
Flange Hydraulic Motor
The hydraulic motor is an important component in the hydraulic system. It is widely used in various machinery, such as construction equipment, mining equipment, and agricultural machinery. Among the hydraulic motors available, the Flange Hydraulic Motor is a popular one known for its durability and high efficiency.
- Product Introduction
Flange Hydraulic Motor
The liquid machinery is an important facility in the liquid manufacturing system, and is equipped with various types of machinery, such as engineering machinery for transportation, mill equipment, and agricultural machinery. In the multi-liquid type, the legal liquid type has high durability and high efficiency.
It is a liquid machine equipped with various legal equipment and equipment. The special feature of its design is that the low flow capacity also provides high drop-off and high-load speed, so this meets the emergency demand for low-speed and high-drop usage scenarios. It is the basis of the liquid pressure principle, and the liquid pressure of the liquid pressure is changed to the mechanical function.
The author of the book is the best version of the story. Due to its small space, it is suitable for use in narrow spaces. We are equipped with all kinds of machinery, suitable for both indoor and outdoor environments. The size of the scale is not convenient, so the demand is low, and the demand is low, so the book is completed.
It's a great success for the liquid. Manufactured with high-quality materials to ensure durability and long-lasting performance. The outer shell is usually made of high strength steel alloy or steel, and the internal components are made of high quality steel. We have designed and maintained a variety of high-quality and high-quality structures, so we will be able to accept and maintain high-quality equipment.
The equipment has high efficiency, and is suitable for emergency demand and high efficiency. Its high efficiency means that it has a large proportion of liquid flow rate and mechanical function, and then it lowers the total amount of liquid flow and reduces the consumption of the liquid. In addition, the highly effective driving characteristics come with low noise performance, making it ideal for the environment that is sensitive to noise.
The universality of the law is also a great success. Due to the wide variety of applications available, different equipment requirements may be required.
For example, we are equipped with transportation systems, trains, lifting machines, and other heavy machinery for transportation. It is an ideal choice for a wide range of applications, and is suitable for many industries. However, it is a highly effective and useful combination, and each line can be used for various purposes. Its structure is strong, durable, highly efficient and flexible, making it an ideal choice for heavy-duty machinery (especially for high demand and low-speed operation). Liquid manufacturing is a key component in the liquid manufacturing system, its outstanding manufacturing quality, its ability to pursue long-lasting performance and long-lasting use, which is a good investment.
ZMV Series
Structure Features
◎ Endface distribution cycloid hydraulic motor;
◎ Advanced column stator and rotor parameters design, with low starting pressure, high efficiency and stable low speed operation;
◎ Advanced shaft seal design,with high back pressure bearing capacity;
◎ Advanced and reliable linkage shaft design,with a long motor service life;
◎ Advanced oil distribu tion mechanism design, with high oil distribution precision and automatic wear compensation;
◎ The motor can be used in series and parallel; when they are connected in series, they should be connected to the external drain pipe.
◎ Multiple installation forms of Flanges, output shafts, ports, and etc.
Main Specification
|
Displacement |
310 |
400 |
500 |
630 |
800 |
1000 |
1250 |
1600 |
|
|
Flow, LPM |
Cont. |
150 |
150 |
150 |
150 |
150 |
150 |
150 |
150 |
|
Int. |
225 |
225 |
225 |
225 |
225 |
225 |
225 |
225 |
|
|
Speed, RPM |
Cont. |
435 |
346 |
276 |
216 |
168 |
135 |
110 |
80 |
|
Int. |
653 |
519 |
413 |
324 |
240 |
200 |
160 |
110 |
|
|
Pressure, MPa |
Cont. |
20 |
20 |
20 |
20 |
20 |
20 |
16 |
15 |
|
Int. |
25 |
25 |
25 |
25 |
25 |
25 |
20 |
20 |
|
|
Torque, Nm |
Cont. |
840 |
1050 |
1350 |
1690 |
2150 |
2700 |
2500 |
3050 |
|
Int. |
1050 |
1300 |
1650 |
2115 |
2700 |
3300 |
3080 |
3550 |
|
|
Max. allowable back pressure |
10MPa |
||||||||
◎ The intermittent operating pressure refers to the Max. allowable operating pressure at the motor inlet port, and the continuous operating pressure refers to the pressure difference between the inlet port and the return port.
◎ Do not operate the motor at the Max. speed and the Max. pressure at the same time.
◎ The motor operating time per minute must not exceed 10% under intermittent operating conditions.
◎ Recommended oil: anti-wear hydraulic oil; Viscosity: 37-73cst; Oil cleanliness: IS018/13.
◎ Max. oil temperature: 80℃.
◎ The series motor adopt special imported shaft seal assembly. The Max. allowable back pressure of the motor can be up to 10MPa; however, in order to obtain the good service life and comprehensive mechanical performances, the back pressure should not exceed 5MPa. If it is exceeded, it is recommended to connect the external drain pipe; when connecting the external drain pipe, ensure that the motor is always filled with oil. When connecting the external drain pipe, in addition to maintaining a low back pressure, the wear contaminants generated inside the motor can be removed and a certain cooling effect can be achieved.
◎ There should be a running-in period before the motor is operated at full load. It is recommended to run for 1h at 30% of the Max. operating pressure.
ZMV Series Motor Performance Data at Different Operating Points
Cont.
Int.
310 cc/r
|
Pressure difference, ΔBar |
||||||||
|
3.5 |
7 |
10 |
14 |
18 |
20 |
24 |
||
|
Flow, LPM |
10 |
140 |
294 |
440 |
610 |
742 |
845 |
1000 |
|
26 |
24 |
23 |
22 |
20 |
17 |
14 |
||
|
20 |
153 |
314 |
466 |
636 |
787 |
895 |
1070 |
|
|
55 |
54 |
53 |
52 |
51 |
48 |
44 |
||
|
50 |
149 |
312 |
465 |
654 |
815 |
935 |
1112 |
|
|
145 |
144 |
142 |
140 |
137 |
133 |
127 |
||
|
75 |
143 |
304 |
458 |
642 |
816 |
940 |
1119 |
|
|
220 |
218 |
215 |
211 |
207 |
202 |
195 |
||
|
100 |
136 |
297 |
452 |
636 |
810 |
936 |
1108 |
|
|
294 |
292 |
290 |
287 |
283 |
278 |
270 |
||
|
125 |
123 |
286 |
442 |
626 |
799 |
921 |
1093 |
|
|
368 |
366 |
364 |
361 |
357 |
352 |
345 |
||
|
150 |
114 |
275 |
435 |
615 |
788 |
906 |
1078 |
|
|
445 |
443 |
441 |
437 |
430 |
422 |
410 |
||
|
160 |
107 |
268 |
430 |
608 |
780 |
895 |
1070 |
|
|
475 |
473 |
470 |
466 |
460 |
452 |
439 |
||
|
200 |
82 |
249 |
412 |
593 |
758 |
871 |
1047 |
|
|
596 |
594 |
590 |
584 |
576 |
565 |
544 |
||
400 cc/r
|
Pressure difference, ΔBar |
||||||||
|
3.5 |
7 |
10 |
14 |
18 |
20 |
24 |
||
|
Flow, LPM |
10 |
183 |
385 |
568 |
776 |
968 |
1101 |
1292 |
|
20 |
20 |
19 |
18 |
17 |
16 |
14 |
||
|
20 |
196 |
398 |
590 |
815 |
1010 |
1152 |
1346 |
|
|
44 |
44 |
43 |
42 |
40 |
39 |
37 |
||
|
50 |
200 |
402 |
603 |
842 |
1040 |
1186 |
1430 |
|
|
114 |
113 |
113 |
112 |
110 |
108 |
103 |
||
|
75 |
195 |
394 |
596 |
838 |
1043 |
1188 |
1432 |
|
|
175 |
173 |
170 |
166 |
163 |
1579 |
152 |
||
|
100 |
172 |
385 |
593 |
827 |
1036 |
1184 |
1425 |
|
|
236 |
235 |
233 |
231 |
227 |
223 |
215 |
||
|
125 |
167 |
374 |
583 |
816 |
1021 |
1177 |
1413 |
|
|
296 |
294 |
291 |
288 |
282 |
275 |
268 |
||
|
150 |
158 |
361 |
559 |
801 |
1008 |
1165 |
1390 |
|
|
355 |
354 |
352 |
349 |
344 |
335 |
324 |
||
|
175 |
143 |
346 |
553 |
784 |
989 |
1145 |
1377 |
|
|
416 |
414 |
411 |
407 |
403 |
396 |
388 |
||
|
200 |
118 |
331 |
536 |
770 |
969 |
1128 |
1356 |
|
|
475 |
473 |
469 |
463 |
455 |
448 |
439 |
||
|
240 |
82 |
301 |
506 |
740 |
943 |
1104 |
1332 |
|
|
571 |
569 |
565 |
548 |
539 |
530 |
520 |
||
500 cc/r
|
Pressure difference, ΔBar |
||||||||
|
3.5 |
7 |
10 |
14 |
18 |
20 |
24 |
||
|
Flow, LPM |
10 |
242 |
486 |
696 |
959 |
1190 |
1353 |
1607 |
|
17 |
17 |
16 |
16 |
15 |
13 |
11 |
||
|
20 |
245 |
501 |
738 |
1003 |
1232 |
1394 |
1658 |
|
|
36 |
35 |
35 |
34 |
33 |
32 |
29 |
||
|
50 |
240 |
500 |
758 |
1025 |
1270 |
1449 |
1743 |
|
|
93 |
92 |
91 |
90 |
88 |
85 |
80 |
||
|
75 |
233 |
498 |
752 |
1030 |
1288 |
1475 |
1766 |
|
|
140 |
139 |
137 |
135 |
132 |
127 |
120 |
||
|
100 |
228 |
491 |
748 |
1026 |
1289 |
1472 |
1760 |
|
|
189 |
187 |
185 |
182 |
182 |
173 |
166 |
||
|
125 |
220 |
483 |
742 |
1014 |
1280 |
1460 |
1745 |
|
|
237 |
236 |
234 |
231 |
227 |
223 |
216 |
||
|
150 |
201 |
465 |
723 |
1008 |
1250 |
1429 |
1736 |
|
|
287 |
286 |
284 |
281 |
276 |
270 |
260 |
||
|
175 |
182 |
446 |
711 |
997 |
1238 |
1406 |
1715 |
|
|
335 |
334 |
332 |
329 |
325 |
320 |
310 |
||
|
200 |
161 |
423 |
676 |
974 |
1218 |
1385 |
1697 |
|
|
384 |
383 |
381 |
378 |
374 |
366 |
354 |
||
|
240 |
120 |
378 |
622 |
921 |
1172 |
1340 |
1650 |
|
|
461 |
459 |
457 |
454 |
450 |
444 |
432 |
||
The motor is highly efficient at all operating points with specified data, but it is recommended to operate it in the continuous operating area for the optimum efficiency and long service life.
630 cc/r
|
Pressure difference, ΔBar |
||||||||
|
3.5 |
6 |
9 |
12 |
15 |
18 |
21 |
||
|
Flow, LPM |
10 |
280 |
522 |
812 |
1100 |
1268 |
1549 |
1784 |
|
14 |
13 |
13 |
12 |
12 |
11 |
10 |
||
|
20 |
288 |
552 |
839 |
1101 |
1315 |
1607 |
1864 |
|
|
28 |
28 |
27 |
27 |
26 |
24 |
22 |
||
|
50 |
289 |
555 |
868 |
1137 |
1364 |
1682 |
1956 |
|
|
72 |
72 |
71 |
69 |
68 |
66 |
62 |
||
|
75 |
270 |
548 |
863 |
1120 |
1352 |
1680 |
1964 |
|
|
109 |
108 |
106 |
104 |
102 |
99 |
94 |
||
|
100 |
264 |
538 |
856 |
1093 |
1350 |
1674 |
1965 |
|
|
146 |
145 |
143 |
141 |
138 |
135 |
130 |
||
|
125 |
251 |
516 |
837 |
1071 |
1336 |
1659 |
1950 |
|
|
184 |
183 |
181 |
179 |
177 |
173 |
168 |
||
|
150 |
270 |
495 |
817 |
1063 |
1330 |
1650 |
1928 |
|
|
221 |
220 |
219 |
217 |
215 |
212 |
205 |
||
|
175 |
210 |
485 |
796 |
1052 |
1300 |
1636 |
1908 |
|
|
259 |
258 |
257 |
254 |
250 |
246 |
241 |
||
|
200 |
182 |
469 |
751 |
1018 |
1280 |
1611 |
1883 |
|
|
297 |
297 |
295 |
293 |
290 |
284 |
273 |
||
|
240 |
130 |
416 |
712 |
978 |
1237 |
1563 |
1835 |
|
|
358 |
357 |
355 |
351 |
346 |
340 |
332 |
||
The above data are measured at the oil temperature of 50℃ and with 68# anti-wear hydraulic oil; for different motors, the data will be slightly different.
ZMV Series Motor Performance Data at Different Operating Points
Cont.
Int.
800 cc/r
|
Pressure difference, ΔBar |
||||||||
|
2.5 |
5 |
8 |
10 |
13 |
16 |
18 |
||
|
Flow, LPM |
10 |
278 |
565 |
830 |
1095 |
1405 |
1712 |
1915 |
|
11 |
10 |
10 |
9 |
8 |
8 |
7 |
||
|
20 |
282 |
571 |
845 |
1150 |
1456 |
1783 |
1994 |
|
|
23 |
22 |
22 |
21 |
20 |
18 |
16 |
||
|
50 |
288 |
582 |
856 |
1162 |
1463 |
1790 |
2001 |
|
|
60 |
59 |
57 |
56 |
54 |
52 |
48 |
||
|
75 |
269 |
580 |
855 |
1165 |
1465 |
1786 |
1993 |
|
|
91 |
90 |
89 |
87 |
84 |
81 |
77 |
||
|
100 |
251 |
566 |
840 |
1140 |
1448 |
1767 |
1985 |
|
|
122 |
121 |
120 |
118 |
115 |
111 |
105 |
||
|
125 |
242 |
535 |
824 |
1118 |
1427 |
1739 |
1976 |
|
|
153 |
152 |
150 |
147 |
143 |
139 |
133 |
||
|
150 |
236 |
526 |
808 |
1102 |
1401 |
1714 |
1959 |
|
|
185 |
183 |
181 |
178 |
174 |
169 |
163 |
||
|
175 |
215 |
504 |
793 |
1079 |
1377 |
1698 |
1936 |
|
|
216 |
214 |
212 |
209 |
206 |
203 |
193 |
||
|
200 |
197 |
468 |
765 |
1063 |
1362 |
1681 |
1913 |
|
|
247 |
245 |
243 |
240 |
237 |
232 |
225 |
||
|
240 |
118 |
388 |
713 |
1020 |
1318 |
1637 |
1838 |
|
|
297 |
296 |
295 |
293 |
288 |
283 |
277 |
||
The motor is highly efficient at all operating points with specified data, but it is recommended to operate it in the continuous operating area for the optimum efficiency and long service life.
1000 cc/r
|
Pressure difference, ΔBar |
|||||||
|
2.5 |
5 |
7 |
10 |
14 |
16 |
||
|
Flow, LPM |
10 |
312 |
640 |
971 |
1400 |
1978 |
2259 |
|
9 |
9 |
9 |
8 |
7 |
6 |
||
|
20 |
320 |
648 |
978 |
1410 |
1980 |
2270 |
|
|
28 |
27 |
26 |
25 |
23 |
21 |
||
|
50 |
326 |
655 |
992 |
1422 |
2015 |
2280 |
|
|
47 |
46 |
45 |
43 |
41 |
38 |
||
|
75 |
318 |
642 |
987 |
1425 |
2003 |
2276 |
|
|
72 |
71 |
70 |
68 |
66 |
63 |
||
|
100 |
309 |
634 |
983 |
1418 |
1994 |
2243 |
|
|
98 |
97 |
95 |
93 |
90 |
86 |
||
|
125 |
303 |
624 |
975 |
1409 |
1988 |
2224 |
|
|
123 |
122 |
120 |
117 |
114 |
110 |
||
|
150 |
278 |
602 |
961 |
1368 |
1963 |
2208 |
|
|
149 |
148 |
146 |
144 |
140 |
133 |
||
|
175 |
264 |
580 |
946 |
1338 |
1925 |
2159 |
|
|
174 |
172 |
170 |
166 |
162 |
155 |
||
|
200 |
230 |
556 |
912 |
1300 |
1891 |
2105 |
|
|
199 |
196 |
193 |
190 |
185 |
178 |
||
|
240 |
166 |
513 |
867 |
1267 |
1825 |
2034 |
|
|
240 |
237 |
233 |
229 |
225 |
218 |
||
The above data are measured at the oil temperature of 50℃ and with 68# anti-wear hydraulic oil; for different motors, the data will be slightly different.
|
Displacement, cc/r |
310 |
400 |
500 |
630 |
800 |
1000 |
1250 |
1600 |
|
L mm |
235.8 |
242.3 |
251.8 |
261.8 |
275.8 |
291.8 |
307.8 |
341 |
Standard direction of rotation: When facing shaft end of motor, shaft to rotate clockwise when the oil is fed at port A and discharged at port B, and vice versa.
ZMV Series Standard Motor - Flange Dimensions and Mounting Data

Note: When a motor is ordered, the model and product number should be selected in the Motor Ordering Information based on the reference dimensions in the above figure; if the corresponding Dimensions and Mounting Data and product number can not be found in the ordering specifications, please contact the company marketing department.
ZMV Series Standard Motor - Port Dimensions and Mounting Data

|
Port number |
Y01 |
Y02 |
Y03 |
|
Main port D |
M33×2 |
G1 |
15/16-12 |
|
External drain port C |
M14×1.5 |
G1/4 |
7/16-20 |
Hot Tags: flange hydraulic motor, China flange hydraulic motor manufacturers, factory, hydraulic motor accessories, hydraulic motor gears, hydraulic motor working pressure, hydraulic motor fluid compatibility, omm hydraulic orbital motor, hydraulic motor displacement








