DOUBLE CLUTCH ASSEMBLY
20170138411 ยท 2017-05-18
Inventors
Cpc classification
F16D13/385
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16D21/06
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16D13/68
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16D2021/0615
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16D13/585
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F16D13/58
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16D13/70
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16D21/06
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16D13/68
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A double clutch assembly has a diaphragm spring aligned and maintained to prevent uneven wear of a disc. A diaphragm spring is deformable in an axis direction with respect to a cover casing which receives a driving force from an engine. A center plate is connected to the cover casing and an auxiliary cover casing is coupled to the center plate to form a support point. The pressure plate is selectively connected to a center plate disc when the diaphragm spring contracts. An auxiliary pressure plate is coupled to the center plate. A disc installed between the center plate and the pressure plate provides the driving force transmitted through the pressure plate to the transmission. An auxiliary disc installed between the center plate and the auxiliary pressure plate provides the driving force through the auxiliary pressure plate to the transmission.
Claims
1. Double clutch assembly comprising: a cover casing receiving a driving force from an engine to rotate; a diaphragm spring installed deformable in an axis direction with respect to the cover casing to induce displacement in the axis direction of the cover casing; a center plate connected to the cover casing and installed to idle with respect to an input shaft of a transmission; an auxiliary cover casing coupled to the center plate to form a support point of the diaphragm spring together with the cover casing; a pressure plate selectively connected to a disc of the center plate when the diaphragm spring is contracted; an auxiliary pressure plate coupled to the center plate and installed to idle with respect to the input shaft of the transmission; a disc installed between the center plate and the pressure plate, the disc comprising a hub to be coupled to the input shaft of the transmission to provide the driving force transmitted through the pressure plate to the input shaft of the transmission; an auxiliary disc installed between the center plate and the auxiliary pressure plate, the auxiliary disc comprising a hub to be coupled to the input shaft of the transmission to provide the driving force transmitted through the auxiliary pressure plate to the input shaft of the transmission; and a guide plate fixed to the auxiliary cover casing and fitted into at least one groove of a cutting groove of the diaphragm spring and a cutting groove of the auxiliary diaphragm spring.
2. Double clutch assembly according to claim 1, wherein the guide plate comprises: a main body having a coupling hole for the coupling with the auxiliary cover casing; and a protrusion protruding from the main body in the radius direction and inserted into the cutting groove of the diaphragm spring.
3. Double clutch assembly according to claim 2, wherein the main body has a ring shape corresponding to that of the coupled portion of the auxiliary cover casing.
4. Double clutch assembly according to claim 2, wherein the main body is constituted by divided pieces that have an outer appearance having a ring shape as a whole by combining the pieces, each of which has an arc shape corresponding to that of the coupled portion of the auxiliary cover casing, with each other.
5. Double clutch assembly according to claim 2, wherein the protrusion protrudes outwards or inwards from the main body in the radius direction.
6. Double clutch assembly according to claim 5, wherein the protrusion inclinedly protrudes from the main body along the axis direction of the clutch.
7. Double clutch assembly according to claim 2, wherein the guide plate further comprises a restriction protrusion protruding outwards from the main body in the radius direction and coupled to a circumferential surface of the diaphragm spring.
8. Double clutch assembly according to claim 7, wherein the restriction protrusion comprises a bent part, which is bent towards the axis direction of the clutch so as to be coupled to the circumferential surface of the diaphragm spring, on a free end thereof.
9. Double clutch assembly according to claim 8, wherein the diaphragm spring has an assembly groove in an outer circumferential surface thereof so as to be coupled to the bent part.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENT(S)
[0027] Hereinafter, embodiments of the present invention will be described with reference to the accompanying drawings.
[0028] Referring to
[0029] The connection casing (100) is directly connected to an output side of an engine to receive a driving force that is generated from the engine. For this, the connection casing (100) is provided as a circular plate member having a ring shape. Also, a serrated part (102) that is a joint portion for the power transmission with the engine is uniformly provided over an entire inner circumferential surface of a central portion of the connection casing. Also, a flange part (104) to be coupled to the centre plate (140) is disposed on an edge portion of the connection casing (100).
[0030] The cover casing (120) is coupled to the connection casing (100) to rotate with respect to a central axis of a clutch when the engine is driven. For this, the cover casing (120) is provided as a ring-shaped circular plate member having a punched installation hole (122) in a central portion thereof so that the cover casing is coaxially disposed outside an input shaft of a transmission. Also, a flange part (124) to be coupled to the pressure plate (160) is disposed on an edge portion of a side of the cover casing (120).
[0031] The auxiliary cover casing (130) is coupled to a centre plate (140) rotate with respect to the central axis of the clutch when the engine is driven. For this, the auxiliary cover casing (130) is provided as a ring-shaped circular plate member having a punched installation hole (132) in a central portion thereof so that the cover casing is coaxially disposed outside the input shaft of the transmission. Also, a flange part (134) to be coupled to the centre plate (140) is disposed on an edge portion of a side of the auxiliary cover casing (130).
[0032] The centre plate (140) is coupled to the cover casing (120) to idle with respect to the input shaft of the transmission that is disposed at a centre of the clutch when the engine is driven. For this, the centre plate (140) is provided as a ring-shaped circular plate member having a punched installation hole (142) in a central portion thereof so that the centre plate is coaxially disposed outside the input shaft of the transmission. Also, a flange part (144) to be coupled to the connection casing (100) at a position corresponding to the flange part (104) of the connection casing (100) is disposed on an edge portion of the centre plate (140). Also, a bearing (146) for idling with respect to the input shaft of the transmission is installed in an inner circumferential surface of the installation hole (142) of the centre plate (140).
[0033] The pressure plate (160) is coupled to the cover casing (120) to idle with respect to the central axis of the clutch when the engine is driven. For this, the pressure plate (160) is provided as a ring-shaped circular plate member having a punched installation hole (162) in a central portion thereof so that the pressure plate is coaxially disposed outside the input shaft of the transmission. Also, a flange part (164) to be coupled to the cover casing (120) at a position corresponding to the flange part (124) of the cover casing (120) is disposed on an edge portion of the pressure plate (160).
[0034] The auxiliary pressure plate (170) is coupled to the centre plate (140) to idle with respect to the input shaft of the transmission that is disposed at the centre of the clutch when the engine is driven. For this, the auxiliary pressure plate (170) is provided as a ring-shaped circular plate member having a punched installation hole (172) in a central portion thereof so that the auxiliary pressure plate is coaxially disposed outside the input shaft of the transmission. Also, a flange part (174) to be coupled to the centre plate (140) is disposed an edge portion of the auxiliary pressure plate (170).
[0035] The disc (180) is disposed between the centre plate (140) and the pressure plate (160) and connected to the pressure plate (160) by movement of the cover casing (120) in an axis direction due to the contraction of the diaphragm spring (200). Thus, the driving force provided to the centre plate (140) is provided to the pressure plate (160) via the disc (180). For this, the disc (180) includes a hub (182) to be coupled to one of the input shafts of the transmission, for example, a hollow input shaft at a central portion thereof. Also, a damper spring (184) for buffering a sudden vibration of the driving force is installed around the hub (182) of the disc (180).
[0036] The auxiliary disc (190) is disposed between the centre plate (140) and the auxiliary pressure plate (170) and connected to the auxiliary pressure plate (170) by movement of the auxiliary cover casing (130) in the axis direction due to the contraction of the auxiliary diaphragm spring (210). Thus, the driving force provided to the centre plate (140) is provided to the auxiliary pressure plate (170) via the auxiliary disc (190). For this, the auxiliary disc (190) includes a huh (192) to be coupled to one of the input shafts of the transmission, for example, a hollow input shaft at a central portion thereof.
[0037] The diaphragm spring (200) is a leaf spring having a washer shape and disposed between the cover casing (120) and the auxiliary cover casing (130). The diaphragm spring includes an elastic piece that is divided into a plurality of parts so that a cutting groove (202) is radially formed from a circumferential surface of the edge portion towards the central portion thereof. In this case, a central portion of the diaphragm spring (200) is opened to install the input shaft of the transmission. Also, as illustrated in
[0038] The auxiliary diaphragm spring (210) is a leaf spring having a washer shape and disposed between the auxiliary cover casing (130) and the auxiliary pressure plate (170). The auxiliary diaphragm spring includes an elastic piece that is divided into a plurality of parts so that cutting grooves (212) are radially formed from a circumferential surface of the edge portion towards the central portion thereof. In this case, a central portion of the auxiliary diaphragm spring (210) is opened to install the input shaft of the transmission. Also, like the diaphragm spring (200), as illustrated in
[0039] As illustrated in
[0040] Also, as illustrated in
[0041] For this, as illustrated in
[0042] Unlike this, as illustrated in
[0043] Also, the protrusion (226) of the guide plate (220) protrudes outwards from the main body (222) in the radius direction, i.e., inclinedly protrudes from the main body (222) along an axial direction of the clutch. On the other hand, the protrusion (226) may protrude inwards from the main body (222) towards an axis centre of the hub in the radius direction. Thus, the protrusion (226) of the guide plate (220) may perform a function for maintaining the concentricity so that the axis centre of the diaphragm spring (200) is not displaced at a predetermined position with respect to the axis centre of the clutch when the diaphragm spring (200) is contracted and restored. That is, as illustrated in
[0044] Also, as illustrated in
[0045] Also, as illustrated in
[0046] As described above, although the preferred embodiment of the present invention is described with reference to the accompanying drawings, the present invention is not limited to the above-described specific embodiment, and those with ordinary skill in the technical field of the present invention will understand that the present invention can be carried out in other specific forms without changing the technical idea or essential features.