ACTUATING DEVICE FOR A TRANSMISSION
20230341006 ยท 2023-10-26
Assignee
Inventors
Cpc classification
F16H63/3043
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16H2063/3056
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F16D15/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
An actuating device for a transmission has an adjusting element which can be moved in rotation by way of an actuator. At least one actuating element is arranged on one side of the adjusting element and can be moved in translation as a function of a rotation movement of the adjusting element. Roller bodies between the adjusting element and the actuating element concerned are arranged in such manner that each roller body engages in a ramp-shape contoured groove of the adjusting element and in a ramp-shape contoured groove of the actuating element concerned. The roller bodies, which are arranged between the adjusting element and the actuating element concerned, are arranged in at least two concentric roller body rings. Alternatively, or in addition, bearing bodies which serve to support the adjusting element on a housing-side base element are arranged in at least two concentric bearing body rings.
Claims
1-7. (canceled)
8. An actuating device (10) for a transmission, comprising: an adjusting element (11) configured to be moved in rotation by way of an actuator, the adjusting element defining a groove (19) having a ramp-shaped contour; at least one actuating element (17) arranged on one side of the adjusting element (11) and configured to be translated as a function of a rotation movement of the adjusting element (11), the at least one actuating element (17) defining a groove (20) having a ramp-shaped contour; at least two concentric roller body rings (21a, 21b); and roller bodies (18) arranged between the adjusting element (11) and the at least one actuating element (17), wherein each of the roller bodies engages in the groove (19) of the adjusting element (11) and in the groove (20) of the actuating element (17), and wherein the roller bodies (18) are arranged in the at least two concentric roller body rings (21a, 21b).
9. The actuating device according to claim 1, further comprising: at least two concentric bearing body rings (25, 26); bearing bodies (24) configured and arranged to support the adjusting element (11) on a housing-side base element (23), the bearing bodies (24) arranged in the at least two concentric bearing body rings (25, 26).
10. The actuating device according to claim 8, further comprising at least one cage, wherein each of the roller bodies (18) of the respective roller body rings (21, 21a, 21b) is guided in a cage of the at least one cage (22).
11. The actuating device according to any of claim 8, wherein: the adjusting element (11) is configured as an annular adjusting plate; the at least one actuating element has a single actuating element (17) in the form of an annular pressure plate; the single actuating element (17) is arranged on a first axial side of the annular adjusting plate; a base element is configured as an annular base plate and is arranged on an opposite, second axial side of the annular adjusting plate; the roller bodies (18) are arranged between the actuating element (17) and the adjusting element (11); and a radially outer portion of the adjusting element (11) includes a toothed section (13) configured to functionally connect the adjusting element (11) with the actuator (12).
12. The actuating device according to claim 11, wherein the bearing bodies (24) are arranged between the base element (23) and the adjusting element (11).
13. An actuating device (10) for a transmission, comprising: an adjusting element (11) configured to be moved in rotation by way of an actuator, the adjusting element (11) defining a groove (19) having a ramp-shaped contour; at least one actuating element (17) arranged on one side of the adjusting element (11) and configured to be displaced in translation as a function of a rotation movement of the adjusting element (11), the at least one actuating element (17) defining a groove (20) having a ramp-shaped contour; roller bodies (18) arranged between the adjusting element (11) and the at least one actuating element (17) wherein each of the roller bodies engages in the groove (19) of the adjusting element (11) and in the groove (20) of the actuating element (17); at least two concentric bearing body rings (25, 26); bearing bodies (24) configured and arranged to support the adjusting element (11) on a housing-side base element (23), the bearing bodies (24) arranged in the at least two concentric bearing body rings (25, 26).
14. The actuating device according to claim 13, further comprising at least two concentric roller body rings (21a, 21b), wherein the roller bodies 18) are arranged in the at least two concentric roller body rings (21a, 21b).
15. The actuating device according to claim 13, further comprising at least one cage, wherein each of the roller bodies (18) of the respective roller body rings (21, 21a, 21b) is guided in a cage of the at least one cage (22).
16. The actuating device according to claim 14, further comprising at least one cage, wherein each of the roller bodies (18) of the respective roller body rings (21, 21a, 21b) is guided in a cage of the at least one cage (22).
17. The actuating device according to any of claim 13, wherein: the adjusting element (11) is configured as an annular adjusting plate; the at least one actuating element has a single actuating element (17) in the form of an annular pressure plate; the single actuating element (17) is arranged on a first axial side of the annular adjusting plate; a base element is configured as an annular base plate and is arranged on an opposite, second axial side of the annular adjusting plate; the roller bodies (18) are arranged between the actuating element (17) and the adjusting element (11); and a radially outer portion of the adjusting element (11) has a toothed section (13) configured to functionally connect the adjusting element (11) with the actuator (12).
18. The actuating device according to claim 17, wherein the bearing bodies (24) are arranged between the base element (23) and the adjusting element (11).
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0013] Example embodiments of the invention, to which it is not limited, are described in greater detail with reference to the drawing, which shows:
[0014]
[0015]
[0016]
[0017]
[0018]
[0019]
[0020]
[0021]
DETAILED DESCRIPTION
[0022] The invention relates to an actuating device for a transmission.
[0023] The actuating device 10 of
[0024]
[0025] The actuating device 10 of
[0026] Roller bodies 18 are arranged between the adjusting element 11 and the actuating device 10. Each roller body 18 engages on one side with a groove 19 contoured in a ramp shape on one axial side of the adjusting element 13 and on the other side in a groove 20 contoured in a ramp shape on an axial side of the actuating element 17, where a groove contoured in a ramp shape means that the so-termed groove bottoms of these grooves 19 and 20 are formed as ramps. As a result of the ramp-like contouring of the grooves 19 and 20 the rotational movement of the adjusting element 11 can be converted particularly advantageously into a translation movement of the actuating element 17.
[0027] In the example embodiment shown, the roller bodies 18 are positioned in a roller body ring 21, and the roller bodies 18 arranged in the roller body ring 21 are held in by a cage 22.
[0028] In the actuating device 10 shown in
[0029] The adjusting element 17 is mounted rotatably relative to the housing-side base element 23 by means of bearing bodies 24. The bearing bodies 24 are roller bearing bodies.
[0030] To reduce the wear on the bearing bodies 24 caused by the high forces and torques to be transmitted, in the actuating device 10 of
[0031] As can be seen most clearly in
[0032]
[0033] In the example embodiment shown in
[0034] In the example embodiments illustrated, the actuating element 17, the adjusting element 13 and the base element 23 are each in the form of annular plate elements. Thus, the actuating element 17 is in the form of an annular pressure plate, the adjusting element 13 is an annular adjustment plate and the base element is an annular base plate. Here, when viewed in the axial direction in
[0035] The invention, which uses several roller body rings and/or several bearing body rings, can also be used in an actuating device which comprises more than one actuating element. For example, the invention can also be used with the actuating element of DE 10 2016 208 788 A1.
[0036] With the invention the loads that act during operation upon the bearing bodies and/or roller bodies can be reduced. Thereby, the susceptibility of the actuating device to wear and failure are reduced.
INDEXES
[0037] 10 Actuating device [0038] 11 Adjusting element [0039] 12 Actuator [0040] 13 Toothed section [0041] 14 Toothed section [0042] 15 Rotation axis [0043] 16 Lever [0044] 17 Adjusting element [0045] 18 Roller body [0046] 19 Groove [0047] 19a Groove [0048] 19b Groove [0049] 20 Groove [0050] 20a Groove [0051] 20b Groove [0052] 21 Roller body ring [0053] 21a Roller body ring [0054] 21b Roller body ring [0055] 22 Cage [0056] 23 Base element [0057] 24 Bearing body [0058] 25 Bearing body ring [0059] 26 Bearing body ring [0060] 27 Groove [0061] 28 Groove [0062] 29 Groove [0063] 30 Groove