IPVP High-pressure Internal Gear Pumps for Variable Speed Drives
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1 IPVP High-pressure Internal Gear Pumps for Variable Speed Drives
2 Design and Function a 4b 3 Pinion shaft 2 Internal gear 3 Filler pin 4a Filler segment carrier 4b Filler sealing segment 5 Axial disc 6 Axial pressure area 7 Plain bearings 8 Housing 9 Hydrostatic bearing End cover Suction chamber Pressure chamber Function Rotation of the gears within the pump draws in the pressure fluid (usually hydraulic oil) into the space between the pinion and internal gear. The two smooth running gears help to ensure excellent intake behaviour. In the radial direction, the gear chambers are closed by gear meshing and the filler piece. In the axial direction, the axial plates seal the pressure chamber with the minimal possible gap. This design minimizes volume losses and increases efficiency. When the gears rotate, the tooth heads enter the gaps between teeth and displace the pressure fluid. 2
3 Technical Data Design Type Internal gear pump with radial and axial sealing gap compensation IPVP Mounting types SAE hole flange; ISO 39/ Line mounting SAE suction and pressure flange J 58 C Code 6 Sense of rotation Mounting position Shaft load Input pressure Right hand rotation any For details of radial and axial drive shaft loads please contact your Voith Turbo H + L Hydraulic representative.8 3 bar absolute pressure (at start up for short time.6 bar) Pressure fluid HLP mineral oils DIN 5524, part 2 or 3 3 mm 2 s- (cst)), up to n=8 min - Viscosity range of the pressure fluid Permissible start viscosity... mm 2 s - (cst), up to n max max. 2 mm 2 s - (cst) Permissible temperature of the pressure fluid C Required purity of the pressure fluid according to NAS 638 Class 9 / 7 / 4 (ISO 446), Class 8 (NAS 638) Filtration Filtration quotient min. β 2, recommended β (longer life) Permissible ambient temperature C Calculations Pump flow Q = V g th n η v -3 [l / min] Power P = Q Δp 6 η g [kw] V g th Pump volume per revolution [cm 3 ] n Speed [min - ] η v η g Δp Volumetric efficiency Overall efficiency Differential pressure [bar] 3
4 Characteristics Type, size delivery Displacement per revolution Speed Delivery Pressures min. max. at 5 min - at n max pressure Continuous Peak pressure at 5 min - Moment of inertia [cm 3 ] [min - ] [min - ] [l/min] [l/min] [bar] [bar] [kg cm²] IPVP IPVP IPVP IPVP IPVP IPVP IPVP IPVP IPVP IPVP IPVP IPVP IPVP IPVP IPVP IPVP IPVP IPVP IPVP IPVP IPVP IPVP The values given apply for: Notes: Pumping of mineral oils with a viscosity of 2 4 mm 2 s- An input pressure of.8 3. bar absolute Peak pressures apply for 5% of operating time with a maximum cycle time of minute. Please inquire about peak pressures at non-standard speeds. Due to production tolerances, the pump volume may be reduced by up to.5%. The maximum speed depends on the pressure. The speed range -4 RPM depends on the pressure. Please find data on the diagrams on the following pages. 4
5 Diagram IPVP 3, IPVP 4 - Continuous pressure depending on the speed 3 IPVP 3 and IPVP 4 Continuous pressure [bar] IPVP 3 IPVP 4-3 IPVP 4-6 IPVP 4-2 IPVP 4-25 IPVP Speed [RPM] max. speed IPVP 3 and 4 Diagram IPVP 5 - Continuous pressure depending on the speed IPVP IPVP 5-32 IPVP Continuous pressure [bar] IPVP 5-5 IPVP Speed [RPM] max. speedl IPVP 5 5
6 Diagram IPVP 6 - Continuous pressure depending on the speed IPVP IPVP 6-64 IPVP Continuous pressure [bar] IPVP 6- IPVP Speed [RPM] max. speed IPVP 6 Diagram IPVP 7 - Continuous pressure depending on the speed 325 IPVP IPVP 7-25 Continuous pressure [bar] IPVP 7-6 IPVP 7-2 IPVP max. speed IPVP Speed [RPM] 6
7 IPVP Size 3, Rotation and Dimensions 5 43 * 6 2 c/2 c/2 M5 8.5 ø h , S P ø 6 h9 e c 2.5 r Rotation clockwise (cw) Rotation counterclockwise (ccw) ø 8 h7 S P A B Pressure port (P) l Suction port (S) h Allowed input torques: Input shaft A: 6 Nm Secondary shaft B: 8 Nm g k v w i Type / Delivery Dimensions and Weight c e g h i k l r v w Weight [mm] [mm] [mm] [mm] [mm] [mm] Thread [mm] [mm] Thread [kg] SAE Flange No. IPVP M8 x M8 x 3 4. IPVP M8 x M8 x IPVP M x M8 x IPVP M x M8 x IPVP M x M8 x * Ensure the Mx plug screw, hexagon socket SW5, is tightened to a torque of Nm during pumping operation. Dependent on the pump position, filling or ventilation is possible here prior to commissioning. 7
8 IPVP Size 3, Designs and Dimensions Rotation, Suction port Mounting flange Shaft end Standard Rotation clockwise, Suction connection SAE 2-hole flange, Parallel shaft with keyway connection, Variants Rotation counterclockwise, Suction connection 6 SAE 2-hole flange, Parallel shaft with keyway connection, 8
9 IPVP Size 4, Rotation and Dimensions 64 6 * c/2 c/2 ø.6 h8 M8x9 57 ø S P h9 e c 28 r Rotation clockwise (cw) Rotation counterclockwise (ccw) ø 25 h7 S P A B Pressure port (P) Suction port (S) I h Allowed input torques: Input shaft A: 335 Nm Secondary shaft B: 9 Nm v g w k i Type / Delivery Dimensions and Weight c e g h i k l r v w Weight [mm] [mm] [mm] [mm] [mm] [mm] Thread [mm] [mm] Thread [kg] SAE Flange No. IPVP M x M8 x IPVP M x M8 x IPVP M x M x IPVP M x M x IPVP M x M x 5. 3 * Ensure the Mx plug screw, hexagon socket SW5, is tightened to a torque of Nm during pumping operation. Dependent on the pump position, filling or ventilation is possible here prior to commissioning. 9
10 IPVP Size 4, Designs and Dimensions Rotation, Suction port Mounting flange Shaft end Standard Rotation clockwise, Suction connection SAE 2-hole flange, 7 Parallel shaft with keyway connection, Variants Rotation counterclockwise, Suction connection 6 SAE 2-hole flange, 7 Parallel shaft with keyway connection,
11 IPVP Size 5, Rotation and Dimensions * 6 8 c/2 c/2 M2x r lk Rotation clockwise (cw) ø 27 h S P 8 2 Rotation counterclockwise (ccw) h9 e c 35 ø 32 h7 S P A B Pressure port (P) Suction port (S) h Allowed input torques: Input shaft A: 65 Nm Secondary shaft B: 4 Nm v g w i Type / Delivery Dimensions and Weight c e g h i k l r v w Weight [mm] [mm] [mm] [mm] [mm] [mm] Thread [mm] [mm] Thread [kg] SAE Flange No. IPVP M x M x IPVP M2 x M x IPVP M2 x M x IPVP M2 x M x * Ensure the Mx plug screw, hexagon socket SW5, is tightened to a torque of Nm during pumping operation. Dependent on the pump position, filling or ventilation is possible here prior to commissioning.
12 IPVP Size 5, Designs and Dimensions Rotation, Suction port Mounting flange Shaft end Standard Rotation clockwise, Suction connection SAE 2-hole flange, Parallel shaft with keyway connection Variants Rotation counterclockwise, Suction connection SAE 2-hole flange Parallel shaft with keyway connection 6 2
13 IPVP Size 6, Rotation and Dimensions 98 * 2 6 c/2 c/2 M2 25 ø 52.4 h8 95 9, e c 43 r Rotation clockwise (cw) S P Rotation counterclockwise (ccw) 2 h9 ø 4 h7 S P A B Pressure port (P) Suction port (S) l h Allowed input torques: Input shaft A: 5 Nm Secondary shaft B: 78 Nm v g w k i Type / Delivery Dimensions and Weight c e g h i k l r v w Weight [mm] [mm] [mm] [mm] [mm] [mm] Thread [mm] [mm] Thread [kg] SAE Flange No. IPVP M2 x M x IPVP M2 x M2 x IPVP M2 x M2 x IPVP M2 x M2 x * Ensure the Mxplug screw, hexagon socket SW5, is tightened to a torque of Nm during pumping operation. Dependent on the pump position, filling or ventilation is possible here prior to commissioning. 3
14 IPVP Size 6, Designs and Dimensions Rotation, Suction port Mounting flange Shaft end Standard Rotation clockwise, Suction connection SAE 2-hole flange Parallel shaft with keyway connection Variants Rotation counterclockwise, Suction connection SAE 2-hole flange Parallel shaft with keyway connection 6 4
15 IPVP Size 7, Rotation and Dimensions 25 2 * 2 63 c/2 c/ approx. ø r Rotation clockwise (cw) ø 52.4 h8 6 4 S P ø Rotation counterclockwise (ccw) M h9 e c 53.5 ø 5 h7 S P A B Pressure port (P) Suction port (S) I h Allowed input torques: Input shaft A: 96 Nm Secondary shaft B: 2 Nm v g w k i Type / Delivery Dimensions and Weight c e g h i k l r v w Weight [mm] [mm] [mm] [mm] [mm] [mm] Thread [mm] [mm] Thread [kg] SAE Flange No. IPVP M2 x M2 x IPVP M2 x M2 x IPVP M2 x M2 x IPVP M6 x M2 x * Ensure the Mx plug screw, hexagon socket SW5, is tightened to a torque of Nm during pumping operation. Dependent on the pump position, filling or ventilation is possible here prior to commissioning. 5
16 IPVP Size 7, Designs and Dimensions Rotation, Suction port Mounting flange Shaft end Standard Rotation clockwise, Suction connection SAE-4-hole flange Parallel shaft with keyway connection Variants Rotation counterclockwise, Suction connection 6 SAE-4-hole flange Parallel shaft with keyway connection 6
17 Measurement Values - Airborne Noise Level, Efficiency IPVP 3 Airborne noise level (measuring location m axial) 6 55 IPVP 3 Efficiency η v and η g 95 9 η v Airborne noise level db(a) Airborne noise level db(a) η g Operating pressure p [bar] Operating pressure p [bar] Characteristic curves: IPVP 3 IPVP 3 8 IPVP IPVP 3 5 IPVP IPVP 4 Airborne noise level (measuring location m axial) IPVP 4 Efficiency η v and η g η v Airborne noise level db(a) Airborne noise level db(a) η g Operating pressure p [bar] Operating pressure p [bar] Characteristic curves: IPVP 4 32 IPVP 4 25 IPVP 4 2 IPVP 4 6 IPVP 4 3 IPVP 5 Airborne noise level (measuring location m axial) IPVP 5 Efficiency η v and η g η v Airborne noise level db(a) Airborne noise level db(a) η g Operating pressure p [bar] Operating pressure p [bar] Characteristic curves: IPVP 5 64 IPVP 5 5 IPVP 5 4 IPVP
18 Measurement Values - Airborne Noise Level, Efficiency IPVP 6 Airborne noise level (measuring location m axial) IPVP 6 Efficiency η v and η g 95 η v Airborne noise level db(a) Operating pressure p [bar] Airborne noise level db(a) η g Operating pressure p [bar] Characteristic curves: IPVP 6 25 IPVP 6 IPVP 6 8 IPVP 6 64 IPVP 7 Airborne noise level (measuring location m axial) IPVP 7 Efficiency η v and η g 8 η v Airborne noise level db(a) Operating pressure p [bar] Airborne noise level db(a) η g Operating pressure p [bar] Characteristic curves: IPVP 7 25 IPVP 7 2 IPVP 7 6 IPVP 7 25 Measurement Conditions: Speed:.5 rpm / Viscosity of pressure fluid: 46 mm2s- / Operating temperature: 4 C Note: Measurement taken in a low-noise room. In a anechoic room. the measurements are approx. 5 db(a) lower. 8
19 C i SAE-Flange, SAE J 58 C Code 6, single-piece ) 2) A Wrench torque for screws according to ISO 662 ) Round seal ring (O-Ring) ISO-R 629 NBR 2) Screw EN ISO ) Special design, deviation from SAE J 58 C Code 6 k B D SAE flange no. A B C D E ) i k S 2) max. pressure thread [mm] [mm] [mm] seal ring [mm] [mm] thread [bar] G ½ M G ¾ M G M G -¼ M ) G -½ M ) 3 G -½ M G M G 2-½ M G M G M
20 Type Code IPVP Shaft end Parallel shaft with keyway Mounting flange SAE 2-hole SAE 4-hole 7 SAE 2-hole, variant Rotation, suction port Clockwise rotation, radial suction port radial 6 Counterclockwise rotation, radial suction port radial 4 Clockwise rotation, special design 9 Counterclockwise rotation, special design Delivery Size Delivery Size Type 2
21 Multi-flow Pumps, Pump Combinations, Pump Combinations in Order of Type and Size IPVP 7 IPVP 6 IPVP 5 IPVP 4 IPVP 3 Pump combinations Selection IPVP pumps of identical or different sizes can be combined in multiflow pumps. All sizes of the relevant pump volume are available as twoor three-flow pumps; four-flow pumps must be designed by Voith Turbo H + L Hydraulic. The pumps are arranged in increasing order according toframe size and delivery..determine pressure ranges and define the appropriate pump serie(s). 2.Determine pump volume and select the appropriate size 3. Define sequence of the pumps. 4. Check the torques. 5. Determine rotation and suction. 6. Specify mounting Mounting, assembly Multi-flow pumps are generally mounted to the drive by means of a flange. Rotation and suction Mounting flange Shaft end clockwise (cw) counterclockwise (ccw) For designs and dimensions, see catalog of the relevant pump series. For designs and dimensions, see catalog of the relevant pump series. Special design 4 9 Special design SAE-2-hole-flange 7 SAE-2-hole-flange (variant) SAE-4-hole-flange 2
22 Voith Turbo H + L Hydraulic GmbH & Co. KG Schuckertstraße Rutesheim, Germany Tel Fax sales-rut@voith.com voith.com IP7 IPVP vthl 23-5 Dimensions and illustrations non-committal, subject to change.
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