Certification: | GS, RoHS, CE, ISO9001 |
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Type: | Gear Type |
MOQ: | 1 |
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B4k Orbit Hydraulic Motor
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.
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 |
B4k-110 Pressure:MPa |
Max Continuous |
Max Intermittent |
||||||||||
Flow(LPM) | 3.5 | 7 | 10.5 | 14 | 17 | 20.5 | 24 | |||||
15 | 50 136 |
105 123 |
160 110 |
210 97 |
260 84 |
310 70 |
355 56 |
|||||
30 | 50 274 |
105 270 |
160 262 |
210 253 |
260 241 |
315 228 |
365 213 |
|||||
45 |
50 414 |
105 410 |
160 400 |
210 390 |
265 374 |
320 355 |
370 335 |
|||||
53 |
50 484 |
105 480 |
160 469 |
210 458 |
265 440 |
320 419 |
370 446 |
|||||
61 | 50 553 |
105 549 |
160 537 |
210 525 |
265 505 |
320 482 |
375 455 |
|||||
Max Continuous |
76 |
50 694 |
100 690 |
155 677 |
210 664 |
265 638 |
320 611 |
375 579 |
||||
Max Intermittent |
95 | 45 868 |
95 961 |
155 838 |
210 816 |
260 792 |
320 767 |
375 729 |
B4k-130 Pressure:MPa |
Max Continuous |
Max Intermittent |
||||||||||
Flow(LPM) | 3.5 | 7 | 10.5 | 14 | 17 | 20.5 | 24 | |||||
15 | 60 114 |
125 111 |
185 105 |
250 100 |
305 95 |
365 90 |
415 70 |
|||||
30 | 60 225 |
60 222 |
185 216 |
250 210 |
310 202 |
370 194 |
425 176 |
|||||
45 |
55 338 |
55 335 |
185 329 |
250 323 |
310 312 |
375 300 |
435 282 |
|||||
61 | 55 453 |
55 449 |
185 443 |
250 437 |
310 424 |
375 410 |
435 388 |
|||||
Max Continuous |
76 |
55 569 |
55 564 |
185 559 |
250 551 |
310 536 |
375 520 |
440 495 |
||||
95 | 50 718 |
50 714 |
180 702 |
245 690 |
305 672 |
375 653 |
435 625 |
|||||
Max Intermittent |
114 | 45 826 |
45 855 |
170 842 |
235 827 |
300 806 |
36 783 |
425 749 |
B4k-160 Pressure:MPa |
Max Continuous |
Max Intermittent |
||||||||||
Flow(LPM) | 3.5 | 7 | 10.5 | 14 | 17 | 20.5 | 24 | |||||
15 | 80 92 |
160 90 |
240 88 |
320 84 |
385 76 |
455 73 |
520 62 |
|||||
30 | 80 182 |
165 180 |
245 176 |
330 171 |
400 163 |
480 154 |
550 138 |
|||||
45 |
80 274 |
165 272 |
245 266 |
330 260 |
405 250 |
485 238 |
555 224 |
|||||
61 | 75 364 |
160 362 |
240 356 |
325 348 |
400 338 |
480 326 |
555 308 |
|||||
Max Continuous |
76 |
70 458 |
150 456 |
235 448 |
315 440 |
395 429 |
480 417 |
555 396 |
||||
95 | 70 578 |
150 273 |
230 563 |
315 552 |
395 540 |
475 526 |
555 501 |
|||||
Max Intermittent |
114 | 65 693 |
145 687 |
225 675 |
305 661 |
390 647 |
450 630 |
525 600 |
B4k-205 Pressure:MPa |
Max Continuous |
Max Intermittent |
||||||||||
Flow(LPM) | 3.5 | 7 | 10.5 | 14 | 17 | 20.5 | 24 | |||||
15 | 100 73 |
200 71 |
295 70 |
385 68 |
480 61 |
570 57 |
645 45 |
|||||
30 | 100 143 |
205 142 |
300 138 |
400 136 |
500 132 |
590 125 |
680 116 |
|||||
45 |
95 216 |
205 215 |
305 211 |
405 202 |
500 200 |
600 194 |
690 185 |
|||||
61 | 95 290 |
200 289 |
300 284 |
400 280 |
500 272 |
595 264 |
690 253 |
|||||
Max Continuous |
76 |
90 364 |
195 362 |
295 358 |
395 353 |
495 345 |
595 334 |
690 321 |
||||
95 | 85 456 |
185 453 |
290 448 |
395 442 |
495 434 |
590 421 |
||||||
Max Intermittent |
114 | 80 546 |
175 542 |
285 537 |
380 529 |
475 520 |
570 504 |
B4k-245 Pressure:MPa |
Max Continuous |
Max Intermittent |
||||||||||
Flow(LPM) | 3.5 | 7 | 10.5 | 14 | 17 | 20.5 | 24 | |||||
15 | 115 61 |
235 60 |
355 59 |
465 56 |
580 49 |
680 44 |
775 39 |
|||||
30 | 115 121 |
240 119 |
355 117 |
475 113 |
595 106 |
700 99 |
800 91 |
|||||
45 |
110 182 |
235 179 |
355 178 |
475 173 |
595 166 |
705 157 |
||||||
61 | 105 243 |
230 241 |
355 239 |
475 232 |
595 225 |
700 213 |
||||||
Max Continuous |
76 |
105 305 |
225 303 |
350 300 |
470 292 |
590 283 |
||||||
95 | 95 382 |
220 380 |
335 376 |
460 369 |
585 357 |
|||||||
114 | 75 457 |
210 455 |
330 450 |
445 442 |
560 427 |
|||||||
Max Intermittent |
132 | 195 531 |
315 525 |
440 515 |
B4k-310 Pressure:MPa |
Max Continuous |
Max Intermittent |
||||||||||
Flow(LPM) | 3.5 | 7 | 10.5 | 14 | 17 | 20.5 | 24 | |||||
15 | 145 47 |
300 46 |
445 45 |
590 44 |
735 42 |
880 41 |
1030 40 |
|||||
30 | 145 96 |
300 95 |
455 94 |
605 92 |
755 89 |
850 85 |
1000 80 |
|||||
45 |
145 144 |
295 143 |
455 142 |
610 140 |
760 135 |
855 130 |
1015 125 |
|||||
61 | 140 193 |
290 192 |
450 189 |
610 187 |
760 183 |
850 180 |
||||||
Max Continuous |
76 |
135 242 |
285 241 |
440 238 |
605 234 |
750 230 |
||||||
95 | 120 303 |
285 301 |
430 299 |
595 293 |
740 223 |
|||||||
114 | 115 363 |
275 360 |
420 358 |
580 351 |
||||||||
Max Intermittent |
132 | 265 420 |
400 418 |
B4k-400 Pressure:MPa |
Max Continuous |
Max Intermittent |
||||||||||
Flow(LPM) | 3.5 | 5 | 8.5 | 10.5 | 12 | 14 | 15.5 | |||||
15 | 185 38 |
280 3 |
465 36 |
555 35 |
635 35 |
720 34 |
810 34 |
|||||
30 | 190 76 |
290 75 |
480 73 |
575 72 |
665 70 |
750 68 |
845 66 |
|||||
45 |
190 114 |
285 113 |
480 111 |
575 110 |
665 108 |
755 105 |
||||||
53 | 185 133 |
280 132 |
480 130 |
575 129 |
665 127 |
750 124 |
||||||
Max Continuous |
61 |
185 153 |
280 152 |
480 149 |
575 147 |
660 145 |
||||||
76 | 180 191 |
270 190 |
475 187 |
570 185 |
655 183 |
|||||||
Max Intermittent |
95 | 155 238 |
255 237 |
460 235 |
560 233 |
645 230 |
B4k-500 Pressure:MPa |
Max Continuous |
Max Intermittent |
||||||||||
Flow(LPM) | 3.5 | 5 | 7 | 8.5 | 10.5 | 12 | 14 | |||||
15 | 225 29 |
345 28 |
470 27 |
595 26 |
710 23 |
830 21 |
945 19 |
|||||
30 | 230 60 |
355 59 |
475 57 |
600 55 |
720 52 |
845 49 |
960 46 |
|||||
45 |
225 90 |
350 89 |
475 87 |
600 85 |
720 81 |
845 77 |
||||||
53 | 220 105 |
345 104 |
470 102 |
595 100 |
720 96 |
840 92 |
||||||
Max Continuous |
61 |
215 120 |
340 119 |
465 117 |
595 115 |
715 111 |
840 107 |
|||||
76 | 205 152 |
330 150 |
460 147 |
590 145 |
710 140 |
|||||||
Max Intermittent |
95 | 190 189 |
315 187 |
455 184 |
590 182 |
695 177 |
B4k-625 Pressure:MPa |
Max Continuous |
Max Intermittent |
||||||||||
Flow(LPM) | 3.5 | 5 | 7 | 8.5 | 10.5 | 11 | 12.5 | |||||
15 | 275 23 |
425 23 |
585 22 |
745 21 |
895 19 |
950 18 |
1180 16 |
|||||
30 | 280 48 |
440 47 |
595 46 |
750 45 |
905 44 |
955 43 |
||||||
45 |
295 72 |
460 71 |
605 70 |
755 69 |
915 65 |
980 64 |
||||||
53 | 285 84 |
450 83 |
600 82 |
755 81 |
910 77 |
975 76 |
||||||
Max Continuous |
61 |
280 95 |
440 95 |
595 94 |
755 93 |
910 89 |
970 88 |
|||||
76 | 265 120 |
425 120 |
590 118 |
750 116 |
||||||||
Max Intermittent |
95 | 245 150 |
405 149 |
565 147 |
725 146 |
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 |
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500 | |||||||||||
625 |
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.