ELECTROMECHANICAL ROTATIONAL DAMPER WITH TENSION AND COMPRESSION STOP
20170072758 ยท 2017-03-16
Assignee
Inventors
Cpc classification
B60G2300/60
PERFORMING OPERATIONS; TRANSPORTING
F16F15/035
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16F15/03
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B60G2202/30
PERFORMING OPERATIONS; TRANSPORTING
B60G2204/4191
PERFORMING OPERATIONS; TRANSPORTING
F16F15/022
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B60G13/14
PERFORMING OPERATIONS; TRANSPORTING
International classification
F16F15/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B60G13/14
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A rotational damper includes a damper housing surrounding an electromagnetic damper motor and connected to a first mass via a fastening part; a coupling lever supported for pivoting relative to the damper housing and connected with a second mass; a strain wave gear mechanism for damping vibrations and including a rigid unit having an internal spline and being connected with the damper housing, and a flexible unit having an external spline and being fastened with the fastening part, wherein the first and second units are coupled with each other via the internal and external splines; a wave generator rotatably supported in the flexible unit, wherein a rotation of the wave generator causes a deformation of the flexible unit; and a wrap spring connected on one side in rotative fixed relationship with the coupling lever, and on another side connected in rotative fixed relationship with the fastening part, wherein at a predetermined pivoting of the coupling lever relative to the fastening part the wrap spring deforms the flexible unit thereby blocking the strain wave gear mechanism.
Claims
1.-7. (canceled)
8. A rotational damper, comprising: a damper housing in surrounding relationship with an electromagnetic damper motor and connected to a first mass via a fastening part; a coupling lever supported for pivoting relative to the damper housing and connected with a second mass; a strain wave gear mechanism for damping vibrations comprising a rigid unit having an internal spline and being connected with the damper housing, and a flexible unit having an external spline and being fastened with the fastening part, said first and second units being coupled with each other via the internal and external splines; a wave generator rotatably supported in the flexible unit, wherein a rotation of the wave generator causes a deformation of the flexible unit; and a wrap spring connected on one side in rotative fixed relationship with the coupling lever, and on another side connected in rotative fixed relationship with the fastening part, wherein at a predetermined pivoting of the coupling lever relative to the fastening part the wrap spring deforms the flexible unit thereby blocking the strain wave gear mechanism.
9. The rotational damper of claim 10, further comprising a housing cover rotatably supported on the damper housing and connected with the coupling lever, said wrap spring being fixed on the one side on the rigid unit via a first stop and being fixed on the other side on the housing cover via a second stop.
10. The rotational damper of claim 10, wherein the flexible unit has a gearing section arranged between the rigid unit and the wave generator, and a wall section extending axially relative to the strain wave gear mechanism, said wrap spring being arranged about the axially extending wall section.
11. The rotational damper of claim 12, wherein a radial wall section adjoins the axially extending wall section at an end of the axially extending wall section that is distal to the gearing section, said radial wall being connected with the housing cover.
12. The rotational damper of claim 10, wherein the electromagnetic damper motor has a rotor and a stator and means for generating a magnetic field on the rotor and the stator, wherein the stator is connected with the damper housing and the rotor is rotatably supported on a bearing part which is arranged fixed in position relative to the damper housing.
13. The rotational damper of claim 10, wherein the stator is connected with the rigid unit and the rotor is connected with the wave generator.
14. The rotational damper of claim 10, wherein the stator has a current coil arrangement that can be supplied with current and the rotor has a magnet arrangement.
Description
[0019] In the description, in the claims and in the drawing the terms and associated reference numerals listed in the list of reference signs below are used. In the drawing it is shown in:
[0020]
[0021]
[0022]
[0023]
[0024]
[0025] The flexible unit 14 has a gearing section 20, which is situated between the rigid unit 12 and the flexible unit 14. Adjoining the gearing section 20 is an axial wall section 22 which is adjoined by a radial wall section 24, which is connected with the housing cover 4 via fastening elements 26, 28 for example rivets.
[0026] A wrap spring 30 is wound about the axial wall section 22 of the flexible unit 14. The wrap spring 30 is on one side connected with the coupling lever 6 via the housing cover 8 and on the other side with the fastening element (not shown) via the rigid unit 12 and the damper housing 4. For this the wrap spring 30 is on one side anchored on the rigid unit 12 via a first stop 32 and on the other side on the damper hosing 4 via a second stop 34.
[0027] In this embodiment of the rotational damper 2, the wrap spring 30 is configured so that the strain wave gear mechanism 10 is blocked at a predetermined pivoting of the coupling lever 6 relative to the damper housing 4 as a result of the deformation of the flexible unit 14.
[0028] As shown in
[0029]
[0030] When the coupling lever 6 pivots relative to the damper housing 4 a rotational movement is introduced into the strain wave gear mechanism 10 from the housing cover 8 via the radial wall section 24, the axial wall section 22 and the flexible unit 14, wherein as a result of a pivoting the rotor 42 rotates relative to the stator corresponding to the transmission ratio of the strain wave gear mechanism 10. By supplying current to the damper motor the damping force is acts in opposition to such a pivoting.
[0031]
LIST OF REFERENCE SIGNS
[0032] 2 rotational damper [0033] 4 damper housing [0034] 6 coupling lever [0035] 8 housing cover [0036] 10 strain wave gear mechanism [0037] 12 rigid unit [0038] 14 flexible unit [0039] 16 wave generator [0040] 18 rolling bearing [0041] 20 gearing section [0042] 22 axial wall section [0043] 24 racial wall section [0044] 26 fastening element [0045] 28 fastening element [0046] 30 wrap spring [0047] 32 first stop [0048] 34 second stop [0049] 36 first rolling bearing [0050] 38 second rolling bearing [0051] 40 bearing part [0052] 42 rotor [0053] 44 magnet arrangement [0054] 46 rolling bearing [0055] 48 rolling bearing [0056] 50 stator