Certification: | GS, RoHS, CE, ISO9001 |
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Type: | Gear Type |
MOQ: | 1 |
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B2K Orbit Hydraulic Motor
B2K Orbit Hydraulic Motor is also called the BM5 Orbit Hydraulic Motor in our factory.B2K series motor adapt the advanced Geroler set design with disc distribution. The displacement range is from 80cc/r to 490cc/r for selection. It can meet the requirements of various equipment speeds and torques.
Characteristic features:
1.Advanced manufacturing devices for the 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 and efficiency and long life. This can also provide smooth and reliable operation.
This series of motors include:
B2K Standard/B2KW (wheel motor) /B2KS (Bearingless ) with different size and shape of flange and shaft. You can choose the shaft and flange according to your needs.
Advantages of B2K Orbit Hydraulic Motor:
The B2K Orbit Hydraulic Motor is a high-performance hydraulic motor that offers several advantages. One of the key benefits of this motor is its durability, as it is built to withstand heavy use and harsh conditions. This makes it ideal for a range of applications, from construction and agriculture to industrial and marine.
Another advantage of the B2K Orbit Hydraulic Motor is its efficiency. This motor is designed to operate with minimal energy loss, which means it can perform at high speeds while using less fuel or electricity. This makes it a cost-effective choice for businesses looking to improve their bottom line and reduce their environmental impact.
The B2K Orbit Hydraulic Motor also offers excellent performance and versatility, with a range of speed and torque options available to suit a variety of applications. This makes it a popular choice among contractors and machinery operators who need a reliable and flexible hydraulic motor that can handle diverse tasks.
Finally, the B2K Orbit Hydraulic Motor is backed by a strong support team that provides exceptional technical and customer service. This ensures that businesses can rely on this motor for years to come, knowing that any issues or questions will be addressed promptly and professionally.
Overall, the B2K Orbit Hydraulic Motor offers a range of advantages for businesses looking for a durable, efficient, and versatile hydraulic motor. With its reliable performance and exceptional support, it is a smart investment for any company looking to improve its operations and boost its productivity.
Displ. cm3/r | 80 | 100 | 125 | 160 | 195 | 245 | 305 | 395 | 490 | |
Flow (LPM) |
Continuous | 75 | 75 | 75 | 75 | 75 | 75 | 75 | 75 | 75 |
Intermittent | 75 | 95 | 95 | 115 | 115 | 115 | 115 | 130 | 115 | |
Speed (RPM) |
Continuous | 799 | 742 | 576 | 477 | 385 | 308 | 246 | 191 | 153 |
Intermittent | 908 | 924 | 720 | 713 | 577 | 462 | 365 | 335 | 230 | |
Pressure (bar) |
Continuous | 170 | 170 | 170 | 170 | 170 | 170 | 140 | 140 | 120 |
Intermittent | 275 | 275 | 275 | 275 | 240 | 240 | 205 | 170 | 140 | |
Torque (N.m) |
Continuous | 195 | 245 | 315 | 380 | 455 | 555 | 560 | 700 | 845 |
Intermittent | 305 | 395 | 550 | 530 | 625 | 765 | 805 | 890 | 930 |
B2K-80 Pressure:MPa |
Max Continuous |
Max Intermittent |
||||||||||
Flow(LPM) | 3.5 | 7 | 10.5 | 14 | 17.5 | 21 | 22.5 | |||||
15 | 35 180 |
80 175 |
120 168 |
159 165 |
196 155 |
236 150 |
250 145 |
|||||
30 | 35 262 |
80 352 |
120 346 |
158 339 |
195 330 |
240 320 |
260 310 |
|||||
40 |
35 483 |
78 473 |
118 465 |
154 450 |
192 443 |
235 435 |
250 415 |
|||||
50 |
30 602 |
76 595 |
115 585 |
152 570 |
195 562 |
230 551 |
248 525 |
|||||
Max Continuous |
60 |
28 725 |
75 713 |
115 705 |
155 683 |
192 675 |
232 665 |
248 630 |
||||
65 |
25 790 |
75 785 |
113 770 |
150 762 |
190 742 |
230 723 |
245 705 |
|||||
Max Intermittent |
80 | 22 980 |
70 965 |
110 950 |
140 920 |
170 892 |
200 860 |
220 830 |
B2K-100 Pressure:MPa |
Max Continuous |
Max Intermittent |
||||||||||
Flow(LPM) | 3.5 | 7 | 10.5 | 14 | 17.5 | 21 | 22.5 | |||||
15 | 49 145 |
95 145 |
150 140 |
200 135 |
250 130 |
289 120 |
310 105 |
|||||
30 | 45 290 |
95 289 |
145 278 |
200 275 |
250 270 |
295 255 |
315 240 |
|||||
40 |
43 385 |
89 385 |
142 375 |
195 360 |
248 350 |
293 335 |
316 320 |
|||||
50 |
40 485 |
85 483 |
135 472 |
195 462 |
247 450 |
293 430 |
315 420 |
|||||
Max Continuous |
60 |
37 588 |
89 585 |
132 575 |
185 562 |
245 550 |
290 540 |
310 520 |
||||
75 |
35 740 |
80 735 |
130 720 |
180 705 |
240 695 |
285 675 |
310 650 |
|||||
Max Intermittent |
90 | 30 850 |
75 840 |
125 810 |
170 785 |
230 770 |
275 750 |
300 750 |
B2K-125 Pressure:MPa |
Max Continuous |
Max Intermittent |
||||||||||
Flow(LPM) | 3.5 | 7 | 10.5 | 14 | 17.5 | 21 | 22.5 | |||||
15 | 55 112 |
120 110 |
175 105 |
245 95 |
310 93 |
350 90 |
375 85 |
|||||
30 | 55 220 |
120 220 |
175 215 |
250 205 |
325 200 |
375 200 |
405 190 |
|||||
40 |
55 300 |
120 295 |
175 292 |
250 285 |
325 275 |
370 265 |
405 260 |
|||||
50 |
50 380 |
115 375 |
175 368 |
250 365 |
320 350 |
370 340 |
400 328 |
|||||
Max Continuous |
60 |
45 456 |
112 448 |
170 445 |
245 440 |
325 425 |
368 405 |
405 390 |
||||
75 |
45 570 |
110 563 |
165 555 |
240 545 |
315 535 |
370 515 |
400 502 |
|||||
Max Intermittent |
90 | 40 685 |
105 675 |
162 670 |
237 660 |
310 645 |
365 625 |
390 610 |
B2K-160 Pressure:MPa |
Max Continuous |
Max Intermittent |
||||||||||
Flow(LPM) | 3.5 | 7 | 10.5 | 14 | 17.5 | 21 | 22.5 | |||||
15 | 70 90 |
140 88 |
205 85 |
305 78 |
370 75 |
430 75 |
475 58 |
|||||
30 | 75 185 |
150 180 |
215 175 |
320 165 |
380 165 |
425 162 |
490 155 |
|||||
40 |
70 248 |
150 245 |
215 240 |
320 230 |
375 225 |
425 215 |
485 205 |
|||||
50 |
65 315 |
145 310 |
215 305 |
316 295 |
378 285 |
425 280 |
482 270 |
|||||
Max Continuous |
60 |
65 375 |
145 370 |
215 365 |
315 357 |
375 345 |
425 335 |
480 325 |
||||
75 |
60 375 |
138 370 |
205 365 |
310 357 |
375 345 |
420 335 |
||||||
Max Intermittent |
90 | 56 565 |
130 560 |
200 550 |
305 540 |
370 530 |
415 510 |
B2K-195 Pressure:MPa |
Max Continuous |
Max Intermittent |
|||||||||
Flow(LPM) | 3.5 | 7 | 10.5 | 14 | 17.5 | 22.5 | |||||
15 | 89 73 |
190 71 |
295 68 |
400 65 |
485 60 |
605 52 |
|||||
30 | 87 148 |
190 145 |
294 143 |
400 140 |
485 135 |
600 125 |
|||||
40 |
85 193 |
190 190 |
292 190 |
395 185 |
485 180 |
595 170 |
|||||
50 |
80 245 |
185 245 |
290 245 |
395 240 |
480 235 |
590 225 |
|||||
Max Continuous |
60 |
74 298 |
178 295 |
286 293 |
390 290 |
475 285 |
580 275 |
||||
75 |
58 372 |
160 369 |
275 365 |
375 360 |
460 355 |
570 345 |
|||||
Max Intermittent |
90 | 50 440 |
148 435 |
260 430 |
355 420 |
445 410 |
555 400 |
B2K-245 Pressure:MPa |
Max Continuous |
Max Intermittent |
|||||||||
Flow(LPM) | 3.5 | 7 | 10.5 | 14 | 17.5 | 22.5 | |||||
15 | 115 58 |
230 55 |
355 55 |
450 50 |
555 45 |
650 45 |
|||||
30 | 117 118 |
225 115 |
350 110 |
445 110 |
460 105 |
655 105 |
|||||
40 |
115 160 |
225 155 |
348 152 |
442 150 |
555 145 |
650 142 |
|||||
50 |
110 200 |
220 200 |
345 198 |
435 195 |
545 195 |
645 192 |
|||||
Max Continuous |
60 |
105 245 |
220 240 |
340 235 |
435 235 |
540 230 |
640 230 |
||||
75 |
95 300 |
215 295 |
335 293 |
430 285 |
535 280 |
635 280 |
|||||
Max Intermittent |
90 | 90 360 |
205 355 |
330 350 |
420 340 |
530 330 |
630 325 |
B2K-305 Pressure:MPa |
Max Continuous |
Max Intermittent |
|||||||||
Flow(LPM) | 3.5 | 7 | 10.5 | 12 | 14 | 18.5 | |||||
15 | 160 48 |
320 47 |
465 45 |
555 43 |
650 40 |
750 38 |
|||||
30 | 165 95 |
320 90 |
468 90 |
560 86 |
658 86 |
752 85 |
|||||
40 |
160 125 |
310 123 |
457 120 |
545 118 |
642 115 |
740 115 |
|||||
50 |
155 158 |
305 155 |
450 153 |
535 150 |
635 145 |
735 145 |
|||||
Max Continuous |
60 |
152 175 |
300 175 |
445 170 |
530 165 |
630 160 |
730 160 |
||||
75 |
145 235 |
295 235 |
435 230 |
525 225 |
630 225 |
725 220 |
|||||
Max Intermittent |
90 | 130 285 |
280 280 |
430 280 |
520 275 |
620 270 |
720 270 |
B2K-395 Pressure:MPa |
Max Continuous |
Max Intermittent |
|||||||||
Flow(LPM) | 3.5 | 7 | 9 | 10.5 | 12 | 14 | |||||
15 | 195 38 |
375 37 |
490 36 |
530 35 |
610 33 |
685 30 |
|||||
30 | 190 77 |
378 75 |
495 75 |
535 73 |
615 70 |
685 70 |
|||||
40 |
187 102 |
375 100 |
490 100 |
533 98 |
610 95 |
685 90 |
|||||
50 |
165 128 |
375 125 |
490 125 |
530 125 |
610 123 |
685 120 |
|||||
Max Continuous |
60 |
156 151 |
373 150 |
490 150 |
530 145 |
608 145 |
682 140 |
||||
75 |
135 192 |
365 190 |
485 185 |
454 185 |
605 185 |
677 185 |
|||||
Max Intermittent |
90 | 110 225 |
365 225 |
480 225 |
520 220 |
600 218 |
675 218 |
B2K-490 Pressure:MPa |
Max Continuous |
Max Intermittent |
|||||||||
Flow(LPM) | 3.5 | 7 | 10.5 | 14 | 15 | ||||||
15 | 218 30 |
440 29 |
660 28 |
895 27 |
995 25 |
||||||
30 | 225 61 |
450 60 |
675 58 |
910 56 |
1002 53 |
||||||
40 |
228 82 |
460 80 |
680 77 |
925 75 |
1017 68 |
||||||
50 |
225 103 |
456 100 |
682 95 |
920 92 |
1008 85 |
||||||
Max Continuous |
60 |
220 123 |
450 120 |
675 110 |
910 112 |
998 105 |
|||||
75 |
212 155 |
445 153 |
665 147 |
900 140 |
980 132 |
||||||
Max Intermittent |
90 | 195 186 |
420 185 |
645 175 |
875 170 |
960 160 |
1 | 2 | 3 | 4 | 5 | 6 | 7 | |||||
Code | Displ.(CC/r) | Flange | Output Shaft | Port and Drain Port | Rotation Direction |
Paint | |||||
B2K B2KW B2KS |
F1 |
4 Bolt flange(Standard)pilot φ82.5 | A1 |
Splined 6D-30x26x8 |
P1 |
G1/2 G1/4 Manifold Mount 2-M10 |
R | Standard | N | No paint |
|
80 | F2 |
2 Bolt flange(Standard)pilot φ82.5 | A2 | Cylindrical shaft φ32 Paralell key 10x8x45 |
P2 |
M22x1.5 M14x1.5 Manifold Mount 2-M10 | Q | Blue |
|||
100 | F3 |
6 Bolt Rhomb-flange(Standard)pilotφ82.5 | A3 | Cylindrical shaft φ25 Parallel key 8x7x28 |
P3 |
7/8-14unf O-ring 7/16-20unf Manifold Mount 2-M10 | |||||
125 | F4 |
2 Bolt Rhomb-flange(Standard) pilot φ70 | A4 | shaftφ25.4 Parallel key 6.35x6.35x32 |
P4 | NPTF1/2 7/16-20unf Manifold Mount 2-M10 | |||||
160 | F5 |
4-φ13 Square-flange,pilot φ100 | A5 | shaft φ31.75, Parallel key 7.96x7.96x31.75 |
P5 | M22x1.5 M14x1.5 Manifold Mount 3-M10 | |||||
P6 | G1/2 G1/4 Manifold Mount 3-M10 | ||||||||||
195 | F6 |
4-φ11.5 Square-flange,pilot φ82.55 | A6 | Splined 14-DP12/24 ANSI B92.1P5 |
L | Opposite | B | Black |
|||
245 | F7 |
4-φ13.5 wheel-flange,pilot φ107.9 | A7 | Splined SAE 6B 6D-25.3x21.3x6.2 |
P7 | M22x1.5 M10x1 Manifold Mount 3-M10 | |||||
A8 | shaft φ25.4 Woodruff keyφ25.4x6.35 | P8 | M20x1.5 M14x1.5 Manifold Mount 3-M10 | ||||||||
S | Silver gray |
||||||||||
A9 | Cylindrical shaft φ25.4 Paralell key 8x7x28 |
||||||||||
A10 | Cylindrical shaft φ30 Parallel key 10x8x45 |
P9 |
NPTF1/2 G1/4 Manifold Mount 3-M10 | ||||||||
305 | F8 |
(Bearingless)circle-flange,pilot φ100 | A11 | Cone-shaft φ35 Parallel key 6x6x20 | |||||||
395 | F9 |
(Bearingless)Square-flange,pilot φ101.5 | A12 | Splined 13-DP16/32 | P10 | 2-φ13 0.4375-20UNF Manifold Mount 3-M10 | |||||
400 | F10 |
(Bearingless)4-M10 Square-flange | A13 | Splined 6D-30x26x6 AXIS DISTANCE 48 | P11 | 2-φ13 M14x1.5 Manifold Mount 3-M10 | |||||
A14 | Splined 6D-30x26x6 AXIS DISTANCE 57 | P12 | 7/8-14unf O-ring 7/16-20unf Manifold Mount 3-M10 | ||||||||
A15 | Splined 6D-30x26x6 AXIS DISTANCE 44.5 | P13 | 2-φ33.2 M14x1.5 Manifold Mount 8-M10 | ||||||||
A16 | Cone-Shaft φ31.75 Parallel key 7.96x7.96x31.75 |
||||||||||
A17 | Bearingless 12-DP12/24 |
Q1: 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.
Q2: 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.
Q3: 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.
Q4: What kind of Motor circuit is there?
A: Hydraulic motor circuit has series and parallel connection.