213 213 550 550 210 413 932 310.3 210 413 550 310.3 210 550 310.3 310.4 916 932 413 210 916 900.2 916 413 900.2 916 Spare parts included in the liner kit Spare parts included in the disc kit g Spare parts included in the shaft kit Item Designation (mm) Materials 100 Body 40 to 600 Types 1 and 4: JL 1040* cast iron (code 3t) Types 2 and 5: JS 1030** ductile iron (code 3g) 210 Shaft 40 to 600 13% chromium stainless steel (code 6k) 213 Operating shaft 40 to 600 13% chromium stainless steel (code 6k) 310.1 Plain bearing 200 to 600 PTFE filled on steel casing 310.2 Plain bearing 200 to 600 PTFE filled on steel casing 310.3 Plain bearing 200 to 600 PTFE filled on steel casing 310.4 Plain bearing 350 to 600 PTFE filled on steel casing 412 O-Ring 40 to 600 Nitrile 413 Liner 40 to 600 In accordance with fluid 550 Disc 40 to 600 In accordance with fluid 900.1 Anti blow-out screw 40 to 600 Stainless steel 900.2 Anti blow-out screw 250 to 600 Stainless steel 916 Plug 40 to 600 Polyamide 932 Spring retaining ring 40 to 200 Steel 970 Identity plate 40 to 600 Polyester + adhesive * Previous standards : DIN GG 25 / NF FGL 250 ** Previous standards : DIN GGG 40 / NF FGS 400-15 12

Construction - s 650 to 1000 mm (26 to 40 ) ISORIA 16 The drawings below show the sections of ISORIA 16 valve type 5. Except the external shape of the body (flat or raised faces), the construction is the same for the two types. s 650 and 700 mm s 750 to 1000 mm 213 901.1 412.1 559 213 901.1 412.1 559 310.3 310.1 413 940.2 904 176 920 412.2 970 561 100 940.1 550 210 486 310.2 554 412.3 901.2 916 310.3 310.1 413 940.2 904 176 920 412.2 970 561 100 940.1 550 210 486 310.2 412.3 554 901.2 916 Spare parts included in the liner kit Spare parts included in the disc kit g Spare parts included in the shaft kit Item Designation (mm) Materials Type 5 JS 1030 * ductile iron (code 3g) 100 Body 650 to 1000 Type 6 JS 1030 * ductile iron (code 3g) ASTM A216 gr. WCC carbon steel (code 1) 176 Bottom 650 to 1000 JS 1030* ductile iron 210 Shaft 650 to 1000 17-4 stainless steel (code 6e) 213 Operating shaft 650 to 1000 17-4 stainless steel (code 6e) 310.1 Plain bearing 650 to 1000 PTFE filled on steel casing 310.2 Plain bearing 650 to 1000 PTFE filled on steel casing 310.3 Plain bearing 650 to 1000 PTFE filled on steel casing 412.1 O-Ring 650 to 1000 Nitrile 412.2 O-Ring 650 to 1000 Nitrile 412.3 O-Ring 650 to 1000 Nitrile 413 Liner 650 to 1000 In accordance with fluid 486 Ball 650 to 1000 Stainless steel 550 Disc 650 to 1000 In accordance with fluid 554 Washer 650 to 1000 Nylon 559 Gasket holder 650 to 1000 JS 1030* ductile iron (code 3g) 561 Grooved nail 650 to 1000 Stainless steel 900.1 Hexagonal screw 650 to 1000 Steel 900.2 Hexagonal screw 650 to 1000 Steel 904 Adjusting screw 650 to 1000 Steel 916 Plug 650 to 1000 Polyethylene 920 Nut 650 to 1000 Steel 940.1 Key 650 to 1000 Steel 940.2 Key 650 to 1000 Steel 970 Identity plate 650 to 1000 Stainless steel * Previous standards : DIN GGG 40 / NF FGS 400-15 13

Wafer type body - Type 1 Dimensions (mm) and weight (kg) s 40 to 300 s 40 to 65 80 s 100 to 200 s 250 and 300 Flat end s machined in ø z h1 h3 h4 e1 h2 l1 e2 s 350 to 600 s 350 and 400 s 450 to 600 s h3 h4 h1 e1 h2 l1 e2 14 Face to face Mounting plate ISO 5211 Flat shat end Square shaft end clearance mm inch l1 h1 h2 n h4 s øz h3 s h3 e1 e2 kg 40 1 ½ 33 108 105 51 F05 10 11 14 24 32 4 1,1 50 2 43 118 109,5 55,5 F05 10 11 14 24 33 4 1,3 65 2 ½ 46 133 136 67,5 F05 10 11 14 24 55 11 1,9 80 3 46 138 142 73,5 F05 10 11 14 24 71 17 2,5 100 4 52 144 163 92 F05 10 14 18 24 90 23 3,9 125 5 56 174 176,5 105,5 F05 10 14 18 30 119 35 4,7 150 6 56 198 194 120 F07 12 14 18 30 144 46 6,9 200 8 60 252 222 150,5 F07 12 19 25 35 196 69 10,5 250 10 68 310 255 194,5 F10 15 19 25 35 249 92 16,4 300 12 78 362 282 226 F12 18 22 28 40 297 111 30 350 14 78 433 335 269 F12 23 25 45 326 127 50 400 16 102 490 380 298 F14 23 36 55 370 140 72 450 18 114 546 410 329 F14 23 36 55 422 160 96 500 20 127 600 440 359 F14 27 36 55 470 178 130 550 22 154 645 475 406 F16 27 50 65 522 195 160 600 24 154 714 495 439 F16 27 50 65 566 215 190 Disc Weight

Semi-lug type body - Type 2 Dimensions (mm) and weight (kg) s 40 to 300 s s s s 40 to 65 80 and 100 125 and 150 200 250 and 300 Flat end s machined in ø z h3 h4 h1 e1 h2 l1 e2 s 350 to 600 s 350 to 450 s 500 and 550 600 s h4 h3 h1 e1 h2 l1 e2 Face to face Mounting plate ISO 5211 Flat shat end Square shaft end clearance mm inch l1 h1 h2 n h4 s øz h3 s h3 e1 e2 kg 40 1 ½ 33 108 105 54 F05 10 11 14 24 32 4 1,2 50 2 43 118 109,5 59 F05 10 11 14 24 33 4 1,5 65 2 ½ 46 132 136 66 F05 10 11 14 24 55 11 2,2 80 3 46 138 142 89 F05 10 11 14 24 71 17 2,8 100 4 52 150 163 103 F05 10 14 18 24 90 23 4,4 125 5 56 234 176,5 117 F05 10 14 18 30 119 35 5,6 150 6 56 260 194 130 F07 12 14 18 30 144 46 7,8 200 8 60 322 222 161 F07 12 19 25 35 196 69 11,9 250 10 68 394 255 197 F10 15 19 25 35 249 92 17,8 300 12 78 462 282 231 F12 18 22 28 40 297 111 32 350 14 78 538 335 269 F12 23 25 45 326 127 60 400 16 102 604 380 302 F14 23 36 55 370 140 80 450 18 114 656 410 328 F14 23 36 55 422 160 110 500 20 127 716 440 358 F14 27 36 55 470 178 145 550 22 154 804 475 406 F16 27 50 65 522 195 180 600 24 154 836 495 439 F16 27 50 65 566 215 220 Disc Weight 15

Full-lug type body with raised faces - Type 4 Dimensions (mm) and weight (kg) s 40 to 300 h3 Flat end s machined in ø z s 40 to 65 80 (1) 80 (2) s 100 to 150 200 (3) 200 (4) - 250 300-350 (1) h4 h1 e1 h2 l1 e2 s 350 to 600 350 (2) 400-450 (1) 450 (2) 500-550 600 (5) 600 (6) h4 s h3 h1 e1 h2 l1 e2 16

Full-lug type body with raised faces - Type 4 Dimensions (mm) and weight (kg) Face to face Mounting plate ISO 5211 Flat shaft end Square Disc Weight shaft end clearance mm inch l1 h1 h2 n h4 s øz h3 s h3 e1 e2 kg 40 1 ½ 33 108 105 54 F05 10 11 14 18 32 4 2 50 2 43 120 109,5 60 F05 10 11 14 18 33 4 2,5 65 2 ½ 46 134 136 67 F05 10 11 14 18 55 11 3 80(1) 3 46 140 142 70 F05 10 11 14 18 71 17 4 80(2) 3 46 178 142 89 F05 10 11 14 18 71 17 4,5 100 4 52 210 163 105 F05 10 14 18 24 90 23 5,5 125 5 56 236 176,5 118 F05 10 14 18 30 119 35 9 150 6 56 260 194 130 F07 12 14 18 30 144 46 11 200(3) 8 60 312 222 156 F07 12 19 25 35 196 69 24 200(4) 8 60 322 222 161 F07 12 19 25 35 196 69 25 250 10 68 396 255 198 F10 15 19 25 35 249 92 39 300 12 78 466 282 233 F12 18 22 28 40 297 111 46 350(1) 14 78 510 335 255 F12 23 25 45 326 127 62 350(2) 14 78 530 335 265 F12 23 25 45 326 127 70 400 16 102 598 380 296 F14 23 36 55 370 140 101 450(1) 18 114 622 410 329 F14 23 36 55 422 160 122 450(2) 18 114 654 410 329 F14 23 36 55 422 160 139 500 20 127 708 440 359 F14 27 36 55 470 178 179 550 22 154 774 475 406 F16 27 50 65 522 195 233 600(5) 24 154 822 495 439 F16 27 50 65 566 215 256 600(6) 24 154 830 495 439 F16 27 50 65 566 215 283 (1) Connection between flanges PN 20, ANSI B16-5 cl. 150 and JIS B 2210-5K (2) Connection between flanges PN 10, PN 16 and JIS B 2210-10K (3) Connection between flanges PN 10,PN 20, ANSI B16-5 cl. 150 and JIS B 2210-5K (4) Connection between flanges PN 16 and JIS B 2210-10K (5) Connection between flanges PN 10, PN 16, PN 20, ANSI B16-5 cl. 150 and JIS B 2210-5K (6) Connection between flanges JIS B 2210-10K and 16K 17

Flanged body with flat faces - Type 5 Dimensions (mm) and weight (kg) s 150 to 300 150 (1) s 150 (3) and 200 (4) s 300 (5) and 350 (6) Flat end s machined in øz 200 (2) 250 (5) s 400 (7) and 450 (8) h4 h3 h1 e1 h2 l1 e2 s 350 to 1000 s s 300 (9) and 350 (10) 450 (10) s 500 (13) and 550 (13) s 400 (11) and 450 (12) 600 (13) h4 h3 h1 e1 h2 l1 e2 s 500 (11) and 550 (11) 600 (14) 600 (15) s 650 to 1000 18

Flanged body with flat faces - Type 5 Dimensions (mm) and weight (kg) Face to face Mounting plate ISO 5211 Flat shaft end Square Disc Weight shaft end clearance mm inch l1 ø h1 h2 n h4 s øz h3 s h3 e1 e2 kg 150 6 56 298 194 149 F07 12 14 18 30 144 46 11 200 8 60 343 222 172 F07 12 19 25 35 196 69 23 250 10 68 406 255 203 F10 15 19 25 35 249 92 40 300 12 78 483 282 242 F12 18 22 28 40 297 111 60 350 14 78 533 335 266 F12 23 25 45 326 127 80 400 16 102 597 380 299 F14 23 36 55 370 140 105 450 18 114 640 410 332 F14 23 36 55 422 160 130 500 20 127 715 440 370 F14 27 36 55 470 178 180 550 22 154 749 475 406 F16 27 50 65 522 195 230 600 24 154 840 495 439 F16 27 50 65 566 215 260 650 26 165 870 535 465 F16 26 50 65 615 235 340 700 28 165 925 560 490 F16 26 50 65 666 260 390 750 30 190 985 590 540 F25 30 60 80 712 272 475 800 32 190 1055 615 565 F25 30 60 80 763 297 585 900 36 203 1165 665 615 F25 30 60 80 863 341 690 1000 40 216 1280 735 680 F25 30 60 90 963 385 865 (1) All connections except JIS B 2210-16K (2) Connections PN 10, PN 20, ANSI B 16-1 cl 125 and B 16-5 cl 150, AWWA C207 B, D and E, BS 10 tables D and E, AS 2129 tables D and E (3) Connection JIS B 2210-16 K and 20K (4) Connections PN 16, JIS B 2210-5K, 10K, 16K and 20K (5) All connections except JIS B 2210-10K, 16K and 20K (6) Connections PN 20, ANSI B16-1 cl 125 and B 16-5 cl 150, MSS SP 44 cl 150, JIS B 2210-5K, AWWA C 207 B,D and E, BS 10 tables D and E, AS 2129 tables D and E (7) Connections BS 10 tables D and E, AS 2129 tables D and E (8) Connections BS 10 table D and AS 2129 table D (9) Connections JIS B 2210-10K, 16K, and 20K (10) Connections PN 10, PN 16, JIS B 2210-10K, 16K and 20K (11) All connections except BS 10 tables D and E, AS 2129 tables D and E (12) Connections PN 20, ANSI B 16-1 cl 125 and B 16-5 cl 150, AWWA C207 B, D and E, MSS SP 44 cl 150, JIS B 2210-5K, BS 10 table E, AS 2129 table E (13) Connections BS 10 tables D and E and AS 2129 tables D and E (14) All connections except JIS B 2210-5K, 10K, 16K, and 20K, BS 10 tables D and E, AS 2129 tables D and E (15) Connections JIS B 2210-5K, 10K and 16K 19

U-section body with raised faces - Type 6 s 650 to 1000 mm (26 to 40 ) Dimensions (mm) and weight (kg) s h3 h4 h1 e1 h2 l1 e2 20 Face to face Mounting plate ISO 5211 Square shaft Disc Weight end clearance mm inch l1 h1 h2 n h4 os h3 e1 e2 kg 650 (1) 26 165 870 535 465 F16 26 50 65 615 235 290 650 (2) 26 165 895 535 465 F16 26 50 65 615 235 300 700 (3) 28 165 910 560 490 F16 26 50 65 666 260 340 700 (4) 28 165 925 560 490 F16 26 50 65 666 260 340 700(5) 28 165 960 560 490 F16 26 50 65 666 260 360 750 (6) 30 190 985 590 540 F25 30 60 80 712 272 420 750 (7) 30 190 1020 590 540 F25 30 60 80 712 272 440 800 (8) 32 190 1025 615 565 F25 30 60 80 763 297 485 800 (9) 32 190 1055 615 565 F25 30 60 80 763 297 485 900 (10) 36 203 1125 665 615 F25 30 60 80 863 341 600 900 (11) 36 203 1165 665 615 F25 30 60 80 863 341 600 1000 (10) 40 216 1255 735 680 F25 30 60 90 963 385 775 1000 (12) 40 216 1280 735 680 F25 30 60 90 963 385 775 1000 (7) 40 216 1320 735 680 F25 30 60 90 963 385 810 (1) Dimensions and weight of valves with cast iron body except connection between JIS B2210-16K flanges (2) Dimensions and weight of valves with ductile iron body and steel body for all connections (3) Dimensions and weight of valves with cast iron body, ductile iron body and steel body, connection between PN 10 and 16, JIS B2210-5K and 10 K (4) Dimensions and weight of valves with cast iron body, ductile iron body and steel body, connection between PN 20, AWWA C207 cl B, D and E, BS 10 tables D and E, AS 2129 tables D and E, MSS SP 44 cl 150 (5) Dimensions and weight of valves with ductile iron body and steel body, connection between JIS B2210-16K (6) Dimensions and weight of valves with cast iron body, ductile iron body and steel body, except connection between JIS B2210-16K (7) Dimensions and weight of valves with ductile iron body and steel body, connection between JIS B2210-16K (8) Dimensions and weight of valves with cast iron body, ductile iron body and steel body, connection between PN 10 and 16, JIS B2210-5K (9) Dimensions and weight of valves with cast iron body, ductile iron body and steel body, connection between PN 20, JIS B2210-10K, AWWA C207 cl B, D and E, AS 2129 tables D and E, MSS SP 44 cl 150 (10) Dimensions and weight of valves with cast iron body, ductile iron body and steel body, connection between PN 10 and 16, JIS B2210-10 K (11) Dimensions and weight of valves with cast iron body, ductile iron body and steel body, connection between PN 20, JIS B2210-5K, AWWA C207 cl B, D and E, BS 10 tables D and E, AS 2129 tables D and E, MSS SP 44 cl 150 (12) Dimensions and weight of valves with ductile iron body and steel body, connection between PN 20 and MSS SP 44 cl 150 Dimensions and weight of valves with cast iron body, connection between PN 20, MSS SP 44 cl150, AWWA C207 cl B, D and E, BS 10, tables D and E, AS 2129 tables D and E.

Flanging dimensions ISORIA 16 valves are designed for assembly between any type of flanges and connection standards currently used. For non-standard flanges (for example : slip-on, lap joint ) and raised face flanges, it is necessary to verify the general compatibility of the connection by checking against the dimensions shown in the table below. The following drawings show the valve type 1 mounted between flanges. The flanging dimensions mentioned in this table are the same for all types. ø 2a ø 2b ø 3 10 20 ø 5 ø 4 ø 6 Fitting between flat flanges : ø2a internal max. tolerated dia. on the supporting area of the flange face. Fitting between loose plate flange with lapped pipe end : ø2b external dia. of the pipe. Max. dia tolerated Mini dia. tolerated on face of flange Mini dia. 10 mm from face of flange Mini dia. 20 mm from face of flange Mini dia. tolerated of shoulder of raised face flange mm inch ø2a ø2b ø3 ø4 ø5 ø6 40 1 ½ 54 49 32 --- --- 77 50 2 63 61 33 --- --- 86 65 2 ½ 80 77 55 13 --- 107 80 3 93 89 71 50 --- 121 100 4 116 115 90 74 40 141 125 5 141,5 140 119 107 87 171 150 6 170,5* 169 144 134 120 196 200 8 222* 220 196 189 178 250 250 10 276,5* 273 249 243 234 306 300 12 327,5* 324 297 291 283 358 350 14 361 356 326 321 314 399 400 16 412 407 370 366 358 452 450 18 463 457 422 416 409 505 500 20 515 508 470 464 457 558 550 22 568 561 522 516 509 625 600 24 617 610 566 560 554 664 650 26 667 615 609 602 723 700 28 718 666 661 655 773 750 30 768 712 706 700 830 800 32 819 763 758 752 880 900 36 922 863 858 853 986 1000 40 1027 963 958 953 1093 * Please check the body is well centred between the tie-rods. 21

Installation ISORIA 16 valves are bi-directional valves, used for on/off or throttling applications. They can be installed in any position. For sizes 650 to 1000 mm, the downwards face actuator is not allowed. Dead-end service The design of the body of ISORIA 16 valves allows the dead-end service under the allowable pressure p s. This mounting requires the use of a counter-flange fitted on the downstream side of the valve. Upstream/ downstream leak-tightness is kept and the valve can be operated. Shown types : 1 and 2 Particular case of type 4 Maximum tightening torque to be applied on the connection bolting : Torque 40 to 125 mm 50 Nm 150 to 350 mm 100 Nm 400 to 500 mm 160 Nm 550 and 600 mm 250 Nm Downstream pipe dismantling The downstream pipe dismantling under the allowable pressure p s is allowed for ISORIA 16 valves types 2, 4 and 5 and valves type 6 with ductile iron body. This type of mounting allows repair and maintenance on the downstream pipe. During this time, the valve must not be operated. Type 2 Maximum tightening torque to be applied on the bolting for downstream dismantling, sizes 40 to 300 mm : s 40 to 300 s 350 to 600 Torque 40 10 Nm 50 13 Nm 65 16 Nm 80 27 Nm 100 30 Nm Torque 125 32 Nm 150 47 Nm 200 60 Nm 250 81 Nm 300 134 Nm No particular advice for upper sizes Type 4 Maximum tightening torque to be applied on the connection bolting : Torque 40 to 125 mm 50 Nm 150 to 350 mm 100 Nm 400 to 500 mm 160 Nm 550 and 600 mm 250 Nm Type 5 s 150 to 600 s 650 to 1000 Mounting by screws and special HS nuts Type 6 Mounting by screws and special HS nuts 22

Manual control The applicabilities proposed in the table below are defined for valves on liquids only for the maximum fluid velocity mentioned. According to the working conditions and the hydraulic characteristics, upper fluid velocities can be admitted, therefore other applicabilities could be proposed : please consult us. ¼ turn handles Valve Maximum Mounting plate fluid Type / Length ISO 5211 velocity 40 NR / 165, NP / 165 to F05 3 m/s or 80 SM / 260 100 F05 3 m/s NR / 300, NP / 300 125 F05 3 m/s or 150 F07 3 m/s SM / 330 200 F07 3 m/s SM / 530 250 F10 3 m/s SM / 530 * * Important effort to be exerted on. MA and MR reducers for sizes 40 to 1000 mm Valve Mounting plate ISO 5211 Maximum fluid velocity Reducers 40 to F05 3 m/s MA 12 125 MR 25 150 F07 3 m/s MA 25 200 F07 3 m/s 250 F10 3 m/s MR 50 300 F12 3 m/s 350 F12 3 m/s MR 100 400 F14 3 m/s 450 F14 2,5 m/s 500 F14 2,5 m/s MR 200 550 F16 2 m/s 600 F16 2,5 m/s 650 F16 2,5 m/s 700 F16 2,5 m/s MR 400 750 F25 2,5 m/s 800 F25 2,5 m/s MR 600 900 F25 2 m/s 1000 F25 2 m/s MR 800 23

Electric control The applicabilities proposed in the table below are defined for valves on liquids only for the maximum fluid velocity mentioned. According to the working conditions and the hydraulic characteristics, upper fluid velocities can be admitted, therefore other applicabilities could be proposed : please consult us. ACTELEC 3 to 150 - ¼ turn actuators Valve Maximum ACTELEC Mounting fluid On-off plate velocity duty ISO 5211 Throttling duty 40 3 m/s 50 3 m/s 3 or 6 65 F05 3 m/s 8 80 3 m/s 6 100 3 m/s 125 3 m/s 15 15 150 F07 3 m/s 200 F07 3 m/s 25 25 250 F10 3 m/s 50 50 300 F12 3 m/s 350 F12 3 m/s 80 100 400 F14 3 m/s 100 450 F14 2,5 m/s 150 500 F14 2,5 m/s Please 550 F16 2 m/s Please consult us 600 F16 2,5 m/s consult us ACTELEC SG 05 to 12 - ¼ turn actuators Valve Mounting plate ISO 5211 Maximum fluid velocity ACTELEC 40 to F05 3 m/s SG 05 125 150 F07 3 m/s 200 F07 3 m/s SG 07 250 F10 3 m/s SG 10 300 F12 3 m/s 350 F12 3 m/s 400 F14 3 m/s SG 12 450 F14 2,5 m/s 500 F14 2,5 m/s 550 F16 2 m/s Please consult us 600 F16 2,5 m/s ACTELEC 31 and 200 to 800 multi-turn actuators Valve Maximum Valve Maximum Mounting fluid ACTELEC Mounting fluid ACTELEC plate ISO 5211 velocity plate ISO 5211 velocity 40 450 F14 2,5 m/s to F05 3 m/s 500 F14 2,5 m/s 200/ SA 07-5 125 550 F16 2 m/s or 150 F07 3 m/s 600 F16 2,5 m/s 200/SRA 6 200 F07 3 m/s 31/SA 07-5 650 F16 2,5 m/s 400/SA 10-1 or 250 F10 3 m/s 700 F16 2,5 m/s 400/SRC 300 F12 3 m/s 750 2,5 m/s 500/SA 07-5 or 350 F12 3 m/s 800 2,5 m/s 500/SRA 6 F25 400 F14 3 m/s 900 2 m/s 800/SA 10-1 or 1000 2 m/s 800/SRC Key : ACTELEC type / Motor reduction gear type (SA = Auma, SR = Bernard) 24

Pneumatic control The applicabilities proposed in the table below are defined for valves on liquids only for the maximum fluid velocity mentioned. They are defined in function of the control air pressure for on-off and throttling duties. According to the working conditions and the hydraulic characteristics, upper fluid velocities can be admitted, therefore other applicabilities could be proposed : please consult us. ACTAIR 3 to 800 double acting actuators Valve Maximum On-off duty Throttling duty Mounting plate fluid velocity Control air pressure Control air pressure ISO 5211 3,5 bar 4 bar 5 bar 6 bar 4 bar 5 bar 6 bar 40 F05 ACTAIR 3 50 F05 ACTAIR 3 65 F05 ACTAIR 6 80 F05 ACTAIR 6 100 F05 ACTAIR 12 125 F05 3 m/s ACTAIR 12 150 F07 ACTAIR 25 200 F07 ACTAIR 25 250 F10 ACTAIR 50 ACTAIR 50 300 F12 ACTAIR 100 350 F12 ACTAIR 100 400 F14 450 F14 2,5 m/s ACTAIR 200 ACTAIR 200 500 F14 550 F16 2 m/s 600 F16 2,5 m/s ACTAIR 400 ACTAIR 400 650 F16 2,5 m/s 700 F16 2,5 m/s 750 F25 2,5 m/s 800 F25 2,5 m/s ACTAIR 800 ACTAIR 800 900 F25 2 m/s 1000 F25 2 m/s Consult us Consult us 25

Pneumatic control The applicabilities proposed in the table below are defined for valves on liquids only for the maximum fluid velocity mentioned. They are defined in function of the control air pressure for on-off and throttling duties. According to the working conditions and the hydraulic characteristics, upper fluid velocities can be admitted, therefore other applicabilities could be proposed : please consult us. DYNACTAIR 3 to 800 spring return actuators Valve Maximum On-off duty Throttling duty Mounting plate fluid velocity Control air pressure Control air pressure ISO 5211 3,5 bar 4 bar 5 bar 4 bar 5 bar 40 F05 DYNACTAIR 3 DYNACTAIR 3 50 F05 DYNACTAIR 6 DYNACTAIR 6 65 F05 80 F05 DYNACTAIR 12 DYNACTAIR 12 100 F05 125 F05 3 m/s DYNACTAIR 25 DYNACTAIR 25 150 F07 200 F07 DYNACTAIR 50 DYNACTAIR 50 250 F10 300 F12 DYNACTAIR 100 DYNACTAIR 100 350 F12 400 F14 DYNACTAIR 200 450 F14 2,5 m/s DYNACTAIR 200 500 F14 550 F16 2 m/s DYNACTAIR 400 600 F16 2,5 m/s DYNACTAIR 400 650 F16 2,5 m/s 700 F16 2,5 m/s 750 F25 2,5 m/s DYNACTAIR 800 DYNACTAIR 800 800 F25 2,5 m/s 900 F25 2 m/s 1000 F25 2 m/s Please consult us Please consult us 26

Hydraulic control The applicabilities proposed in the table below are defined for valves on liquids only for the maximum fluid velocity mentioned. They are defined in function of the control oil pressure. According to the working conditions and the hydraulic characteristics, upper fluid velocities can be admitted, therefore other applicabilities could be proposed : please consult us. ACTO 25 to 1600 double acting actuators Valve Actuator Maximum Mounting plate fluid velocity Control oil pressure ISO 5211 60 bar 90 bar 120 bar 40 F05 50 F05 65 F05 80 F05 ACTO 25 100 F05 125 F05 3 m/s 150 F07 200 F07 ACTO 50 250 F10 300 F12 ACTO 100 350 F12 400 F14 450 F14 2,5 m/s ACTO 200 500 F14 550 F16 2 m/s 600 F16 2,5 m/s ACTO 400 650 F16 2,5 m/s 700 F16 2,5 m/s 750 F25 2,5 m/s 800 F25 2,5 m/s ACTO 800 900 F25 2 m/s 1000 F25 2 m/s ACTO 1600 DYNACTO 25 to 100 spring return actuators Valve Actuator Maximum Mounting plate fluid velocity Control oil pressure ISO 5211 60 bar 90 bar 120 bar 40 F05 50 F05 65 F05 DYNACTO 12 80 F05 100 F05 125 F05 3 m/s DYNACTO 25 150 F07 200 F07 DYNACTO 50 250 F10 300 F12 DYNACTO 100 350 F12 400 F14 450 F14 2,5 m/s 500 F14 Please consult us 550 F16 2 m/s 600 F16 2,5 m/s 27

Data to be supplied upon request or when ordering Nature of media : exact chemical composition (nature, concentration, ) Working conditions : pressure, fluid velocity, temperature (min., max.), external environment, if possible complete hydraulic diagram Valves sizes and connection patterns Body, disc and liner materials Quality level required - Special tests with standards of reference Actuation 8445.1/2-10 / 15.04.99 This leaflet is not contractual and may be amended without notice. KSB - AMRI Z.I. de Gagnaire Fonsèche F-24490 La Roche Chalais Phone : 33 5 53 92 44 00 T/Fax : 33 5 53 92 44 01 Web : http://www.ksbgroup.com Butterfly valves, actuators and systems