Product description
The BMR Horizontal Orbit Hydraulic Motor can replace the OMR Horizontal Orbit Hydraulic Motor in our factory.
The BMR Horizontal Orbit Hydraulic Motor is a cycloidal hydraulic motor. The displacement range is from 50cc/r to 400cc/r for selection. It can meet the requirements of various equipment speeds and torques.
The Horizontal oil port Orbit Hydraulic Motor is a remarkable invention that has revolutionized the hydraulic industry. This incredible device boasts of a range of impressive features that make it a must-have for all hydraulic systems.
One of the most notable features of the Horizontal oil port Orbit Hydraulic Motor is its exceptional power. This device has incredible torque and high speed capabilities that ensure optimal performance, even when under extreme pressure. Its ability to deliver maximum power output makes it ideal for heavy-duty applications such as lifting and digging.
Another impressive feature of the Horizontal oil port Orbit Hydraulic Motor is its efficiency. This device is designed to operate with minimum wastage, which translates to lower fuel consumption and reduced operating costs. Its compact design also makes it easy to install, maintain, and service, which further reduces downtime and enhances productivity.
Furthermore, the Horizontal oil port Orbit Hydraulic Motor is built to last. It is constructed using high-quality materials that are resistant to wear and tear, ensuring maximum durability and longevity. Its robust design and superior engineering also make it resistant to leakage and other forms of damage, ensuring uninterrupted functionality and performance.
In conclusion, the Horizontal oil port Orbit Hydraulic Motor is a game-changer in the hydraulic industry. Its exceptional power, efficiency, and durability make it an indispensable tool for all hydraulic systems. With this device in your toolbox, you can be sure of optimal performance, reduced operating costs, and enhanced productivity. So, why wait? Get your Horizontal oil port Orbit Hydraulic Motor today and experience the difference!
Specification Data
|
Displ. cm3/r |
50 |
63 |
80 |
100 |
125 |
160 |
200 |
250 |
320 |
370 |
400 |
|
|
Flow (LPM) |
Continuous |
38 |
53 |
53 |
53 |
53 |
53 |
53 |
53 |
53 |
53 |
53 |
|
Intermittent |
45 |
57 |
57 |
57 |
57 |
57 |
57 |
57 |
57 |
57 |
57 |
|
|
Speed (RPM) |
Continuous |
750 |
778 |
635 |
510 |
430 |
329 |
266 |
213 |
171 |
142 |
133 |
|
Intermittent |
875 |
832 |
680 |
537 |
420 |
374 |
281 |
226 |
182 |
150 |
141 |
|
|
Pressure (bar) |
Continuous |
138 |
138 |
138 |
138 |
138 |
124 |
124 |
124 |
103 |
90 |
90 |
|
Intermittent |
155 |
155 |
155 |
155 |
155 |
138 |
138 |
138 |
124 |
103 |
103 |
|
|
Torque (N.m) |
Continuous |
92 |
121 |
150 |
196 |
230 |
271 |
328 |
401 |
417 |
402 |
429 |
|
Intermittent |
105 |
137 |
174 |
213 |
256 |
297 |
358 |
410 |
441 |
460 |
458 |
|
Performance Data







Dimensions of Oil Port
Horizontal oil port

|
Displ. Cm3/r |
50 |
63 |
80 |
100 |
125 |
160 |
200 |
250 |
320 |
370 |
400 |
|
H1 |
9 |
11.5 |
14.5 |
18 |
22.5 |
29 |
35.5 |
44.5 |
56 |
68 |
72 |
|
H |
143 |
146 |
149 |
152 |
157 |
163 |
170 |
179 |
190 |
202 |
206 |
Dimensions of Shaft

Note:If the shaft is not in the table which you have specific requirements, please contact us.
Direction of Shaft Rotation

Permissible Shaft Seal Pressure

Order information (GB standard: Select Flowchart)
|
1 |
|
2 |
|
3 |
|
4 |
|
5 |
|
6 |
|
7 |
|
1 |
2 |
3 |
4 |
5 |
6 |
7 |
|||||
|
Code |
Displ.(CC/r) |
Flange |
Output Shaft |
Port and Drain Port |
Rotation Direction |
Paint |
|||||
|
BMRH |
50 |
F1 |
2-φ13.5 Rhomb-flange, pilot φ82.55x2.8 |
A12 |
shaft ∅25.4 Woodruff key ∅25.4x6.35 |
P1 |
7/8-14UNF O-ring 7/16-20UNF |
R |
Standard |
N |
No paint |
|
63 |
|||||||||||
|
80 |
A13 |
Splined SAE 6B |
P2 |
1/2-14NPTF 7/16-20UNF |
|||||||
|
100 |
|||||||||||
|
125 |
F2 |
4-M10 Square-flange, Pilot Dia φ44.4x2.8 |
Q |
Blue |
|||||||
|
160 |
|||||||||||
|
200 |
A14 |
Cylindrical shaft φ25.4 Pin hole φ8 |
P3 |
G1/2 G1/4 |
|||||||
|
250 |
A15 |
Cylindrical shaft φ25.4 Pin hole φ10.3 |
P4 |
G1/2 O-ring G1/4 |
|||||||
|
315 |
L |
Opposite |
B |
Black |
|||||||
|
370 |
F3 |
4-3/8-16 UNC Square-flange, pilot φ44.4x2.8 |
A16 |
Cylindrical shaft φ22.22 Parallel key 6.35x6.35x25.4 |
P5 |
3/4-16 O-ring 7/16-20UNF |
|||||
|
400 |
A17 |
Splined 13-DP16/32 |
P6 |
PT1/2 PT1/4 |
S |
Silver gray |
|||||
|
A18 |
Cylinder shaft φ25.4 Parallel 8x7x28 |
P7 |
M18X1.5 M 14X1.5 |
||||||||
|
P8 |
ф 10 O-ring manifold 4-M8 G1/4 |
||||||||||
|
P9 |
ф 10 O-ring manifold4-5/16-18UNC 7/16-20UNF |
||||||||||
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+8615106778662).

FAQ
Q: What is the delivery date after an order is placed?
Q: If the products do not meet the requirements, how to solve the problem?
Q: How to calculate torque?
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?
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