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Hydraulic Pump 3 Phase Motor

Model
Nature of the Manufacturer
Other
Product Category
3 Phase Motor
Place of Origin
City, Province
Overview
YTY series hydraulic pump 3 phase motor is specially designed for the axial plunger pump motor. Shaft can match with pump directly without coupling, thus reducing the installation space.
Product Details

Product Introduction

YTY series hydraulic pump 3 phase motor is specially designed for the axial plunger pump motor. Shaft can match with pump directly without coupling, thus reducing the installation space. Hydraulic pump motor has compact structure, small volume, light weight, small vibration, low noise, high efficiency, long service life etc. Oil pump motor is widely used in machine tools, forging crane, ship, injection molding machine, metallurgy, engineering machinery, mining machinery, hydraulic machinery etc. It can also be applied to CY-Y unit pump, gear pump, and motors for other types of plunger pump unit.


Product Detail



Motor Type: three phase motor pump

Output Power: 1-10HP / 0.75-7.5KW

Frame Size: IEC 80-132

Number of Poles: 4

Rated Voltage: 380V Other for request

Frequency: 50 & 60 Hz

Protection Level: IP54

Insulation Class: B/F

Cooling Method: IC411

Duty: S1


Product Parameter (specification)



Ac pump motor

Model

Rated Output

Rated Current

Eff

Power Factor

Starting Current

Ts/Tn

Tmax/Tn

Shaft extension bore

Shaft Key Height

Bore Depth

Oil Pump Fixed Position

Oil Pump Model

HP

KW

A

%

CosØ

A

Times

Times

ØxKey Width

C

E

Screw Hole Distance

Model

1390 r/min

YT802-4

1

0.75

2

74.5

0.76

6

2.3

2.3

12.7x3.2

14.35

35

106.3 M10

VP20,VP12,VP15/20

YT802-4

1

0.75

2

74.5

0.76

6

2.3

2.3

10.15x7 Tooth

13.65

35

106.3 M10

VP20, 7 Tooth Key

YT802-4

1

0.75

2

74.5

0.76

6

2.3

2.3

12.4x9 Tooth

16.35

35

106.3 M10

VP20, 9 Tooth Key

YT802-4

1

0.75

2

74.5

0.76

6

2.3

2.3

12x4

13.7

28

82.55 M8

HGP-1A

YT802-4

1

0.75

2

74.5

0.76

6

2.3

2.3

15.875x4

17.7

32

106.3 M10

HGP-3A

1400 r/min

YT90L-4

2

1.5

3.7

79

0.79

6.5

2.3

2.3

12.5x4

14

35

63.5x63.5 M8

GPY, HGP-2A

YT90L-4

2

1.5

3.7

79

0.79

6.5

2.3

2.3

12x4

13.7

28

82.55 M8

HGP-1A

YT90L-4

2

1.5

3.7

79

0.79

6.5

2.3

2.3

12.7x3.2

14.35

35

106.3 M10

VP20, VP12/15

YT90L-4

2

1.5

3.7

79

0.79

6.5

2.3

2.3

10.15x7 Tooth

13.65

35

106.3 M10

VP20, 7 Tooth Key

YT90L-4

2

1.5

3.7

79

0.79

6.5

2.3

2.3

12.4x9 Tooth

16.35

35

106.3 M10

VP20, 9 Tooth Key

YT90L-4

2

1.5

3.7

79

0.79

6.5

2.3

2.3

16x5

18

37

70x100 M8

CBN, CBT

YT90L-4

2

1.5

3.7

79

0.79

6.5

2.3

2.3

19.05x4.76

21.25

36

90x90 M10

VP30, VP40

YT90L-4

2

1.5

3.7

79

0.79

6.5

2.3

2.3

15.875x4

17.7

34

106.3 M10

HGP-3A

1430 r/min

YT100L-4

3

2.2

5

81

0.82

7

2.2

2.3

12.5x4

14

35

63.5x63.5 M8

GPY, HGP-2A

YT100L-4

3

2.2

5

81

0.82

7

2.2

2.3

19.05x4.76

21.25

38

106 M10

PV2R1

YT100L-4

3

2.2

5

81

0.82

7

2.2

2.3

19.05x4.76

21.25

36

90x90 M10

VP30, VP40

YT100L-4

3

2.2

5

81

0.82

7

2.2

2.3

16x5

18

37

70x100 M8

CBN, CBT

YT100L-4

3

2.2

5

81

0.82

7

2.2

2.3

12.7x3.2

14.35

35

106.3 M10

VP20, VP12/15

YT100L-4

3

2.2

5

81

0.82

7

2.2

2.3

15.875x4

17.7

34

106.3 M10

HGP-3A

YT100L-4

3

2.2

5

81

0.82

7

2.2

2.3

18x6

18

37

70x100 M8

CBN, CBT

YT100L-4

3

2.2

5

81

0.82

7

2.2

2.3

19.05x4.76

21.25

38

106 M10

PV2R1-B5

1440 r/min

YT112M-4

5.5

4

8.8

84.5

0.82

7

2.2

2.3

12.5x4

14

35

63.5x63.5 M8

GPY,HGP-2A B3/B5

YT112M-4

5.5

4

8.8

84.5

0.82

7

2.2

2.3

15.875x4

17.7

34

106.3 M10

HGP-3A B3/B5

YT112M-4

5.5

4

8.8

84.5

0.82

7

2.2

2.3

16x5

18

37

70x100 M8

CBN, CBT

YT112M-4

5.5

4

8.8

84.5

0.82

7

2.2

2.3

19.05x4.76

21.25

38

106 M10

PV2R1, FA1

YT112M-4

5.5

4

8.8

84.5

0.82

7

2.2

2.3

19.05x4.76

21.25

36

90x90 M10

VP-30, VP-40

YT112M-4

5.5

4

8.8

84.5

0.82

7

2.2

2.3

22x5

24

50

90x90 M10

50T

YT112M-4

5.5

4

8.8

84.5

0.82

7

2.2

2.3

11.4x4

15 4 Tooth

37

70x100 M8

CBN 4 Tooth Key

1440 r/min

YT132S-4

7.5

5.5

11.8

85.5

0.84

7

2.2

2.3

22x5

24

50

90x90 M10

50T-F

YT132S-4

7.5

5.5

11.8

85.5

0.84

7

2.2

2.3

16x5

18

37

70x100 M8

CBN, CBT

YT132S-4

7.5

5.5

11.8

85.5

0.84

7

2.2

2.3

12.5x4

14

35

63.5x63.5 M8

GPY, HGP-2A

YT132S-4

7.5

5.5

11.8

85.5

0.84

7

2.2

2.3

15.875x4

17.7

34

106.3 M10

HGP-3A

YT132S-4

7.5

5.5

11.8

85.5

0.84

7

2.2

2.3

19.05x4.76

21.25

38

106 M10

PV2R1, FA

YT132S-4

7.5

5.5

11.8

85.5

0.84

7

2.2

2.3

25.4x6.35

28.2

50

146 M12

T6B PV2R2

YT132S-4

7.5

5.5

11.8

85.5

0.84

7

2.2

2.3

30x8(7)

33

48

187 M12

150T B3/B5

1440 r/min

YT132M-4

10

7.5

15.6

87

0.85

7

2.2

2.3

15.875x4

17.7

34

106.3 M10

HGP-3A

YT132M-4

10

7.5

15.6

87

0.85

7

2.2

2.3

19.05x4.76

21.25

38

106 M10

PV2R1, FA

YT132M-4

10

7.5

15.6

87

0.85

7

2.2

2.3

22.23x6.35

25.08

35

146 M12

T6C

YT132M-4

10

7.5

15.6

87

0.85

7

2.2

2.3

25.4x6.35

28.2

50

146 M12

T6B PV2R2

YT132M-4

10

7.5

15.6

87

0.85

7

2.2

2.3

30x8(7)

33

48

187 M12

150T B3/B5

YT132M-4

10

7.5

15.6

87

0.85

7

2.2

2.3

22.23x4.76

24.5

52

146 M12

S25V(S20V)25VQ


Production Features


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Know More Us


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Why Us



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Service and Packing


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About hydraulic motor parameters



The main parameters of hydraulic motors

1. Working pressure and rated pressure

Working pressure: Input the actual pressure of the motor oil, and its size is determined by the load of the motor.

The difference between the inlet pressure of the motor and the pressure difference is called the pressure difference of the motor.  

Rated pressure: According to the test standard, the highest pressure that enables the motor to work continuously and normally.


2. Displacement and flow

Displacement: The volume of liquid that needs to be input per revolution of the hydraulic motor without considering leakage. Vm (m3/rad).

Flow rate: The flow rate without leakage is called the theoretical flow rate qMt, and the actual flow rate qM is considered as the leakage flow rate.


3. Volumetric efficiency and speed

Volumetric efficiency ηMv: The ratio of the actual input flow rate to the theoretical input flow rate.


4. Torque and mechanical efficiency

Without the loss of the motor, its output power is equal to the input power.

Actual torque T: The loss torque ΔT is generated due to the actual mechanical loss of the motor, which is smaller than the theoretical torque Tt, that is, the mechanical efficiency of the motor ηMm: equal to the ratio of the actual output torque of the motor to the theoretical output torque.


5. Power and total efficiency

The actual input power of the motor is pqM, and the actual output power is Tω.

Motor total efficiency ηM: the ratio of actual output power to actual input power.


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