Wheel drive unit for vehicle
11105378 ยท 2021-08-31
Assignee
Inventors
Cpc classification
Y10T403/7033
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
B60B27/0042
PERFORMING OPERATIONS; TRANSPORTING
B60B27/0094
PERFORMING OPERATIONS; TRANSPORTING
F16D2001/103
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16D3/223
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16D2003/22313
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16D3/226
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Y10S464/906
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
International classification
F16D3/223
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16D1/116
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B60B7/00
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A wheel drive unit for a vehicle includes a connecting member separably coupled to a constant velocity joint, a hub housing accommodating the constant velocity joint, and a hub cap to seal the hub housing. In particular, a fixing groove is formed around a first end of the constant velocity joint, and the connecting member is fitted in the fixing groove in a ring shape. When the hub cap is separated from the hub housing, the connecting member can be easily disassembled from the constant velocity joint such that inner components of the wheel drive unit can be easily replaced and repaired.
Claims
1. A wheel drive unit for a vehicle, the wheel drive unit comprising: a connecting member separably coupled to a constant velocity joint and configured to fix a bearing to the constant velocity joint when mounted on the constant velocity joint; a hub housing forming an inner space where the constant velocity joint is arranged and coupled with the hub housing by the bearing; and a hub cap separably disposed in the hub housing, and configured to: seal the hub housing when coupled to the hub housing, and allow the connecting member to be separated from or mounted on the constant velocity joint when the hub cap is separated from the hub housing, wherein: a fixing groove is formed around a first end of the constant velocity joint, the connecting member is fitted in the fixing groove in a ring shape, the connecting member is a circlip or a snap ring having holes at both ends thereof, the bearing is fixedly mounted on a bearing seat except for the fixing groove formed around a first end of the bearing seat, and when the connecting member is fitted in the fixing groove, the connecting member is in contact with a side surface of an inner race of the bearing and configured to prevent an axial movement of the bearing.
2. The wheel drive unit of claim 1, wherein: the bearing seat is formed at an end portion of the constant velocity joint, and fixing protrusions are formed around a second end of the bearing seat, such that the bearing is disposed and fixed between the connecting member and the fixing protrusions.
3. The wheel drive unit of claim 2, wherein the inner race of the bearing is fitted on the constant velocity joint, and the bearing further includes: an outer race fitted on an inner side of the hub housing, and balls retained between the inner race and the outer race, and wherein the inner race is disposed between the connecting member and the fixing protrusions.
4. The wheel drive unit of claim 1, wherein first threads are formed around an inner side of the hub housing and second threads are formed on an outer side of the hub cap, and the first threads and the second threads mate with each other to seal the inner space.
5. The wheel drive unit of claim 1, wherein a straight fastening groove is formed on an outer surface of the hub cap.
6. A wheel drive unit for a vehicle, the wheel drive unit comprising: a connecting member separably coupled to a constant velocity joint and configured to limit an axial movement of a bearing mounted on the constant velocity joint; a hub housing forming an inner space where the constant velocity joint is arranged and coupled with the hub housing by the bearing; and a hub cap separably disposed in the hub housing, and configured to open or close the hub housing and allow the connecting member to be separated from or mounted on the constant velocity joint while maintaining coupling between the constant velocity joint and the bearing when the hub cap is separated from the hub housing, wherein: a bearing seat is formed around a circumferential surface of the constant velocity joint and the bearing is fixedly mounted on the bearing seat, a fixing groove is formed around a first end portion of the bearing seat and configured to receive the connecting member, the connecting member is a circlip or a snap ring having holes at both ends thereof, the bearing is fixedly mounted on the bearing seat except for the fixing groove, and when the connecting member is fitted in the fixing groove, the connecting member is in contact with a side surface of an inner race of the bearing and configured to prevent the axial movement of the bearing.
7. The wheel drive unit of claim 6, wherein fixing protrusions are formed around a second end portion of the bearing seat such that the bearing is disposed and fixed between the connecting member and the fixing protrusions.
Description
DRAWINGS
(1) In order that the disclosure may be well understood, there will now be described various forms thereof, given by way of example, reference being made to the accompanying drawings, in which:
(2)
(3)
(4)
(5) The drawings described herein are for illustration purposes only and are not intended to limit the scope of the present disclosure in any way.
DETAILED DESCRIPTION
(6) The following description is merely exemplary in nature and is not intended to limit the present disclosure, application, or uses. It should be understood that throughout the drawings, corresponding reference numerals indicate like or corresponding parts and features.
(7)
(8) A wheel drive unit for a vehicle, as shown in
(9) As described above, the constant velocity joint 10 and the hub housing 40 are connected through the bearing 20, and the bearing 20 is fixed by the connecting member 30 such that the bearing 20 does not axially move on the constant velocity joint 10. In one form, the connecting member 30 may be a circlip or a snap ring having holes 32 at both ends. When tools are inserted into the holes 32 and then the ends are forcibly opened, the diameter of the connecting member 30 is increased, so the connecting member 30 can be separated from the constant velocity joint 10. And, the connecting member 30 can be easily fitted on the constant velocity joint 10 and axial movement of the bearing 20 can be restricted by the connecting member 30.
(10) In particular, a hub cap 50 is separably disposed inside the hub housing 40 in the present disclosure. Accordingly, when the hub cap 50 is coupled to the hub housing 40, the hub housing 40 is sealed, thereby forming a sealed structure that inhibits or prevents leakage of grease out of the constant velocity joint 10. Further, the connecting member 30 coupled to the constant velocity joint 10 can be removed from the hub housing 40 when the hub cap 50 is separated.
(11) As illustrated in
(12) As described above, although parts are strongly coupled to each other in the related art, subsequent maintenance of the parts is not considered, so when a part is damaged, the entire device has to be replaced.
(13) The present disclosure has been made to address this problem. The hub cap 50 is separably disposed inside the hub housing 40, so when the hub cap 50 is mounted inside the hub housing 40, leakage of grease and permeation of foreign substance are inhibited or prevented. Further, when the hub cap 50 is separated, the inside of the hub housing 40 is opened, so it is possible to put tools into the open inside and separate the connecting member 30 from the constant velocity joint 10.
(14) The present disclosure is described in more detail hereafter. As shown in
(15) Since the fixing groove 12 is formed at the first end of the constant velocity joint 10 and the connecting member 30 is fitted in the fixing groove 12, the connecting member 30 can be easily coupled and separated inside the hub housing 40.
(16) Referring to
(17) Meanwhile, as shown in
(18) The bearing seat 14 formed on the constant velocity joint 10 is composed of a plurality of teeth and the bearing 20 mounted on the bearing seat 14 also has teeth corresponding to the teeth of the bearing seat 14, so the bearing seat 14 and the bearing 20 can be engaged with each other. Accordingly, when the constant velocity joint 10 is rotated, the bearing 20 engaged with the bearing seat 14 can also be rotated.
(19) In particular, the fixing groove 12 is formed at the first end of the bearing seat 14 and the fixing protrusions 16 are formed at the second end of the bearing seat 14. That is, the fixing groove 12 is circumferentially formed the first end of the bearing seat 14, so the connecting member 30 is fitted in the fixing groove 12. Further, the fixing protrusions 16 are arranged around the second end of the bearing seat 14, so the bearing 20 is disposed between the connecting member 30 and the fixing protrusions 16. Accordingly, axial movement of the bearing 20 is restricted.
(20) In detail, the bearing 20 is composed of an inner race 22 fitted on the constant velocity joint 10, an outer race 24 fitted on the inner side of the hub housing 40, and balls 26 retained between the inner race 22 and the outer race 24, whereby the inner race 22 is disposed between the connecting member 30 and the fixing protrusions 16 and can be axially fixed on the constant velocity joint 10.
(21) The bearing 20 may further include a cage 28 transmitting torque between the inner race 22 and the outer race 24, in addition to the inner race 22, outer race 24, and balls 26. The inner race 22 is disposed between the connecting member 30 and the fixing protrusions 16 and is not axially moved on the constant velocity joint 10, so power according to rotation of the constant velocity joint 10 can be smoothly transmitted to the hub housing 40 through the bearing 20.
(22) The outer race 24, which is a part of the bearing 20, can be fitted in the hub housing 40, or the outer race 24 may be integrated with the hub housing 40, whereby the structure can be simplified.
(23) On the other hand, as shown in
(24) A straight fastening groove 52 may be formed on a side of the hub cap 50.
(25) Since the threads are formed around the inner side of the hub housing 40 and the threads are formed on the outer side of the hub cap 50, the hub cap 50 may be thread-fastened or separated in the hub housing 40. When the hub cap 50 is thread-fastened to the hub housing 40, strong coupling and sealing are secured by the thread-coupling characteristic.
(26) Since the fastening groove 52 is formed on a side of the hub cap 50, it is possible to turn the hub cap 50 by inserting a tool, such as a flathead screwdriver, into the fastening groove 52. Accordingly, the hub cap 50 can be coupled to or separated from the hub housing 40. The fastening groove 52 can be formed in various shapes that can be coupled to tools.
(27) When a part of the wheel drive unit of the present disclosure is damaged or needs to be replaced, it is possible to open the hub housing 40 by removing the hub cap 50 from the hub housing 40 and then separate the connecting member from the constant velocity joint 10 by inserting tools into the open inside.
(28) Further, the connecting member 30 is fitted on the first end of the constant velocity joint 10 and is positioned at the end of the bearing 20, so it is exposed. Accordingly, it is possible to separate the connecting member 30 and separate the constant velocity joint 10 and the hub housing 40 from each other by removing the exposed connecting member 30.
(29) According to the drive wheel unit for a vehicle which has the structure described above, since the inside of the hub housing can be opened and closed as desired, the constant velocity joint 10 of the internal parts of the wheel drive unit can be separated if desired. As the constant velocity joint 10 can be replaced and repaired in this way, continuous maintenance is possible.
(30) Although the present disclosure was provided above in relation to specific forms shown in the drawings, it is apparent to those skilled in the art that the present disclosure may be changed and modified in various ways without departing from the scope of the present disclosure.