Product description
B4k Orbit Hydraulic Motor is a cycloidal hydraulic motor, while the "b" in B4k stands for cycloid in Chinese. It adapts the advanced Geroler set design with disc distribution. The displacement range is from 110cc/r to 625cc/r for selection. It can meet the requirements of various equipment speeds and torques.
Advantages of the B4k are as follows:
B4k Orbit Hydraulic Motors have gained popularity among industrial applications due to their remarkable features and benefits. Here are some advantages of using B4k Orbit Hydraulic Motors:
1. High Efficiency: These motors are highly efficient, thus allowing for optimal use of energy. They are designed to maximize performance and minimize energy wastage, hence reducing operating costs.
2. High Torque: B4k Orbit Hydraulic Motors provide high torque output, allowing for improved velocity and acceleration in heavy-duty applications. This feature makes them suitable for use in tasks that require high power output.
3. High Durability: These motors are manufactured with high-quality components that ensure superior durability, thus reducing downtime and maintenance costs. They are also resistant to overheating and damage caused by harsh environmental conditions.
4. Wide Range of Applications: B4k Orbit Hydraulic Motors can be used in a variety of industrial applications, including agriculture, construction, chemical processing, and marine industries. They offer the perfect solution to various complex challenges encountered in these applications.
5. Easy Installation: B4k Orbit Hydraulic Motors are designed with a compact frame that makes installation simple and straightforward. They are also easy to maintain due to their simple construction, thus increasing productivity.
In conclusion, B4k Orbit Hydraulic Motors offer numerous advantages over other hydraulic motors. Their high efficiency, high torque, durability, wide range of applications, and easy installation make them an ideal choice for industrial use. Incorporating these motors into your operations will lead to significant improvements in productivity and cost savings.
Specification Data
Displ. cm3/r |
110 |
130 |
160 |
205 |
245 |
310 |
400 |
500 |
625 |
|
Flow (LPM) |
Continuous |
75 |
95 |
95 |
95 |
95 |
95 |
95 |
95 |
95 |
Intermittent |
95 |
115 |
115 |
130 |
130 |
130 |
150 |
150 |
150 |
|
Speed (RPM) |
Continuous |
697 |
722 |
582 |
459 |
383 |
303 |
239 |
191 |
151 |
Intermittent |
868 |
862 |
690 |
546 |
532 |
422 |
376 |
305 |
241 |
|
Pressure (bar) |
Continuous |
205 |
205 |
205 |
205 |
205 |
205 |
190 |
140 |
115 |
Intermittent |
310 |
310 |
310 |
250 |
260 |
260 |
240 |
170 |
140 |
|
Torque (N.m) |
Continuous |
320 |
375 |
485 |
600 |
705 |
850 |
930 |
945 |
970 |
Intermittent |
470 |
560 |
705 |
800 |
845 |
1065 |
1185 |
1170 |
1180 |
Performance Data
Dimensions
Dimensions of Shaft
Dimensions of oil port
Order information
1 |
|
2 |
|
3 |
|
4 |
|
5 |
|
6 |
|
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 |
|||||
B4K B4KW B4KS |
110 |
F1 |
4-φ15 Square-flange Pilot φ101.5x9 |
A1 |
Cylindrical shaft φ31.75 Parallel key 7.96x7.96x40 |
P1 |
(A/B) 1-1/16-12UNC,O-RING (T)7/16-20UNF,O-RING |
R |
Standard |
N |
No paint |
130 |
F2 |
4-φ14.5 Square-flange Pilot φ127x12.3 |
A2 |
Splined 14-DP12/24 |
P2 |
G3/4(BSP) (T)G1/4(BSP) |
Q |
Blue |
|||
160 |
F3 |
4-φ13.5 Bolt Magneto Pilot φ82.55x2.8 |
A3 |
Cylindrical shaft φ40 Parallel key 12x8x70 |
P3 |
7/8-14UNF,O-ring (T)7/16-20UNF |
|||||
205 |
F4 |
4-φ14.5(Wheel Motor)flange Pilot φ139.6 |
A4 |
Splined 17-DP12/24 |
P4 |
M22x1.5 (T)M14x1.5 |
|||||
245 |
F5 |
4-φ14.5 Bolt flange(Bearingless) Pilot φ127x12.4 |
A5 |
Cone-shaft φ41.25 Parallel 11.13x11.13x31.7 |
P5 |
8xM10Manifold Mount(T)7/16-20UNF |
L |
Opposite |
B |
Black |
|
310 |
A6 |
Bearingless Motor 12-DP10/20 |
P6 |
8x 3/8-16UNC (T)7/16-20UNF |
|||||||
400 |
S |
Silver gray |
|||||||||
500 |
|||||||||||
625 |
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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