Certification: | GS, RoHS, CE, ISO9001 |
---|---|
Type: | Gear Type |
MOQ: | 1 |
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BMP S oil port Orbit Hydraulic Motor
The BMP S motor is designed for use in demanding industrial applications, including machinery, conveyors, winches, and much more. This motor is robust and reliable, delivering smooth and consistent performance even under the most challenging conditions. With high operating pressures and high flow rates, the BMP S motor is the perfect choice for heavy-duty industrial applications.
One of the standout features of the BMP S motor is its oil port design. This advanced design makes it easy to connect and disconnect hoses, without the need for additional fittings or adapters. This means that you can quickly and easily install the motor and get it up and running in no time.
The BMP S motor is also equipped with a range of other advanced features. For example, the motor features an advanced flow distribution system that ensures accurate and consistent flow rates, even at high operating pressures. Additionally, the motor is designed for flow noise levels, making it ideal for use in noise-sensitive environments.
the BMP Cycloid Hydraulic Motor is a high-performance device designed to operate at high speeds and with high efficiency. Fitted with a cycloid gear system, the BMP motor is best suited for applications that require full power across a range of speeds.
One of the key features that makes the BMP Motor stand out from other hydraulic motors in the market is its robust construction. Made of quality materials that offer high durability, this motor can withstand even the toughest conditions. Additionally, it comes with a modular design that makes it easy to install, use, and maintain. With its compact size and weight, it can be easily integrated into existing systems.
The BMP Motor offers efficient and high-speed operation, thanks to its unique cycloid gear system. The design of the gear system allows for high efficiency, minimizes noise and vibration, and is capable of delivering full power even at lower speeds. This feature makes it ideal for various applications across a variety of industries, such as agriculture, construction, mining, and more.
Another standout feature of the BMP Motor is its ability to handle high-pressure environments. It can operate at high pressures of up to 400 bar, which makes it suitable for applications that require high levels of power. The motor has low operating temperatures, which ensures its longevity and reduces the chances of overheating.
Overall, the BMP Cycloid Hydraulic Motor is an ideal option for anyone looking for a high-quality, efficient, and durable hydraulic motor. With its advanced gear system, efficient operation, and compact design, it is capable of delivering superior performance in the most demanding applications.
By using anti-wear hydraulic oil, of which the oil cleanliness is ISO 20/18/13, can significantly improve motor life. The BMP series motors feature imported shaft seals that allow housing pressures up to 175Bar without the need for housing drain tubing. When using the leakage pipe outside the housing, the peak pressure in the return pipe is allowed to reach 200Bar.
The advantage of BMP160 Orbit Hydraulic Motor:
Easy maintenance: The simplicity of the design of the BMP Cycloidal Hydraulic Motor makes it easy to maintain and implement repairs, which can help minimize downtime and maintenance costs.
Cost-effective: The high efficiency of this hydraulic motor can help reduce energy consumption and operating costs, making it a cost-effective solution for a variety of applications.When it comes to packaging and transportation of BMP hydraulic motors, there are a few key considerations to keep in mind. BMP hydraulic motors are highly specialized pieces of machinery that require careful handling in order to maintain their integrity and ensure optimal performance.
The first step in packaging and transporting BMP hydraulic motors is to select the right type of packaging material. It is important to choose packaging materials that are strong and durable enough to protect the motor from damage during transit, but that are also lightweight enough to keep transportation costs low.
One popular option for packaging BMP hydraulic motors is custom-built wooden crates. These crates can be designed to fit the dimensions of the motor perfectly, providing a snug and secure fit that will keep the motor in place during transportation. Additionally, wooden crates can be lined with foam padding or other cushioning materials to provide extra protection against vibration.
Once the BMP hydraulic motor has been securely packaged, it is important to select the right mode of transportation. Depending on the distance and destination, options might include ground transportation via truck or railway, or air or ocean freight shipping. It is important to choose a carrier with a strong track record of handling delicate and specialized equipment like BMP hydraulic motors, and that also offers insurance and other protections in case of damage or loss.
Another important consideration when transporting BMP hydraulic motors is the use of appropriate securing and lifting equipment. Cranes, hoists, and other lifting devices should be used to move the motor onto and off of transportation vehicles, and the motor should be secured with straps or chains to prevent any movement during transportation.
Finally, it is important to have a plan in place for unloading and installing the BMP hydraulic motor at its final destination. This might involve working with trained professionals who are familiar with BMP hydraulic motors, or it might require coordination with the end-user to ensure that the motor is installed and configured correctly.
In summary, packaging and transporting BMP hydraulic motors requires careful attention to detail and a commitment to using the right equipment and materials. By following best practices and partnering with experienced logistics professionals, it is possible to ensure that BMP hydraulic motors arrive at their final destination in excellent condition and ready for use.
BMP series cycloidal hydraulic motors are widely used in construction machinery, agricultural machinery, transportation, machine manufacturing and other departments, such as polishing machine, hydraulic press, conveyor, operator, injection molding machine, harvester, oil pipe clamp, manipulator, lifting crane and other mechanical equipment.The BMP Cycloidal Hydraulic Motor is a top-performing hydraulic motor that offers a range of benefits and features. Its unique cycloidal cam mechanism ensures high efficiency, low noise level, and good starting capability, making it ideal for a wide range of applications. Contact a trusted hydraulic motor supplier today to learn more about the benefits of the BMP Cycloidal Hydraulic Motor.
When it comes to hydraulic motors, BMP is a well-known name in the industry. Known for their high-quality products, BMP designs and manufactures hydraulic motors using a range of materials to cater to different application requirements.
Let's take a closer look at the materials commonly used in BMP hydraulic motor products.
1. Cast Iron
Cast iron is a common material used in BMP hydraulic motor products. It's durable, has good wear resistance, and can withstand high operating temperatures. Cast iron hydraulic motor products are ideal for heavy-duty applications such as mining, construction, and agriculture.
2. Aluminium
Aluminium is a lightweight material with excellent heat dissipation properties. It's commonly used in BMP hydraulic motor products where weight is a critical factor, such as in mobile equipment applications. However, aluminium has low wear resistance and may not be suitable for applications with high loads.
3. Steel
BMP hydraulic motor products made of steel are ideal for applications that require high strength and stiffness. Steel is a durable material that can withstand high loads and harsh environments. It's commonly used in applications such as marine and offshore equipment, wind turbines, and industrial machinery.
4. Stainless Steel
Stainless steel is a highly corrosion-resistant material that's commonly used in BMP hydraulic motor products. It's ideal for applications that involve exposure to harsh environments such as saltwater. Stainless steel hydraulic motors have high durability and can withstand high operating temperatures.
5. Composite Materials
Composite materials such as carbon fiber and fiberglass-reinforced polymer (FRP) are also used in BMP hydraulic motor products. These materials are lightweight, have high strength-to-weight ratios and low coefficients of thermal expansion. Composite materials are ideal for applications that require low weight and high strength, such as in aerospace and automotive industries.
Conclusion
In conclusion, BMP hydraulic motor products are made using a range of materials to cater to different application requirements. Depending on the application, materials such as cast iron, aluminium, steel, stainless steel, and composite materials are used. Selecting the right material for hydraulic motor products is critical as it affects product durability and performance. Therefore, it's important to consult with hydraulic motor experts to determine the right material for your application needs.
BMP series motor is a small volume, economical axial valve hydraulic motor,using integral rotor, compact structure, light weight, high power density. The BMP Cycloidal Hydraulic Motor is a type of fixed displacement hydraulic motor that utilizes a cycloidal cam mechanism. This unique design offers a number of advantages over other types of hydraulic motors, including high efficiency, low noise level, and good starting capability. This motor is ideal for a wide range of applications, including agriculture, industrial machinery, construction, and more.
One of the greatest benefits of using linear hydraulic motors is the ease of installation. With their compact design, the motors can fit into a wide variety of applications, making them the perfect fit for packaging and transportation equipment. Additionally, because they have fewer components compared to traditional hydraulic motors, they require less installation time and maintenance.
Another advantage of linear hydraulic motors is their high efficiency. Unlike traditional hydraulic motors, linear hydraulic motors provide an almost constant linear speed throughout their stroke, which means they deliver increased power output without the need for a gearbox. This design gives them a high rate of efficiency, which translates to lower operating costs and reduces the environmental impact.
Linear hydraulic motors also provide better control. They respond faster and more precisely to changes in demands from the equipment, which results in less wear and tear on the equipment, reducing maintenance costs and downtime.
Packaging and transportation equipment requires precise positioning, which can be challenging with traditional hydraulic motors. Linear hydraulic motors have the ability to pre-set positioning with programmable position sensors, which can improve accuracy and make the process more reliable, while saving time and money.
Finally, linear hydraulic motors have a longer lifespan, which results in fewer replacements, which in turn reduce costs over the product lifespan. Their high precision, durability, and efficiency make them the perfect choice for packaging and transportation applications.
In conclusion, using linear hydraulic motors for packaging and transportation equipment provides the benefits of high speed, efficiency, ease of installation, improved control, and improved reliability, that translates to reduced costs and increased productivity. As technology continues to improve, linear hydraulic motors will continue to expand their range of applications in a variety of industries.
The BMP Cycloidal Hydraulic Motor is a top-performing hydraulic motor that offers a range of benefits and features. Its unique cycloidal cam mechanism ensures high efficiency, low noise level, and good starting capability, making it ideal for a wide range of applications. Contact a trusted hydraulic motor supplier today to learn more about the benefits of the BMP Cycloidal Hydraulic Motor.
BMP cycloidal hydraulic motors are used in a wide range of applications.The BMP cycloidal hydraulic motor has always been a very important component in the field of industrial manufacturing. Due to its excellent performance and wide range of applications, it has become one of the key components of all types of machines and equipment. The following are the specific uses of BMP cycloidal hydraulic motors in various application areas.1. Construction machineryBMP cycloidal hydraulic motor is one of the key components of large construction machinery such as excavators, forklifts, and bulldozers. In these large machines, hydraulic motors are responsible for providing power, which controls the movement of the machinery and performs various tasks. The BMP cycloidal hydraulic motor has the characteristics of high torque, low-speed cruise, etc., and can withstand high pressure and long working time in construction machinery.2. Petroleum equipmentBMP cycloidal hydraulic motors are also widely used in the petroleum equipment industry, such as drilling rigs, oil pumps, etc. In the petroleum equipment industry, the working environment of hydraulic motors is relatively harsh, and it needs to have strong corrosion resistance and high temperature resistance. The BMP cycloidal hydraulic motor has a precise structural design and a high degree of reliability, which can adapt to the harsh operating environment.3. Agricultural machineryBMP cycloidal hydraulic motors are also widely used in the agricultural machinery industry. It is used to drive the movement of equipment such as harvesters, tractors, and planters. In these mechanical equipment, hydraulic motors need to have high timeliness and low energy consumption to meet the requirements of long-term and efficient operation of agricultural machinery.4. ShipbuildingBMP cycloidal hydraulic motors are also widely used in the marine industry. On ships, hydraulic motors are an important part of systems such as servos, pumps, and oil pipes. BMP hydraulic motors are one of the most popular choices for shipbuilders due to their high torque, high efficiency and reliability.
BMP Motors offer a wide range of hydraulic and pneumatic motors to cater to diverse industrial needs. These products can handle a variety of applications and can be easily integrated into any machinery. Their product range includes Orbital Hydraulic Motors, Radial Piston Motors, Axial Piston Motors, and Vane Motors. The Orbit Hydraulic Motors are used in a variety of applications such as agriculture, construction, and material handling equipment. They offer high performance and smooth operation. The Radial Piston Motors are ideal for applications that require high torque and are commonly used in heavy equipment, drilling rigs, and mining machinery. The Axial Piston Motors are known for their high power density and are widely used in construction equipment, marine machinery and agricultural machinery.
Applications:
1. Construction equipment: excavators, bulldozers, cranes, etc.
2. Transportation machinery: forklifts, loaders, etc.
3. Agricultural machinery: harvesters, corn harvesters, etc.
4. Industrial machinery: machine tools, printing machinery, etc.
5. Marine machinery: ship steering gear, winches, etc.
BMP orbit hydraulic motor series is designed and manufactured in accordance with ISO and CETOP standards, with superior quality and excellent performance. We provide customized services to meet different customer requirements.
BMP orbit hydraulic motors are also widely used in various other fields, such as robotics, power equipment, power transmission systems, construction equipment, etc. In these fields, high-precision and high-performance hydraulic motors play a vital role in the normal operation of equipment and improve work efficiency.In short, the BMP orbit hydraulic motor has become one of the indispensable components of some mechanical equipment in various fields. Due to its excellent performance and wide range of applications, it will be more widely used and developed in the future market.
As a professional manufacturer of hydraulic components in China, our company is committed to the development of high-tech products and manufacturing technology. We have Processing equipment like CNC forming grinder, CNC internal grinder, CNC external grinder, CNC lathe, CNC milling machine, CNC gear hobbing machine. This means that we can provide you with parts of the BMP 400 Orbit Hydraulic Motor at the same time, such as geroler and drive etc.
BMP series wheel motor oil port can be adjusted according to the needs of the connection port, vertical oil port, horizontal oil port, s oil port, a variety of oil port forms for you to choose, the number of flange holes can also be adjusted according to needs, flange has a variety of forms for you to choose, such as round flange, square flange, diamond flange and so on. The Orbital Hydraulic Motors are used in a variety of applications such as agriculture, construction, and material handling equipment. They offer high performance and smooth operation. The Radial Piston Motors are ideal for applications that require high torque and are commonly used in heavy equipment, drilling rigs, and mining machinery. The Axial Piston Motors are known for their high power density and are widely used in construction equipment, marine machinery and agricultural machinery. The Vane Motors are used in flow-speed and high torque applications such as augers, conveyors, and mixers. BMP Motors' products are designed to withstand harsh environmental conditions and frequent use. They are made of high-quality materials that offer enhanced strength and durability. The motors are sealed to prevent contamination and ensure consistent performance. They also feature a variety of shaft and mounting options for easy integration into different machinery.
The BMP orbit hydraulic motor is a high-performance, low-speed hydraulic motor, designed to deliver superior efficiency and power in demanding applications. With its unique cycloidal design, this motor operates with minimal noise and vibration, while also providing excellent control and precision.
One of the standout features of the BMP hydraulic motor is its ability to rotate at low speeds, while still delivering high torque and power. This makes it an ideal choice for applications where precise control and slow rotation are required, such as in material handling equipment, industrial machinery, and marine applications.
Another key selling point of the BMP hydraulic motor is its solid construction and high durability. Made from high-quality materials and engineered to withstand even the most challenging operating environments, this motor is built to last and deliver reliable performance time and time again.
The BMP hydraulic motor also offers a range of other benefits, including easy installation and maintenance, as well as a cBMPact design that makes it suitable for a wide range of applications. With its advanced technology, robust construction, and versatile design, the BMP cycloidal hydraulic motor is an excellent choice for any industrial or commercial application that requires quality, precision, and superior performance.
Displ. cm3/r | 36 | 50 | 63 | 80 | 100 | 125 | 160 | 200 | 250 | 320 | 400 | 500 | |
Flow (LPM) |
Continuous | 40 | 38 | 45 | 57 | 57 | 57 | 57 | 57 | 57 | 57 | 57 | 57 |
Intermittent | 45 | 45 | 53 | 68 | 68 | 68 | 68 | 68 | 68 | 68 | 68 | 68 | |
Speed (RPM) |
Continuous | 1055 | 698 | 663 | 684 | 580 | 452 | 353 | 284 | 235 | 178 | 145 | 110 |
Intermittent | 1250 | 859 | 774 | 842 | 659 | 544 | 364 | 339 | 281 | 210 | 180 | 136 | |
Pressure (bar) |
Continuous | 140 | 124 | 124 | 124 | 124 | 124 | 115 | 110 | 100 | 90 | 90 | 83 |
Intermittent | 162 | 138 | 138 | 138 | 138 | 138 | 124 | 124 | 124 | 124 | 110 | 90 | |
Torque (N.m) |
Continuous | 69 | 78 | 99 | 126 | 158 | 194 | 234 | 280 | 318 | 366 | 457 | 527 |
Intermittent | 83 | 86 | 110 | 140 | 176 | 216 | 256 | 365 | 394 | 504 | 558 | 570 |
flow(LPM) | 3 | 6 | 7 | 8 | 10 | 11 | 12.5 | 16.5 | ||
8 | 13 214 |
25 205 |
29 200 |
34 194 |
43 187 |
48 179 |
||||
15 |
13 406 |
25 398 |
29 391 |
34 383 |
43 374 |
48 366 |
56 353 |
75 324 |
||
20 |
13 541 |
24 534 |
29 528 |
34 521 |
43 513 |
48 500 |
56 486 |
76 458 |
||
30 |
12 814 |
24 804 |
29 792 |
34 778 |
43 763 |
48 749 |
56 726 |
76 701 |
||
35 |
12 952 |
23 944 |
28 930 |
34 913 |
43 897 |
48 879 |
56 856 |
76 833 |
||
Max Continuous Max Interminttent |
40 |
12 1090 |
23 1078 |
28 1064 |
32 1048 |
41 1024 |
47 998 |
55 977 |
75 943 |
|
45 | 11 1232 |
22 1218 |
26 1196 |
32 1175 |
41 1149 |
46 1118 |
54 1080 |
74 1044 |
||
55 | 6 1505 |
15 1494 |
22 1480 |
28 1466 |
37 1438 |
44 1406 |
52 1367 |
71 1309 |
||
60 | 3 1650 |
11 1640 |
18 1626 |
20 1603 |
30 1571 |
38 1536 |
49 1502 |
67 1466 |
flow(LPM) | 5 | 7 | 9 | 10 | 12 | 14 | 16 | 17.5 | ||
5 | 34 94 |
44 85 |
58 77 |
65 77 |
75 72 |
88 50 |
||||
10 |
36 187 |
46 178 |
62 166 |
69 162 |
79 155 |
95 138 |
108 120 |
120 99 |
||
15 |
35 285 |
49 279 |
63 271 |
73 263 |
84 252 |
102 232 |
108 213 |
121 187 |
||
20 |
34 379 |
46 377 |
60 367 |
68 363 |
82 348 |
95 332 |
109 304 |
125 272 |
||
30 |
32 578 |
43 571 |
59 563 |
66 556 |
79 544 |
94 533 |
107 502 |
121 467 |
||
Max Continuous Max Intermittent |
40 |
30 762 |
40 760 |
57 755 |
65 750 |
78 740 |
91 726 |
105 702 |
120 672 |
|
45 | 29 858 |
39 855 |
56 851 |
64 847 |
77 837 |
89 817 |
104 798 |
120 772 |
||
50 | 25 952 |
36 942 |
52 927 |
59 908 |
72 882 |
84 854 |
98 834 |
113 803 |
flow(LPM) | 5 | 7 | 9 | 10 | 12 | 14 | 16 | 17.5 | ||
5 | 44 84 |
58 67 |
76 61 |
85 61 |
99 57 |
113 55 |
||||
10 |
45 149 |
59 135 |
77 133 |
83 130 |
97 125 |
110 120 |
||||
15 |
44 224 |
60 220 |
75 218 |
81 215 |
99 213 |
108 210 |
128 207 |
|||
20 |
42 298 |
55 295 |
76 292 |
81 286 |
93 280 |
104 276 |
125 270 |
140 265 |
||
30 |
40 447 |
53 440 |
73 334 |
82 330 |
91 326 |
100 320 |
123 315 |
135 310 |
||
Max Continuous Max Intermittent |
40 |
38 596 |
52 593 |
72 585 |
80 580 |
85 572 |
95 568 |
115 560 |
130 550 |
|
45 | 35 671 |
48 665 |
70 660 |
77 654 |
80 650 |
95 642 |
110 634 |
128 624 |
||
50 | 31 745 |
45 740 |
65 735 |
73 730 |
75 725 |
90 720 |
105 715 |
120 710 |
flow(LPM) | 5 | 7 | 9 | 10 | 12 | 14 | 16 | 17.5 | ||
5 | 48 61 |
54 58 |
84 52 |
106 46 |
129 40 |
|||||
10 |
50 122 |
74 116 |
96 112 |
106 108 |
126 106 |
145 99 |
170 60 |
|||
20 |
54 243 |
76 239 |
100 231 |
109 219 |
136 206 |
152 192 |
174 176 |
193 152 |
||
30 |
52 362 |
74 358 |
96 356 |
104 350 |
128 349 |
148 335 |
172 325 |
191 300 |
||
40 |
45 484 |
70 480 |
95 478 |
104 476 |
125 470 |
146 468 |
171 440 |
188 438 |
||
Max Continuous Max Intermittent |
50 |
41 610 |
68 608 |
91 606 |
101 630 |
122 600 |
145 598 |
168 550 |
186 520 |
|
60 | 35 726 |
65 723 |
88 720 |
96 718 |
120 710 |
142 700 |
164 698 |
182 680 |
||
70 | 30 845 |
58 834 |
81 820 |
93 802 |
114 789 |
136 767 |
158 754 |
175 730 |
||
75 | 19 910 |
48 895 |
76 881 |
88 867 |
108 852 |
132 830 |
151 806 |
168 787 |
flow(LPM) | 5 | 7 | 9 | 10 | 12 | 14 | 16 | 17.5 | ||
5 | 64 49 |
90 48 |
118 46 |
134 42 |
154 38 |
|||||
10 |
65 96 |
93 94 |
122 93 |
134 91 |
156 80 |
183 60 |
210 48 |
|||
20 |
62 192 |
93 188 |
121 184 |
135 178 |
153 171 |
184 168 |
208 158 |
236 146 |
||
30 |
61 296 |
90 294 |
118 290 |
130 290 |
150 288 |
180 282 |
200 270 |
230 258 |
||
40 |
55 387 |
86 380 |
115 369 |
126 361 |
146 356 |
181 348 |
206 338 |
228 320 |
||
Max Continuous Max Intermittent |
50 |
46 484 |
77 479 |
108 472 |
121 463 |
146 452 |
181 445 |
200 428 |
221 410 |
|
60 | 34 583 |
62 567 |
98 569 |
110 555 |
136 540 |
170 536 |
186 528 |
199 516 |
||
70 | 30 680 |
63 672 |
97 662 |
110 650 |
138 640 |
170 635 |
190 620 |
210 606 |
||
75 | 20 728 |
54 720 |
90 710 |
106 695 |
130 681 |
165 667 |
188 650 |
200 634 |
flow(LPM) | 5 | 7 | 9 | 10 | 12 | 14 | 16 | 17.5 | ||
5 | 74 37 |
106 32 |
140 27 |
163 21 |
||||||
10 |
81 78 |
114 77 |
152 74 |
172 59 |
200 45 |
220 29 |
250 20 |
|||
20 |
80 157 |
114 156 |
150 154 |
170 151 |
200 146 |
221 142 |
254 120 |
292 114 |
||
30 |
78 232 |
112 230 |
149 228 |
169 222 |
198 220 |
220 218 |
252 199 |
290 170 |
||
40 |
77 312 |
111 311 |
147 307 |
168 300 |
196 298 |
218 284 |
250 270 |
288 252 |
||
Max Continuous Max Intermittent |
50 |
62 391 |
105 388 |
143 384 |
165 380 |
195 372 |
223 362 |
254 346 |
285 330 |
|
60 | 52 470 |
98 468 |
136 464 |
160 459 |
191 448 |
220 434 |
250 412 |
282 405 |
||
70 | 41 548 |
90 544 |
130 540 |
156 541 |
187 538 |
215 535 |
242 530 |
278 496 |
||
75 | 32 586 |
79 583 |
126 578 |
148 570 |
180 560 |
208 546 |
234 532 |
462 520 |
flow(LPM) | 5 | 7 | 9 | 10 | 12 | 14 | 16 | 17.5 | ||
5 | 100 29 |
142 26 |
188 21 |
207 19 |
||||||
10 |
104 62 |
146 60 |
191 58 |
211 49 |
245 45 |
282 32 |
330 25 |
|||
20 |
102 124 |
148 120 |
194 118 |
218 114 |
251 109 |
290 104 |
338 99 |
368 94 |
||
30 |
96 183 |
114 181 |
186 179 |
215 176 |
248 166 |
288 258 |
335 144 |
364 132 |
||
40 |
87 246 |
136 242 |
180 240 |
206 235 |
248 231 |
286 219 |
330 200 |
358 155 |
||
Max Continuous Max Intermittent |
50 |
70 309 |
126 307 |
172 300 |
198 295 |
238 287 |
278 278 |
320 262 |
350 247 |
|
60 | 58 371 |
111 367 |
168 359 |
191 354 |
231 346 |
271 338 |
312 323 |
342 306 |
||
70 | 47 435 |
104 430 |
160 420 |
190 415 |
228 403 |
267 393 |
301 381 |
338 365 |
||
75 | 34 470 |
91 463 |
150 450 |
180 441 |
221 431 |
261 420 |
291 405 |
328 389 |
flow(LPM) | 5 | 7 | 9 | 10 | 12 | 14 | 16 | 17.5 | ||
5 | 129 24 |
176 22 |
230 18 |
256 13 |
||||||
10 |
133 49 |
182 47 |
236 45 |
261 43 |
310 38 |
352 33 |
400 24 |
|||
20 |
131 99 |
181 97 |
232 94 |
256 92 |
308 88 |
354 83 |
400 74 |
431 64 |
||
30 |
126 149 |
176 147 |
299 144 |
252 141 |
308 135 |
353 126 |
400 113 |
430 105 |
||
40 |
112 200 |
168 197 |
224 194 |
248 191 |
304 185 |
350 174 |
393 160 |
423 151 |
||
Max Continuous Max Intermittent |
50 |
94 252 |
154 249 |
220 246 |
243 243 |
294 238 |
343 228 |
384 212 |
414 194 |
|
60 | 78 304 |
144 301 |
213 298 |
236 294 |
287 286 |
339 276 |
382 262 |
410 243 |
||
70 | 67 355 |
135 353 |
206 349 |
228 340 |
277 329 |
336 316 |
375 300 |
408 288 |
||
75 | 58 382 |
125 375 |
197 373 |
220 363 |
270 350 |
321 337 |
360 322 |
398 312 |
flow(LPM) | 5 | 7 | 9 | 10 | 11 | 12 | 14 | ||
5 | 172 20 |
240 19 |
300 18 |
380 16 |
352 15 |
||||
10 |
173 42 |
242 38 |
308 36 |
340 33 |
351 33 |
405 28 |
462 22 |
||
20 |
170 79 |
238 77 |
301 75 |
339 72 |
350 71 |
402 69 |
460 61 |
||
30 |
160 117 |
231 114 |
298 111 |
330 109 |
347 108 |
398 103 |
455 95 |
||
40 |
141 157 |
221 155 |
298 153 |
327 150 |
342 148 |
394 146 |
445 135 |
||
Max Continuous Max Intermittent |
50 |
122 196 |
206 193 |
287 190 |
321 177 |
330 175 |
382 170 |
438 163 |
|
60 | 101 236 |
190 233 |
278 230 |
312 227 |
328 225 |
369 221 |
424 208 |
||
70 | 86 276 |
176 273 |
262 270 |
298 266 |
302 264 |
353 255 |
416 245 |
||
75 | 60 297 |
163 294 |
254 290 |
286 286 |
291 282 |
345 277 |
410 266 |
flow(LPM) | 3 | 5 | 7 | 9 | 10 | 11 | ||
5 | 110 14 |
199 12 |
||||||
10 |
108 31 |
190 30 |
272 29 |
360 28 |
400 26 |
451 25 |
||
20 |
110 61 |
196 60 |
279 59 |
356 57 |
396 55 |
448 53 |
||
30 |
106 91 |
186 90 |
270 89 |
355 86 |
390 84 |
442 82 |
||
40 |
100 123 |
179 122 |
262 120 |
350 117 |
382 112 |
436 110 |
||
Max Continuous Max Interminttent |
50 |
92 154 |
169 153 |
252 151 |
342 147 |
373 140 |
432 136 |
|
60 | 86 185 |
159 184 |
241 182 |
339 177 |
369 172 |
428 170 |
||
70 | 77 217 |
146 216 |
235 213 |
324 208 |
342 201 |
412 200 |
||
75 | 66 232 |
132 231 |
212 228 |
303 222 |
332 216 |
402 214 |
flow(LPM) | 3 | 4 | 6 | 7 | 8 | 9 | ||
5 | 152 12 |
|||||||
10 |
154 24 |
205 21 |
308 18 |
349 17 |
||||
20 |
150 49 |
201 48 |
302 47 |
340 46 |
392 44 |
441 41 |
||
30 |
146 73 |
198 74 |
296 73 |
331 72 |
387 70 |
438 67 |
||
40 |
140 98 |
191 97 |
290 96 |
320 95 |
381 94 |
421 92 |
||
Max Continuous Max Intermittent |
50 |
132 122 |
182 121 |
281 118 |
315 115 |
376 112 |
402 110 |
|
60 | 128 145 |
175 145 |
270 143 |
310 140 |
260 135 |
390 130 |
||
70 | 110 170 |
170 168 |
260 165 |
300 163 |
340 160 |
380 155 |
||
75 | 98 181 |
163 180 |
232 178 |
291 175 |
320 174 |
355 170 |
flow(LPM) | 3 | 4 | 6 | 7 | 8 | 9 | ||
4 | 194 6 |
285 4 |
||||||
10 |
201 15 |
304 14 |
391 14 |
443 12 |
512 9 |
574 7 |
||
20 |
191 40 |
280 40 |
372 39 |
418 37 |
493 33 |
546 31 |
||
30 |
185 60 |
272 60 |
360 58 |
412 56 |
486 53 |
541 50 |
||
40 |
172 80 |
261 80 |
343 79 |
408 76 |
480 73 |
538 70 |
||
Max Continuous Max Intermittent |
50 |
160 101 |
241 100 |
332 98 |
391 96 |
466 93 |
528 90 |
|
60 | 134 121 |
213 120 |
305 119 |
371 117 |
438 114 |
496 110 |
||
70 | 111 142 |
189 141 |
292 139 |
344 137 |
418 135 |
475 131 |
||
75 | 83 152 |
154 151 |
241 150 |
312 149 |
389 147 |
448 144 |
1 | 2 | 3 | 4 | 5 | 6 | 7 | 8 | ||||||
Code | Displ.(CC/r) | Flange | Pilot Dia. | Output Shaft | Port and Drain Port | Rotation Direction |
Paint | ||||||
BMP | 50 | F1 | 4-φ11 Bolt Flange Distribution 70x70 |
G1 | φ80 |
A1 | Cylindrical Shaft φ25 Parallel key 8x7x32 |
P1 | (A/B) G1/2 (T) G1/4 |
R | Standard | N | No paint |
63 | |||||||||||||
80 | A2 | 6D-φ25X21X6 Splined shaft |
P2 | (AB)7/8-14 O-ing (T)7/16-20UNF |
|||||||||
100 | |||||||||||||
125 | F2 | 2 Bolt Flange φ13.5 Dia.Mounting Holes 106.4 Dia.B.C |
G2 | φ82.55 |
Q | Blue |
|||||||
160 | |||||||||||||
200 | A3 | Cylindrical shaft φ20 Parallel key 6x6x32 |
P3 | (A/B) 1/2-14NPTF (T) 7/16-20UNF |
|||||||||
250 | F3 | 4-φ11 Bolt rectangle Flange Distribution 105x65 | A4 | φ25.325x21.47x6.25 Splined shaft (SAE-6B) |
P4 | (AB)G1/2 O-ring (T)G1/4 |
|||||||
320 | G3 | φ85 |
L | Opposite | B | Black |
|||||||
400 | F4 | 4 Bolt Magneto φ13.5 Dia,Mounting Holes 106.4 Dia.B.C |
A5 | Cylindrical shaft φ25.4 Parallel key 6.35x6.35x32 Shaft head thread M8 |
P5 | (A/B) M18X1.5 (T) M14X1.5 |
|||||||
500 | A6 | Cylindrical shaft φ25.4 Parallel key 6.35x6.35x32 Shaft head thread 1/4-20UNC |
P6 | (A/B)M22X1.5 (T) M14X1.5 |
S | Silver gray |
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.