B6K Series Orbit Hydraulic Motor with Disc Valve

B6K Series Orbit Hydraulic Motor with Disc Valve

B6K Orbit Hydraulic Motor is also called the BM6 Orbit Hydraulic Motor in our factory.B6K series motor adapt the advanced Geroler set design with disc distribution. The displacement range is from 195cc/r to 985cc/r for selection. It can meet the requirements of various equipment speeds and torques.
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Description
Product description

                                                                                                           B6K Orbit Hydraulic Motor

 

     B6K Orbit Hydraulic Motor, also known as the BM6 Orbit Hydraulic Motor, adapt advanced Geroler set design with disc distribution. The displacement range is from 195 cc/r to 985 cc/r, can meet the requirements of various equipment speeds and torque levels. The motor has the characteristics of high speed and stable, low speed and stable, low noise, high efficiency, reliable and durable. - The output shaft of the motor is supported by heavy tapered roller bearings, and is locked by nuts which can accurately adjust the bearing clearance, making the motor more reliable.

 

Characteristic features:

1. Geroler set which use low pressure of start-up, provide smooth and reliable operation and high efficiency.

2. The output shaft adapts in tapered roller bearings that permit high axial and radial forces. Thus can offer capacities of high pressure and high torque in the wide of applications.

3. Advanced design in disc distribution flow, which can automatically compensate in operating with high volume.efficiency and long life. This can also provide smooth and reliable operation.
 -6K series motors include: B6K small square flange motor /6K large square flange motor B6KW wheel motor /6KS bearingless motor
B6KB brake motor and other connection forms, can completely replace the domestic, Europe and the United States and other regions of white

 

This series of motors include:

BM6(B6K Standard) /B6KW (wheel motor) /B6KS (Bearingless )/B6KB(Hydraulic Motor with Brake) with different size and shape of flange and shaft.

     You can choose the shaft and flange according to your needs.

    The BM6 Orbit Hydraulic Motor is designed to operate in a wide range of environments. It is a sturdy and reliable motor that is ideal for use in different applications. It is Widely used in agriculture, forestry machinery, fishery, machine tools, lifting equipment, construction engineering equipment, all kinds of drilling equipment, engineering vehicles and other industries.

    In the construction industry, the BM6 hydraulic motor can be used in excavators, skid steers, and other heavy equipment. Its high torque and low speed capabilities make it perfect for powering the tracks or wheels of these machines, allowing them to move easily on rough terrain. It is also strong enough to withstand harsh weather conditions and tough working environments, ensuring that construction projects can continue uninterrupted.

     Similarly, the agricultural industry can benefit from the use of the BM6 hydraulic motor. It is a great choice for use in tractors and other farm machinery, as well as in transport vehicles used for harvesting and distribution. With its efficient energy transmission and high torque, the BM6 motor can help to increase productivity and reduce the time required for certain tasks.

    Overall, the BM6 Orbit Hydraulic Motor is a versatile and durable motor that is ideal for use in a variety of environments. Whether it is in construction, agriculture, or any other industry, this motor can be relied upon to provide reliable performance and efficient power transmission. So, if you are looking for a motor that can stand up to tough working conditions, the BM6 Orbit Hydraulic Motor is definitely worth considering.

 

Specification Data

 

Displ. cm3/r

195

245

310

390

490

625

800

985

Flow

(LPM)

Continuous

150

150

150

150

150

150

150

150

Intermittent

170

210

225

225

225

225

225

225

Speed

(RPM)

Continuous

775

615

698

387

307

241

184

153

Intermittent

866

834

485

570

454

355

278

230

Pressure

(bar)

Continuous

170

170

170

170

170

120

120

120

Intermittent

275

275

275

275

240

140

140

140

Torque

(N.m)

Continuous

475

615

775

965

1215

1125

1380

1570

Intermittent

770

980

1225

1455

1685

1330

1650

1875

 

Performance Data

 

0

1

2

3

4

 

Dimensions

 

1

2

3

 

Dimensions of Shaft

 

4

5

 

Dimensions of oil port

 

6

7

 

Order information

 

1

1

2

1

3

1

4

1

5

1

6

1

7

 

1

2

3

4

5

6

7

Code

Displ.(CC/r)

Flange Pilot Dia.

Output Shaft

Port(A/B)and Drain Port(T)

Rotation

Direction

Paint

B6K

B6KW

B6KS

195

F1

Square-flange, 4-ф14 holes on pilot Dia. φ125φ160 Dia.Bolt Circle

A1

Splined

6D-40X35X10

P1

(AB):G1

(A/B):G1

(T): G114

R

Standard

N

No paint

245

F2

Square-flange, 4-φ14.5 holes on φ162 Dia.Bolt Circle Pilot Dia. φ127

A2

Cylindrical shaft φ38.1

Parallel key A9.53x9.53x45

P2

(A/B): M33X2

(T): M14X1.5

Q

Blue

310

F3

Square-flange, 4-φ17 holes on φ162 Dia.Bolt Circle Pilot Dia. φ127

A3

Splined

8D-42X36X7

P3

(A/B):1-5/16-12UN

(T):7/16-20UNF

390

F4

Sqyare-flange, 4-φ18 holes on φ200 Dia.Bolt

Circle ,Pilot Dia.φ160

A4

Cylindrical shaft φ42Parallel key A12X8X63

P4

(A/B):G3/4

(T): G1/4

490

F5

4 Bolt(Wheel Motor) Pilot Dia.φ139.7

A5

Cylindrical shaft φ40

Parallel key 12X8X45

P5

(A/B): M27X2 0-ring

H(T): G1/4

 

P6

(A/B):1-1/16-12UNF O-ring

(T):7/16-20UNF ,0-ring

625

F6

Flange(Bearingless motor) Pilot Dia.φ127

A6

Cylindrical shaft φ40

Parallel key A12X8X65

P7

(A/B):φ16

(T):M14X1.5

4-M12Manifold Mount

L

Opposite

B

Black

800

   

A7

Splined

6D-35X29X10

P8

(A/B):φ16

(T): M14X1.5

4-M12Manifold Mount

A8

Splined 17-DP12/24,Z17

P9

(A/B):φ19

(T):7/16-20UNF

8x3/8-16UNC Manifold Mount

S

Silver gray

A9

Involute splined shaft

m=2.5,z=17,a=30°

P10

(A/B): G1

(T): G1/4

4-M12 Manifold

Mount

   

A10

Splined 8D-42X36X7

P11

(A/B): G314

(T):G1/4

   

985

   

A11

Cylindrical shaft φ50

Parallel key A14X9X70

P12

(A/B): M33X2

(T): M14X1.5

   
       

A12

Cylindrical shat φ40

Parallel key A12X8X70

P13

(A/B):M27X2

(T): M14X1.5

   
       

A13

Tapered φ44.425,taper1:8

Paralell key B11.13X11.13X30

P14

(A/B): 1-5/16-12UN

(T): 7/16-20UNF

   
       

A14

Tapered φ45 shaft,taper1:10

Parallel key 12X8X32

P15

(A/B):G1/2(深18)

(T):G1/4

   
       

A15

Splined Pitch 8.5/17

Number of teeth 12

P16

(A/B): M22X1.5.

(T): M14X1.5

   
           

P17

(A/B): M18X1.5,

(T): M14X1.5

   
           

P18

(A/B): M24X1.5

(T):M14X1.5

   
           

P19

(A/B):φ16

(T):M14X1.5

   
           

P20

(A/B): G3/4

(T): G1/4

4-M10 Manifold

Mount

   
           

P21

(A/B): M27X2,

(T): M14X1.5

   
           

P22

(A/B): M22X1.5

(T): M14X1.5

   
           

P23

(A/B): 7/8-14UNF,

(T): 7/16-20UNF

   
           

P24

(A/B): 1-1/16-12UN,

(T):9/16-18UNF

   

 

Note:When the table is used, please fill the code of left rows in dash area and give us, which the code information is consists of construction, displacement, mounting flange. output shaft and ports. If the specification is not in the table or you have specific requirements, please contact us (whatsapp+8615106776651).

 

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FAQ

 

Q: What is the delivery date after an order is placed?

A: It depends on whether the products you buy are in stock. If we have inventory, we can arrange shipment in 2 to 3 days. If not, the delivery time is determined by the production time of the factory.

Q: If the products do not meet the requirements, how to solve the problem?

A: If the products do not conform to the customer's samples or have quality problems, our company will be responsible.

Q: How to calculate torque?

A: The calculation formula is as follows:
Torque (Nm) = Displacement (cc/rev) x Working Pressure (MPa) x 0.16 (Factor)
According to the functional theorem: Vm (ml per radian) × w (radian per second) × p (MPa, differential pressure) × (total hydraulic motor efficiency) = w (radian per second) × T (Nm); so T =Vm×P×η; where the milliliter per radian of Vm is converted into milliliter per revolution and needs to be divided by 2π, which is multiplied by 0.16.
The displacement can be seen from the product label. The working pressure depends on the pressure gauge at the entrance of the orbit hydraulic motor. Knowing these two values, you can calculate the output torque of the orbit hydraulic motor at this time.

Q: What kind of Motor circuit is there?

A: Hydraulic motor circuit has series and parallel connection.

 

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