Disk Intelligent Rechargeable Locking Device for Wheels Based on Cloud Wireless Control
20190366977 ยท 2019-12-05
Inventors
Cpc classification
B60R25/002
PERFORMING OPERATIONS; TRANSPORTING
B60R25/09
PERFORMING OPERATIONS; TRANSPORTING
B60R25/102
PERFORMING OPERATIONS; TRANSPORTING
International classification
B60R25/09
PERFORMING OPERATIONS; TRANSPORTING
B60R25/00
PERFORMING OPERATIONS; TRANSPORTING
Abstract
The invention relates to a disk intelligent rechargeable locking device for wheels based on cloud wireless control which includes a first element, a second element, a connecting rod and a connecting sleeve. The first element includes a first housing, an end cap, a motor, a sleeve, a rotatory encoder, a latch, a first battery and a microcontroller. The second element includes an inner sleeve and an outer sleeve. The inner cavity of the inner sleeve is provided with a push switch, a second battery, a wireless signal transmitting device and a return spring. The connecting sleeve includes an upper curved plate, a lower curved plate and an expansion joint that connects the upper curved plate and the lower curved plate. It has advantages of having a reasonable and simple structure, easy to use, safe and reliable, and high degree of intelligence, which effectively solves the problem of existing wheel locks being unable to ensure safety of vehicles.
Claims
1. A disk intelligent rechargeable locking device for wheels based on cloud wireless control, comprising: a first element 1, a second element 2, a connecting rod 4, and a connecting sleeve 40; wherein the first element 1 and the second element 2 are symmetrically disposed on two sides of a wheel; the connecting sleeve 40 and a frame are sleeved with each other; one end of the connecting rod 4 is fixedly connected with the connecting sleeve 40, and the other end of the connecting rod 4 is respectively fixedly connected to the first element 1 and the second element 2, wherein the first element 1 includes a first housing 11 with a cylindrical structure, an end cap 12 disposed on an opening of the first housing 11, a motor 13, a sleeve 14, a rotary encoder 18, a latch 16, a first battery 10, and a microcontroller 19 integrated with a wireless transceiver; the motor 13, the rotary encoder 18, the first battery 10, and the microcontroller 19 are fixedly disposed in the inner cavity of the first housing 11; the connecting rod 4 is fixedly connected to the first housing 11, wherein the spindle of the motor 13 is sequentially connected to the sleeve 14 and the rotary encoder 18; the sleeve 14 is circumferentially provided with a plurality of connecting shafts 15, wherein the first housing 11 is circumferentially disposed with a plurality of through holes 111; one end of the latch 16 is slidably connected to the through hole 111, and the other end of the latch 16 is hinged to the connecting shaft 15, wherein the second element 2 includes an inner sleeve 21 and an outer sleeve22; the inner sleeve 21 and the outer sleeve 22 each have a single opening and the opposite openings are sleeved with each other; the connecting rod 4 is fixedly connected to the inner sleeve 21, wherein the inner cavity of inner sleeve 21 is provided with a push switch 211, a second battery 212, a wireless signal transmitting device 210 and a return spring 23; the inner cavity of outer sleeve 22 is provided with a convex shaft 222 extending to the inner cavity of inner sleeve 21; the opening of outer sleeve 22 is circumferentially provided with a plurality of J-shaped slots 221 for interconnecting with the latch 16; the outer sleeve 22 is provided with a notch 223 through which the connecting rod 4 passes; the outer side of the inner sleeve 21 is circumferentially provided with a plurality of curved chutes 213; the inner side of the outer sleeve 22 is provided with a curved convex block 224 adapted to the curved chute 213, wherein the connecting sleeve 40 includes an upper curved plate 41, a lower curved plate 43 and an expansion joint 44 for connecting the upper curved plate 41 and the lower curved plate 43; the upper curved plate 41 is provided with a first threaded hole 411; the lower curved plate 43 is provided with a second threaded hole 432 and a card slot 431, wherein the expansion joint 44 is disposed in the first threaded hole 411, the second threaded hole 432, and the card slot 431; the expansion joint 44 includes a rod member 442 and an expansion sleeve 444 with a diamond-shaped notch 445 sleeved on the rod member 442; the expansion sleeve 444 is compressed and snapped into the card slot 431; the two ends of the rod member 442 are respectively provided with a first external thread 443 and a second external thread 441 which are adapted to the first threaded hole 411 and the second threaded hole 432 respectively.
2. The disk intelligent rechargeable locking device for wheels based on cloud wireless control of claim 1, wherein the microcontroller 19 is electrically connected to the rotary encoder 18 and the first battery 10, respectively.
3. The disk intelligent rechargeable locking device for wheels based on cloud wireless control of claim 1, wherein the end cap 12 is provided with a battery charging port 101, and a waterproof rubber plug 102 is disposed on the battery charging port 101.
4. The disk intelligent rechargeable locking device for wheels based on cloud wireless control of claim 1, wherein the through hole 111 is a stepped hole.
5. The disk intelligent rechargeable locking device for wheels based on cloud wireless control of claim 1, wherein one end of the latch 16 that is slidably connected to the through hole 111 is provided with an L-shaped card plate 17 for engaging the outer sleeve 22; the height of the top end of the L-shaped card plate 17 is lower than the height of the top end of the latch 16.
6. The disk intelligent rechargeable locking device for wheels based on cloud wireless control of claim 1, wherein the push switch 211 and the second battery 212 are electrically connected to the wireless signal transmitting device 210, respectively.
7. The disk intelligent rechargeable locking device for wheels based on cloud wireless control of claim 1, wherein the convex shaft 222 and the outer sleeve 22 are one-piece structure.
8. The disk intelligent rechargeable locking device for wheels based on cloud wireless control of claim 1, wherein the connecting rod is made of a telescopic rod.
9. The disk intelligent rechargeable locking device for wheels based on cloud wireless control of claim 1, wherein the inner side of the upper curved plate 41 and the lower curved plate 43 are provided with a rubber pad 42.
10. The disk intelligent rechargeable locking device for wheels based on cloud wireless control of claim 1, wherein one end of the expansion sleeve 444 adjacent to the second threaded hole 432 is fixedly connected to the rod member 442.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0023] The invention is illustrated by the following figures and embodiments.
[0024]
[0025]
[0026]
[0027]
[0028]
[0029]
[0030]
[0031]
[0032] The reference numbers of the figures are as follows:
[0033] 1: first element; 10: first battery; 101: battery charging port; 102: waterproof rubber plug; 11: first housing; 111: through hole; 12: end cap; 13: motor; 14: sleeve; 15: connecting shaft; 16: latch; 17: L-shaped card plate; 18: rotary encoder; 19: microcontroller; 2: second element; 21: inner sleeve; 210: wireless signal transmitting device; 211: push switch; 212: second battery; 213: curved chute; 22: outer sleeve; 220: dent; 221: J-shaped slot; 222: convex shaft; 223: notch; 224: curved convex block; 23: return spring; 4: connecting rod; 40: connecting sleeve; 41: upper curved plate; 411: first threaded hole; 42: rubber pad; 43: lower curved plate; 431: card slot; 432: second threaded hole; 44: expansion joint; 441: second external thread; 442: rod member; 443: first external thread; 444: expansion sleeve; 445: diamond-shaped notch.
DETAILED DESCRIPTION
[0034] The invention is illustrated in accordance with figures. The figures as simplified diagrams demonstrate the basic structures of the apparatus of embodiments of the invention. Thus, the invention is not limited to the figures.
[0035] As show in
[0036] As shown in
[0037] The spindle of the motor 13 is sequentially connected to the sleeve 14 and the rotary encoder 18.
[0038] As shown in
[0039] As shown in
[0040] In an embodiment, the through hole 111 is a stepped hole. One end of the latch 16 that is slidably connected to the through hole 111 is provided with an L-shaped card plate 17 for engaging the outer sleeve 22. The height of the top end of the L-shaped card plate 17 is lower than the height of the top end of the latch 16.
[0041] As shown in
[0042] The inner cavity of inner sleeve 21 is provided with a push switch 211, a second battery 212, a wireless signal transmitting device 210 and a return spring 23. The inner cavity of outer sleeve 22 is provided with a convex shaft 222 extending to the inner cavity of inner sleeve 21. The opening of outer sleeve 22 is circumferentially provided with a plurality of J-shaped slots 221 for interconnecting with the latch 16. The outer sleeve 22 is provided with a notch 223 through which the connecting rod 4 passes.
[0043] As shown in
[0044] The push switch 211 and the second battery 212 are electrically connected to the wireless signal transmitting device 210, respectively. When the outer sleeve 22 rotates and moves toward the direction of the latch 16, the push switch 211 is pressed, and the wireless signal transmitting device 210 sends a signal to the microcontroller 19, and the latch 16 rises to a certain height. When the J-shaped slot 221 is connected to the latch 16, the push switch 211 is popped up under the action of the return spring 23, and the wireless signal transmitting device 210 sends a signal to the microcontroller 19. The latch 16 continues to rise to a certain height, and the L-shaped card plate 17 is extended to engage with the outer sleeve 22, to prevent the latch 16 from coming out of the J-shaped slot 221.
[0045] In an embodiment, the outer surface of the outer sleeve 22 is provided with a plurality of dents 220 for convenient gripping.
[0046] As shown in
[0047] As shown in
[0048] In an embodiment, the end cap 12 is provided with a battery charging port 101, and a waterproof rubber plug 102 is disposed on the battery charging port 101. In an embodiment, the battery charging port 101 can be used as a power outlet to charge an external device.
[0049] In an embodiment, the convex shaft 222 and the outer sleeve 22 are one-piece structure.
[0050] In an embodiment, the connecting rod is made of a telescopic rod.
[0051] In an embodiment, the inner side of the upper curved plate 41 and the lower curved plate 43 are provided with a rubber pad 42.
[0052] In an embodiment, one end of the expansion sleeve 444 adjacent to the second threaded hole 432 is fixedly connected to the rod member 442 to prevent the rod member 442 from getting out of the expansion sleeve 444.
[0053] A disk intelligent rechargeable locking device for wheels based on cloud wireless control of the invention includes a first element and a second element. The first element and the second element are symmetrically disposed on two sides of a wheel. The first element and the second element are respectively connected to the frame via the connecting rod and the connecting sleeve. The J-shaped slot on the outer sleeve is connected to the latch on the first element by rotating and passing through the wheel hub. The L-shaped card plate is disposed on the latch to catch the outer sleeve. The lock is tightly connected with the wheel, and the tools such as hydraulic shear and crowbars are difficult to operate on the lock and the wheel, which prevents violence damage to the lock. The lock and the frame are connected so that the vehicle cannot be stolen by removing the wheel. The latch and the L-shaped card plate are operated by the motor disposed on the first element. The microcontroller connects to an external device to control the operation of the motor without the need to use a key which avoids the lock being opened by someone who has skills to open a conventional lock. It has advantages of having a reasonable and simple structure, easy to use, safe and reliable, and high degree of intelligence, which effectively solves the problem of existing wheel locks being unable to ensure safety of vehicles.
[0054] The exemplary embodiments of the present invention are thus fully described. Although the description referred to particular embodiments, it will be clear to one skilled in the art that the present invention may be practiced with variations of these specific details. Hence this invention should not be construed as limited to the embodiments set forth herein.