ACTUATION DEVICE FOR TWO CLUTCHES AND HYBRID TRANSMISSION AND DUAL-CLUTCH TRANSMISSION
20240200613 ยท 2024-06-20
Assignee
Inventors
Cpc classification
F16D2023/141
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16H63/10
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16D2500/10412
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16D23/14
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16D2011/002
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16D2500/1107
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16H63/32
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16D21/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16D2500/10462
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16H63/08
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F16D23/14
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
An actuation device for actuating two clutches, including a first selector fork, which can be adjusted in a first direction of actuation for actuating a first clutch against a first restoring force, and a second selector fork which can be adjusted in a second direction of actuation for actuating a second clutch against a second restoring force, the first actuation device and the second actuation device being oriented in an opposed manner to each other. Furthermore, a hybrid transmission and a dual-clutch transmission having the actuation device are provided.
Claims
1. An actuation device for actuating two clutches, the actuation device comprising: a first selector fork which is adjustable in a first direction of actuation against a first restoring force in order to actuate a first clutch; a second selector fork which is adjustable against a second restoring force in a second direction of actuation in order to actuate a second clutch; and the first direction of actuation and the second direction of actuation are oriented opposite to each other.
2. The actuation device according to claim 1, further comprising a spring which is arranged axially between the first selector fork and the second selector fork such that the spring applies the first restoring force and the second restoring force.
3. The actuation device according to claim 1, further comprising a first spring for applying the first restoring force and a second spring for applying the second restoring force.
4. The actuation device according to claim 1, further comprising an actuator having first and second opposing active surfaces, wherein the first opposing active surface acts on the first selector fork for adjustment thereof, and the second active surface acts on the second selector fork for adjustment thereof.
5. The actuation device according to claim 4, wherein the actuator comprises three switch positions, the actuator in a first of the switch positions acts on none of the two selector forks, in a second of the switch positions only acts on the second selector fork and in a third of the switch positions only acts on the first selector fork.
6. The actuation device according to claim 5, wherein the actuator is self-locking.
7. The actuation device according to claim 1, further comprising at least one of a first stop for limiting a maximum adjustability of the first selector fork in a direction of the first restoring force or a second stop for limiting a maximum adjustability of the second selector fork in a direction of the second restoring force.
8. The actuation device according to claim 1, further comprising a path limiter for limiting a maximum adjustability in the first direction of actuation and for limiting a maximum adjustability in the second direction of actuation.
9. A hybrid transmission for a hybrid vehicle, the hybrid transmission comprising the actuation device according to claim 1, a first drive shaft this is connectable to an internal combustion engine and to a first electric machine, a second drive shaft which is connectable to a second electric machine, an output shaft connected to at least one of the first drive shaft or the second drive shaft, a first disconnect clutch for switchably connecting the first drive shaft to the output shaft and a second disconnect clutch for switchably connecting the second drive shaft to the output shaft, wherein the first separating clutch and the second separating clutch are actuatable by the actuation device.
10. A dual-clutch transmission for a motor vehicle, the dual-clutch transmission comprising the actuation device according to claim 1, two drive shafts, which are respectively connected to an output shaft via a first sub-transmission and a second sub-transmission, a first clutch for switching between two gear stages of the first sub-transmission, and a second clutch for switching between two gear stages of the second sub-transmission, wherein the first clutch and the second clutch is actuatable by the actuation device.
11. An actuation device for actuating two clutches, the actuation device comprising: a single actuator, a first selector fork which is adjustable in a first direction of actuation by the single actuator against a first restoring force in order to actuate a first clutch; a second selector fork which is adjustable against a second restoring force in a second direction of actuation by the single actuator in order to actuate a second clutch; and the first direction of actuation and the second direction of actuation are oriented opposite to each other.
12. The actuation device according to claim 11, further comprising a spring which is arranged axially between the first selector fork and the second selector fork such that the spring applies the first restoring force and the second restoring force.
13. The actuation device according to claim 11, further comprising a first spring for applying the first restoring force and a second spring for applying the second restoring force.
14. The actuation device according to claim 11, wherein the single actuator has first and second opposing active surfaces, the first opposing active surface acts on the first selector fork for adjustment thereof, and the second active surface acts on the second selector fork for adjustment thereof.
15. The actuation device according to claim 14, wherein the actuator comprises three switch positions, the actuator in a first of the switch positions acts on none of the first or second selector forks, in a second of the switch positions only acts on the second selector fork, and in a third of the switch positions only acts on the first selector fork.
16. The actuation device according to claim 15, wherein the actuator is self-locking.
17. The actuation device according to claim 11, further comprising at least one of a first stop for limiting a maximum adjustability of the first selector fork in a direction of the first restoring force or a second stop for limiting a maximum adjustability of the second selector fork in a direction of the second restoring force.
18. The actuation device according to claim 11, further comprising a path limiter for limiting a maximum adjustability in the first direction of actuation and for limiting a maximum adjustability in the second direction of actuation.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0022] The disclosure is explained below with the aid of drawings. In the drawings:
[0023]
[0024]
[0025]
[0026]
DETAILED DESCRIPTION
[0027] The drawings are only schematic in nature and serve only for understanding the disclosure. The same elements are provided with the same reference signs. The features of the individual embodiments can be interchanged.
[0028]
[0029] The actuation device 1 has a first selector fork 4. To actuate the first clutch 2, the first selector fork 4 can be adjusted in a first direction of actuation against a first (axial) restoring force. In the embodiment shown in
[0030] The actuation device 1 has a second selector fork 5. The second selector fork 5 can be adjusted in a second direction of actuation against a second (axial) restoring force in order to actuate the second clutch 3. In the embodiment shown in
[0031] Consequently, the two selector forks 4, 5 are each subjected to a preload/restoring force in the axial direction, by which each selector fork 4, 5 is pressed into a closed/engaged switch position, i.e., into a position in which the clutch 2, 3 to be actuated is engaged. Each selector fork 4, 5 can be pressed into an open/disengaged switch position, i.e., into a position in which the clutch 2, 3 to be actuated is disengaged, against the preload/restoring force (i.e., in the respective directions of actuation).
[0032] The first clutch 2 and/or the second clutch 3 can be designed in particular as a form-fit clutch, for example as a dog clutch. The form-fit clutch is formed by a sliding sleeve 6, a sliding sleeve carrier 7 and a clutch body 8. The form-fit clutch is actuated by axial displacement of the sliding sleeve 6. The selector fork 4, 5 engages in the sliding sleeve 6 of the clutch 2, 3 to be actuated so that an (axial) adjustment of the selector fork 4, 5 causes the axial displacement of the sliding sleeve 6.
[0033] According to the disclosure, the first direction of actuation and the second direction of actuation are oriented in an opposed manner to each other. This means that the directions of action of the two clutches 2, 3 are opposite. The actuation device 1 has an actuator 9, by means of which the first selector fork 4 and the second selector fork 5 can be actuated jointly but independently of one another. By means of the opposite orientation of the preload/restoring forces or the directions of actuation, it is possible to switch the two selector forks 4, 5 via the common actuator 9.
[0034] When the actuator 9 is adjusted in the first direction of actuation (here to the left), the first selector fork 4 is adjusted from the engaged switch position to the disengaged switch position, while the second selector fork 5, by the second restoring force (acting in the direction of the first direction of actuation), remains in the engaged switch position or is returned from the disengaged switching position to the engaged switching position. When actuator 9 is adjusted in the second direction of actuation (here to the right), the second selector fork 5 is adjusted from the engaged switch position to the disengaged switch position, while the first selector fork 4, by the first restoring force (acting in the direction of the second direction of actuation), remains in the engaged switch position or is returned from the disengaged switching position to the engaged switching position. It is thus possible to switch between a first switching state (cf.
[0035] The actuation device 1 can preferably have a (preloaded) spring 10 which is arranged axially between the first selector fork 4 and the second selector fork 5 in such a way that it applies the first restoring force and the second restoring force. The spring 10 thus acts axially between the two selector forks 4, 5 so that it pushes the two selector forks 4, 5 apart and the sliding sleeves 6 are each brought into engagement with the clutch body 8 and both form-fit clutches are engaged. Even if this is not shown, the actuation device 1 can alternatively have a first spring for applying the first restoring force and a second spring for applying the second restoring force. In particular, the actuation device 1 can have a (transmission) housing relative to which the first selector fork 4 and the second selector fork 5 can be displaced axially for their adjustment This means that the first spring can be arranged between the housing and the first selector fork 4 and/or the second spring can be arranged between the housing and the second selector fork 5.
[0036] The actuator 9 can preferably have two opposing active surfaces 11, 12, wherein a first active surface 11 for adjustment acts on the first selector fork 4 and a second active surface 12 for adjustment acts on the second selector fork 5. In particular, the actuator 9 can have three switch positions. In a first switch position (see
[0037] Preferably, the first selector fork 4 and/or the second selector fork 5 can be arranged in an axial guide 13 in the housing.
[0038] In particular, the actuator 9 can be designed to be self-locking. This means that the actuator 9 only has to be actuated to change between the switch positions and remains in its switch position without being actuated.
[0039] Preferably, the actuation device 1 can have a first stop 14 for limiting the maximum adjustability of the first selector fork 4 in the direction of the first restoring force and/or a second stop 15 for limiting the maximum adjustability of the second selector fork 5 in the direction of the second restoring force. The first stop 14 and/or the second stop 15 can preferably be formed on the housing.
[0040]
[0041] In the embodiments shown in
[0042] In the embodiment shown in
[0043]
[0044]
LIST OF REFERENCE SIGNS
[0045] 1 Actuation device [0046] 2 First clutch [0047] 3 Second clutch [0048] 4 First selector fork [0049] 5 Second selector fork [0050] 6 Sliding sleeve [0051] 7 Sliding sleeve carrier [0052] 8 Clutch body [0053] 9 Actuator [0054] 10 Spring [0055] 11 First active surface [0056] 12 Second active surface [0057] 13 Axial guide [0058] 14 First stop [0059] 15 Second stop [0060] 16 Path limiter [0061] 17 Hybrid transmission [0062] 18 First drive shaft [0063] 19 Second drive shaft [0064] 20 Output shaft [0065] 21 Dual-clutch transmission [0066] 22 First gear stage [0067] 23 Second gear stage [0068] 24 Third gear stage [0069] 25 Fourth gear stage [0070] 26 First drive shaft [0071] 27 Second drive shaft [0072] 28 Output shaft [0073] 29 Actuator motor [0074] 30 Nut [0075] 31 Threaded spindle [0076] 32 Lever [0077] 33 Rotary joint [0078] 34 First articulation point [0079] 35 Second articulation point [0080] 36 Guide rod