Locking structure of vehicle cover
11312216 ยท 2022-04-26
Assignee
Inventors
- Chenshan Lin (Hangzhou, CN)
- Shaoyong Zheng (Hangzhou, CN)
- Jinqin Fu (Hangzhou, CN)
- Xue'e Wang (Hangzhou, CN)
- Xiaohong Tang (Hangzhou, CN)
Cpc classification
B60J7/198
PERFORMING OPERATIONS; TRANSPORTING
B60J7/068
PERFORMING OPERATIONS; TRANSPORTING
B60J10/90
PERFORMING OPERATIONS; TRANSPORTING
B60J7/141
PERFORMING OPERATIONS; TRANSPORTING
International classification
B60J7/14
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A locking structure of a vehicle cover includes a vehicle cover, at least two mounting rods, a depressor and a torsion spring. The mounting rods are arranged in parallel. The vehicle cover is laid on the mounting rods. The depressor is rotatably mounted on the mounting rods through the torsion spring, and cooperates with the mounting rods to clamp the vehicle cover. The depressor is installed on the mounting rods through the spring, and the cover is clamped between the rod and the depressor by the depressor, so that the spring always has a tendency to drive the depressor to clamp the rod, and the cover is pressed against the rods, which means the cover is fixed on the rods, so that a connection between the cover and the rods is more stable and it is not easy for the cover to shake off from the rods.
Claims
1. A locking structure of a vehicle cover, comprising: a vehicle cover; at least two mounting rods; a depressor; a torsion spring; a steel wire bar; and a stop block, wherein the mounting rods are arranged in parallel, the vehicle cover is laid on the mounting rods, and the depressor is rotatably mounted on one of the at least two mounting rods through the torsion spring, and cooperates with the mounting rods to clamp the vehicle cover, wherein the steel wire bar is fixed on the stop block and is parallel to the depressor and the at least two mounting rods, the stop block is arranged on the mounting rods, and the steel wire bar is rotationally clamped between the stop block and one of the at least two mounting rods.
2. The locking structure of the vehicle cover according to claim 1, wherein the vehicle cover comprises a plurality of profiles, a plurality of connecting rubber strips, an edge rubber strip, a first joint and a second joint, wherein the profiles are rotationally sealed and fixed together through the connecting rubber strips, the edge rubber strip is fixed on the profiles through the first joint and the second joint, the edge rubber strip is perpendicular to the connecting rubber strips, the connecting rubber strips are parallel to the profiles, and the depressor and the at least two mounting rods are used for clamping the first joint and the second joint.
3. The locking structure of the vehicle cover according to claim 1, further comprising a pressing member which is fixed on the depressor, wherein an end of the torsion spring directly or indirectly abuts against the pressing member, and an other end of the torsion spring directly or indirectly abuts against the at least two mounting rods.
4. The locking structure of the vehicle cover according to claim 3, further comprising an end cap which is installed on each of the mounting rods and located at an end of the mounting rods, wherein the end cap is used for preventing the pressing member and the depressor from slipping off the mounting rods.
5. The locking structure of the vehicle cover according to claim 4, wherein the end caps are fixedly arranged at two ends of the mounting rods.
6. The locking structure of the vehicle cover according to claim 4, wherein two torsion springs are respectively arranged at two ends of the depressor.
7. The locking structure of the vehicle cover according to claim 3, wherein the pressing member is fixedly installed on the depressor by screws.
Description
BRIEF DESCRIPTION OF DRAWINGS
(1)
(2)
(3)
(4)
(5)
(6) The reference numerals in the figures are: 101. Profiles, 102. Edge Rubber Strip, 103. Connecting Rubber Strip, 104. First Joint, 105. Screw, 106. Second Joint, 201. Mounting Rod, 301. Depressor, 302. End Cap, 303. Torsion Spring, 304. Stop Block, 305, Mounting Rubber Strip, 306. Steel Wire Bar, 307. Pressing Member.
DETAILED DESCRIPTION OF PREFERRED EMBODIMENTS
(7) The present disclosure will be described in detail with reference to the accompanying drawings.
(8) As shown in
(9) In this structure, the depressor 303 is installed on the mounting rods 201 through the torsion spring 301, and the vehicle cover is clamped between the mounting rods 201 and the depressor 301 by the depressor 301, so that the vehicle cover is pressed against the mounting rods 201, which means the vehicle cover is fixed on the mounting rods 201, so that a connection between the vehicle cover and the mounting rods 201 is more stable and it is not easy for the vehicle cover to shake off from the mounting rods 201.
(10) As shown in
(11) The profiles 101 along with the connecting rubber strips 103 form an overall framework of the whole vehicle cover, while the edge rubber strip 102 mainly serves to block rain and prevent rainwater from flowing through a binding between the mounting rods and the vehicle cover. The depressor 301 and the mounting rods 201 clamp the first joint 104 and the second joint 106. In this way a damage to the profiles 101, the connecting rubber strips 103 and the edge rubber strip 102 can be avoided, thus ensuring an integrity of the overall framework of the whole vehicle cover and preventing the rainwater from seeping in.
(12) As shown in
(13) The pressing member 307 is set to press and adjust the depressor conveniently 301.
(14) As shown in
(15) As shown in
(16) As shown in
(17) Two torsion springs 303 are set to improve a stability of the depressor 301 during rotation. Specifically, an end of the torsion spring 303 can abut against the pressing member 307 or depressor 301, and the other end of the torsion spring 303 can abut against the mounting rod 201 or the end cap 302.
(18) As shown in
(19) Specifically, the limit block 304 is slidably clamped on the mounting rods 201 and can slide over a certain distance on the mounting rods 201. However, due to a blocking effect of the end cap 302 or the pressing member 307, the limit block 304 cannot slide out of the mounting rods 201, thus reducing friction resistance between the steel wire strip 306 and the limit block 304 during rotation of the depressor 301, and making the depressor 301 rotate more smoothly.
(20) As shown in
(21) As shown in
(22) The above is only preferred embodiments of the present disclosure, which does not limit a protection scope of the present disclosure. Any equivalent transformation made with the specification of the present disclosure, which is directly or indirectly applied to other related technical fields, is included within the scope of the disclosure.