The installation flange of the motor is designed in the middle of the housing, which allows the motor to be almost completely installed into the mechanical gearbox, providing a very compact component. No need to consider installation tolerances. And it is easy to assemble, just "insert" the mechanical gearbox.
Used for installation in mechanical gearboxes such as track drive gearboxes.
Displacement |
Vg |
ml/r |
Max.Speed |
nmax |
r/min |
Max.flow |
Qmax |
L/min |
Torque constants |
Mk |
Nm/MPa |
Max.Torque; △p=35MPa |
M |
Nm |
Product features
◉ Oil filtration: The recommended filtration accuracy is 10 μ m. Coarse filters between 25-40um can be used, but using a 10 μ m filter can extend the service life (reduce wear).
◉ Speed range: The minimum speed n is not limited. If uniform rotation is required, n should not be less than 50rpm.
◉ Compact structure: The A2FE series inclined shaft dosing motors are characterized by compact structure and small size because the mounting flange is designed in the middle of the casing and the mounting part can be hidden deep inside the machine.
◉ High speed and high pressure: A2FE hydraulic motors offer high power density and total efficiency with high initial efficiency. Its robust bearing system and compact structural design give the motor a long service life and high stability.
Specifications
Size |
|
|
55 |
80 |
107 |
125 |
160 |
Displacement |
Vg |
ml/r |
54.8 |
80 |
107 |
126.3 |
160 |
Max.Speed |
nmax |
r/min |
3750 |
3350 |
3000 |
3000 |
2650 |
Max.flow |
Qmax |
L/min |
206 |
268 |
321 |
379 |
424 |
Torque constants |
Mk |
Nm/MPa |
8.71 |
12.74 |
16.97 |
20.1 |
25.4 |
Max.Torque |
M |
Nm |
305 |
446 |
594 |
703.50 |
889 |
Max.Power |
P |
kw |
120 |
156 |
187 |
221 |
247 |
Moment of inertia |
J |
Kgm² |
0.0052 |
0.0109 |
0.0167 |
0.0322 |
0.0532 |
Weight(approx) |
|
Kg |
|
|
|
|
|
Technical Data
Theoretical values, not considering efficiency and tolerances; data rounded:
Technical Data/Specifications |
code |
unit |
28 |
32 |
45 |
56 |
63 |
80 |
|
Geometric displacement per revolution |
Vg |
cm³ |
28.1 |
32 |
45.6 |
56.1 |
63 |
80.4 |
|
Max.speed |
nnom |
rpm |
6300 |
6300 |
5600 |
5000 |
5000 |
4500 |
|
nmax2) |
rpm |
6900 |
6900 |
6200 |
5500 |
5500 |
5000 |
||
Input flow |
at nnom and Vg |
qv |
L/min |
177 |
202 |
255 |
281 |
315 |
362 |
Torque |
△p=350 bar |
T |
Nm |
157 |
178 |
254 |
313 |
351 |
448 |
△p=400 bar |
T |
Nm |
179 |
204 |
290 |
357 |
401 |
512 |
|
Rotational rigidity |
c |
kNm/rad |
2.93 |
3.12 |
4.18 |
5.94 |
6.25 |
8.73 |
|
Rotating Assembly Moment of Inertia |
JGR |
kgm² |
0.0012 |
0.0012 |
0.0024 |
0.0042 |
0.0042 |
0.0072 |
|
Maximum angular velocity |
a |
rad/s² |
6500 |
6500 |
14600 |
7500 |
7500 |
6000 |
|
Filling capacity |
V |
L |
0.2 |
0.2 |
0.33 |
0.45 |
0.45 |
0.55 |
|
Weight |
Approx. |
m |
kg |
10.5 |
10.5 |
15 |
18 |
19 |
23 |
Technical Data/Specifications |
code |
unit |
90 |
107 |
125 |
160 |
180 |
|
Geometric displacement per revolution |
Vg |
cm³ |
90 |
106.7 |
125 |
160.4 |
180 |
|
Max.speed |
nnom |
rpm |
4500 |
4000 |
4000 |
3600 |
3600 |
|
nmax2) |
rpm |
5000 |
4400 |
4400 |
4000 |
4000 |
||
Input flow |
At nnom and Vg |
qv |
L/min |
405 |
427 |
500 |
577 |
648 |
Torque |
△p=350 bar |
T |
Nm |
501 |
594 |
696 |
893 |
1003 |
△p=400 bar |
T |
Nm |
573 |
679 |
796 |
1021 |
1146 |
|
Rotational rigidity |
c |
kNm/rad |
9.14 |
11.2 |
11.9 |
17.4 |
18.2 |
|
Rotating Assembly Moment of Inertia |
JGR |
kgm² |
0.0072 |
0.0116 |
0.0116 |
0.022 |
0.022 |
|
Maximum angular acceleration |
a |
rad/s² |
6000 |
4500 |
4500 |
3500 |
3500 |
|
Filling capacity |
V |
L |
0.55 |
0.8 |
0.8 |
1.1 |
1.1 |
|
Weight |
Approx. |
m |
kg |
25 |
34 |
36 |
47 |
48 |
Note on labeling | ||||||||||||
1) Values apply: |
2) Intermittent maximum speed: overspeed during unloading and overhaul, t<5 seconds and Δp<150 bar |
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Vopn=16~36mm²/s; In the optimum viscosity range:Vopn=16~36mm²/s |
3) Limit the inlet flow with a balancing valve. |
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Application of mineral oil-based hydraulic fluids |
4) Without radial force torque. |
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Notes |
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Operating in excess of the maximum permissible values or below the minimum permissible values may result in loss of function, shortened service life, or complete damage to the variable hydraulic motor. |
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Other permissible limit values, including limiting speed variations, frequency-dependent angular acceleration reduction and permissible start-up angular acceleration (below maximum angular acceleration), can be found in the data sheet. |
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