Belt pulley decoupler
20210239201 · 2021-08-05
Assignee
Inventors
Cpc classification
F16F3/04
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16D3/12
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16F2238/026
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16D41/206
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16D3/72
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16H2055/366
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16H55/36
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16F2238/024
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
Abstract
A belt pulley decoupler (1) for the transfer of torque between the belt of a belt drive and a shaft (2) in drive connection therewith, includes: a hub (5) to be fastened to the shaft, a belt pulley (3) rotatably mounted on the hub, and two helical torsion springs (18, 19) which transfer the torque between the belt pulley and the hub and are connected in parallel.
Claims
1. A belt pulley decoupler for transfer of torque between a belt of a belt drive and a shaft, having: a hub configured to be fastened to the shaft, a belt pulley rotatably mounted on the hub, and inner and outer helical torsion springs which transfer the torque between the belt pulley and the hub, wherein the inner helical torsion spring has first and second torsion spring ends, the outer helical torsion spring has third and fourth torsion spring ends, and the helical torsion springs are connected in parallel.
2. The belt pulley decoupler according to claims 1, wherein the helical torsion springs transfer the torque both from the belt pulley to the hub and from the hub to the belt pulley.
3. The belt pulley decoupler according to claim 1, wherein the belt pulley has a poly-V profile as a belt pick-up, wherein the helical torsion springs are designed as a spring set and an inner diameter of the outer helical torsion spring is larger than a diameter of the poly-V profile.
4. The belt pulley decoupler according to claim 3, wherein an outer diameter of the inner helical torsion spring is larger than the diameter of the poly-V profile.
5. The belt pulley decoupler according to claim 3, wherein the belt pulley comprises a first belt pulley part on which the poly-V profile is formed, and a second belt pulley part which is connected in a rotationally fixed manner to the first belt pulley part and to which the first and third torsion spring ends are connected in a rotationally fixed manner.
6. The belt pulley decoupler according to claim 1, whererin the hub comprises a first hub part configured to be fastened to the shaft and a second hub part connected to the first hub part in a rotationally fixed manner and to which the second and fourth spring ends are connected in a rotationally fixed manner.
7. The belt pulley decoupler according to claim 1, wherein the inner and outer helical torsion springs are wound in a same direction.
8. A belt pulley decoupler comprising: a hub configured to be fastened to a shaft, a pulley rotatably mounted on the hub, an inner helical torsion springs having a first end rotationally fixed to the pulley and a second end rotationally fixed to the hub, and an outer helical torsion spring radially outside the inner helical torsion spring and wound in a same direction as the inner helical torsion spring, the outer helical torsion spring having a third end rotationally fixed to the pulley and a fourth end rotationally fixed to the hub.
9. The belt pulley decoupler according to claim 8, wherein the pulley has a poly-V profile as a belt pick-up, and an inner diameter of the outer helical torsion spring is larger than an outer diameter of the poly-V profile.
10. The belt pulley decoupler according to claim 9, wherein an outer diameter of the inner helical torsion spring is larger than the outer diameter of the poly-V profile.
11. The belt pulley decoupler according to claim 8, wherein the pulley comprises a first pulley part on which a poly-V profile is formed, and a second pulley part which is connected in a rotationally fixed manner to the first belt pulley part and to which the first and third torsion spring ends are connected in a rotationally fixed manner.
12. The belt pulley decoupler according to claim 11, wherein second pulley part includes an outer cylinder radially outside the outer helical torsion spring.
13. The belt pulley decoupler according to claim 11, wherein second pulley part includes an inner cylinder radially inside the inner helical torsion spring.
14. The belt pulley decoupler according to claim 8, wherein the hub comprises a first hub part configured to be fastened to the shaft and a second hub part connected to the first hub part in a rotationally fixed manner and to which the second and fourth spring ends are connected in a rotationally fixed manner.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0011] Further features result from the following description and the figures, in which an exemplary embodiment of a belt pulley decoupler is shown. Here shown in perspective:
[0012]
[0013]
[0014]
[0015]
DETAILED DESCRIPTION
[0016] The belt pulley decoupler 1 shown in
[0017] The radial bearing of the belt pulley 3 on the hub 5 is accomplished via a double-row needle bearing 10, which is arranged in the axial region of the poly-V profile 4. The needle bearing 10 is formed with a bearing inner ring 11 pressed onto the hub 5, a bearing outer ring 12 pressed into the belt pulley 3, and two needle roller rings 13 and 14 which roll therein as a ready-to-assemble unit. The axial mounting of the belt pulley 3 on the hub 5 is accomplished via a radially outwardly extending collar 15 of the bearing inner ring 11, which on the one hand serves as a run-up for a support ring 16 pressed into the belt pulley 3 and on the other hand serves as a run-up for a radially inwardly extending collar 17 of the outer bearing ring 12.
[0018] The belt pulley decoupler 1 further comprises two parallel helical torsion springs 18 and 19 which, depending on the operating mode of the starter generator, transfer torque between the shaft 2 and the belt, wherein the spring elasticity decouples the starter generator from the torsional vibrations of the crankshaft. In the starting and boost mode, the torque is transfered from the shaft 2 to the belt via the hub 5—the helical torsion springs 18, 19—the belt pulley 3 and in generator mode from the belt to the shaft 2 via the belt pulley 3—the helical torsion springs 18, 19—the hub 5.
[0019] The helical torsion springs 18, 19 form the spring set shown in
[0020] Due to the comparatively large spring diameter, the belt pulley 3 and the hub 5 are each formed of several parts. The belt pulley 3 comprises a first belt pulley part 20 with the poly-V profile 4 formed thereon and a second belt pulley part 21, which is connected in a rotationally fixed manner to the first belt pulley part 20 and which is formed as a spring plate 22 (see
[0021] As can be seen in
[0022] The second belt pulley part 21, at the end thereof remote from the generator, has a stepped enlargement in diameter 38 into which a protective cap 39 is snapped after the belt pulley decoupler 1 has been screwed onto the shaft 2.
LIST OF REFERENCE SYMBOLS
[0023] 1 Belt pulley decoupler [0024] 2 Shaft [0025] 3 Belt pulley [0026] 4 Poly-V profile [0027] 5 Hub [0028] 6 Internal thread [0029] 7 Internal serration [0030] 8 Locking sleeve [0031] 9 External serration [0032] 10 Needle bearing [0033] 11 Bearing inner ring [0034] 12 Bearing outer ring [0035] 13 Needle roller ring [0036] 14 Needle roller ring [0037] 15 Collar [0038] 16 Support ring [0039] 17 Collar [0040] 18 Helical torsion spring [0041] 19 Helical torsion spring [0042] 20 First belt pulley part [0043] 21 Second belt pulley part [0044] 22 Spring plate [0045] 23 First helical torsion spring end [0046] 24 Second helical torsion spring end [0047] 25 First hub part [0048] 26 Second hub part [0049] 27 Spring plate [0050] 28 Helical torsion spring end [0051] 29 Helical torsion spring end [0052] 30 Receptacle [0053] 31 Receptacle [0054] 32 Receptacle [0055] 33 Receptacle [0056] 34 End face [0057] 35 End face [0058] 36 End face [0059] 37 End face [0060] 38 Extension [0061] 39 Protective cap