Shared power bank storage device

By designing a shared power bank storage device including machine bin, fixed seat, clamping parts, reset parts and drive parts, the existing device has solved the problems of complex structure and high manufacturing cost, and achieved the effect of fewer components, simple structure and reliable control.

CN114078292BActive Publication Date: 2025-07-01SHENZHEN CARKU TECH CO LTD
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Patent Information

Application Number
CN202010824067.2
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2020-08-14
Publication Date
2025-07-01
Estimated Expiration
2040-08-14

AI Technical Summary

Technical Problem

The existing shared power bank storage devices have complex structure and control and high manufacturing costs.

Method used

A shared power bank storage device including a machine compartment, a fixed seat, a rotatable clamping member, a reset member and a drive member is designed. The reset part elastically against the top card connector, so that it is connected to the shared power bank separately, and the drive part drives the card connector to rotate to get out of the shared power bank.

Benefits of technology

A shared power bank storage device with fewer components, simple structure and reliable control is realized, reducing manufacturing costs.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention provides a shared power bank storage device, which includes a cabin for plugging in the shared power bank, a fixed seat, a plurality of clamping members rotatably connected to the fixed seat, a reset member for forcing the clamping members to reset, and a driving member. The fixed seat is provided with at least one clamping member corresponding to each shared power bank, and each reset member elastically abuts against two adjacent clamping members so that each clamping member clamps the corresponding shared power bank; each driving member is used to drive the corresponding clamping member to rotate so as to disengage from the corresponding shared power bank. Since one reset member can abut against two clamping members so that each clamping member respectively clamps the corresponding shared power bank; therefore, the components of the shared power bank storage device are fewer, the structure and control are relatively simple, and the manufacturing cost is lower.
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Description

Technical Field

[0001] The present invention relates to the technical field of shared power bank devices, and particularly to a storage device for shared power banks. Background Art

[0002] With the highly popularization of informatization and networking, as well as the development of the sharing economy, there are currently many storage devices for shared power banks on the market; these storage devices for shared power banks are generally charging rental devices provided by enterprises. Users can rent a power bank by scanning the QR code on the device screen with a mobile device and paying a deposit. After the power bank is successfully returned, the deposit can be withdrawn at any time and refunded to the account. Shared power banks can solve the problem of the battery life of mobile devices and are also convenient for people who do not carry their own power banks with them. However, the structures and controls of existing storage devices for shared power banks are relatively complex and the manufacturing costs are relatively high. Summary of the Invention

[0003] The technical problem to be solved by the present invention is to provide a storage device for shared power banks with fewer components, a simple structure, and more reliable control in view of the defects of the prior art.

[0004] To solve the above technical problem, the present invention first provides a storage device for shared power banks, including a cabinet for plugging in shared power banks, a fixed seat provided in the cabinet, a plurality of clamping members rotatably connected to the end of the fixed seat, a reset member for forcing the clamping members to reset, and a driving member for driving the clamping members to rotate. At least one clamping member is rotatably provided at the end of the fixed seat corresponding to a shared power bank, and the at least one clamping member is used for clamping at least one shared power bank. Each reset member elastically abuts two adjacent clamping members of the fixed seat so that each clamping member clamps the corresponding shared power bank; each driving member is used for driving the corresponding clamping member on the fixed seat to rotate so as to disengage from the corresponding shared power bank.

[0005] Each reset member of the storage device for shared power banks provided in the present application elastically abuts two adjacent clamping members, forcing the two clamping members to respectively clamp the corresponding shared power banks to fix the shared power banks in the cabinet; and each driving member drives the corresponding clamping member on the fixed seat to rotate so that the clamping member disengages from the clamping of the corresponding shared power bank, facilitating the removal of the shared power bank from the cabinet. Since one reset member can abut two adjacent clamping members so that each clamping member respectively clamps the corresponding shared power bank, the storage device for shared power banks of the present invention has fewer components, a relatively simple structure and control, and a lower manufacturing cost. Brief Description of the Drawings

[0006] To more clearly illustrate the technical solutions of the embodiments of the present invention, the following will briefly introduce the drawings required for the implementation. Obviously, the drawings in the following description are some embodiments of the present invention. For those of ordinary skill in the art, without creative efforts, other drawings can also be obtained based on these drawings.

[0007] Figure 1 It is a schematic three-dimensional structure diagram of a shared power bank storage device storing a shared power bank provided by one embodiment of the present invention.

[0008] Figure 2 It is Figure 1 a schematic three-dimensional exploded view of the shared power bank storage device and the shared power bank in

[0009] Figure 3 It is Figure 2 a schematic three-dimensional structure diagram of one of the clamping members of the shared power bank storage device in

[0010] Figure 4 It is Figure 2 a schematic three-dimensional structure diagram of the cabin, fixed seat and abutting member of the shared power bank storage device in

[0011] Figure 5 It is Figure 2 a schematic three-dimensional structure diagram of the fixed seat, clamping member and abutting member of the shared power bank storage device in

[0012] Figure 6 It is Figure 2 a schematic three-dimensional exploded view of the shared power bank storage device in

[0013] Figure 7 It is Figure 6 a schematic three-dimensional assembled view of the shared power bank storage device in

[0014] Figure 8 It is Figure 1 a rear view of the shared power bank storage device with the fixed seat omitted in

[0015] Figure 9 - Figure 10 It is a schematic diagram of the storage process of the shared power bank storage device provided by one embodiment of the present invention.

[0016] Figure 11 It is Figure 10 a side view of the shared power bank storage device and the shared power bank in Detailed implementation manners

[0017] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present invention without creative efforts belong to the scope of protection of the present invention.

[0018] In addition, the descriptions of the following embodiments refer to the attached drawings for illustrating specific embodiments in which the present invention can be implemented. The directional terms mentioned in the present invention, such as "upper", "lower", "front", "rear", "left", "right", "inner", "outer", "side", etc., are only with reference to the directions in the attached drawings. Therefore, the directional terms used are for better and clearer description and understanding of the present invention, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and thus cannot be construed as a limitation to the present invention.

[0019] Orientation definition: For clear description, during the surgical process, the end close to the operator is referred to as the "proximal end", and the end far from the operator is referred to as the "distal end"; the axial direction refers to the direction parallel to the line connecting the centers of the distal end and the proximal end of the medical device; the above definitions are only for convenience of expression and cannot be construed as a limitation to the present invention.

[0020] Please refer to Figure 1 and Figure 2 , one embodiment of the present invention provides a shared power bank storage device 100 for storing a shared power bank 500. The shared power bank storage device 100 includes a cabin 20 for plugging in the shared power bank 500, a fixed seat 30 provided on the side of the cabin 20 away from the shared power bank 500, a plurality of clamping members 50 rotatably connected to the end of the fixed seat 30, a reset member 60 for forcing the clamping members 50 to reset, a driving member 80 for driving the clamping members 50 to rotate, and a plurality of elastic abutting members 90 provided on the fixed seat 30; at least one clamping member 50 is rotatably provided at the end of the fixed seat 30 corresponding to a shared power bank 500, and at least one clamping member 50 is used for clamping at least one shared power bank 500. Each reset member 60 elastically abuts two adjacent clamping members 50 of the fixed seat 30 so that each clamping member 50 is respectively clamped to the corresponding shared power bank 500; each driving member 80 is used for driving the corresponding clamping member 50 on the fixed seat 30 to rotate to disengage from the corresponding shared power bank 500.

[0021] In this embodiment, on the same end of the fixed seat 30, a clamping member 50 is rotatably provided on each of the two opposite sides relative to each shared power bank 500. The two clamping members 50 are used to jointly clamp a shared power bank 500. Each driving member 80 is used to drive the two clamping members 50 on the two opposite sides of the same shared power bank 500 on the fixed seat 30 to rotate, so that the two clamping members 50 are disengaged from the shared power bank 500. That is, one driving member 80 can drive the two clamping members 50 to rotate together to disengage from the corresponding shared power bank 500. The structure and control are relatively simple and stable, and the manufacturing cost is relatively low.

[0022] Each reset member 60 of the shared power bank storage device 100 of the present invention elastically abuts against two adjacent clamping members 50, forcing the two clamping members 50 to respectively clamp the corresponding shared power bank 500 to fix the shared power bank 500 in the cabin 20. And each driving member 80 drives the two clamping members 50 on the two opposite sides of a shared power bank 500 to rotate together, so that the two clamping members 50 are disengaged from the corresponding shared power bank 500, facilitating the removal of the shared power bank 500 from the cabin 20. Since one reset member 60 can abut against two adjacent clamping members 50 so that each clamping member 50 respectively clamps the corresponding shared power bank 500, the shared power bank storage device 100 of the present invention has fewer components, relatively simple and stable structure and control, and relatively low manufacturing cost.

[0023] As Figures 1 to 3 shown, each clamping member 50 includes a rotating portion 51 rotatably connected to the fixed seat 30, a hook 53 located at one end of the rotating portion 51, and an adjusting portion 55 located at the other opposite end of the rotating portion 51. The hook 53 is used to clamp the side wall of the corresponding shared power bank 500. One end of the adjusting portion 55 away from the hook 53 extends to the middle position of the fixed seat 30. The driving member 80 is arranged at the middle position of the fixed seat 30. The driving member 80 abuts against the corresponding adjusting portion 55 to make the clamping member 50 rotate along the rotating portion 51, so that the hook 53 is disengaged from the corresponding shared power bank 500. In this embodiment, the clamping member 50 is generally L-shaped. The rotating portion 51 and the adjusting portion 55 are both strip-shaped rods. The hook 53 is arranged at one end of the rotating portion 51 away from the adjusting portion 55. The adjusting portion 55 extends vertically outward from one end of the rotating portion 51 away from the hook 53. The hook 53 and the adjusting portion 55 are located on the same side of the rotating portion 51. An inclined sliding surface 530 is provided on the side of the hook 53 facing away from the rotating portion 51.

[0024] The rotating part 51 of the clamping part 50 is provided with a rotating hole 510. Specifically, on the side of the rotating part 51 facing the adjusting part 55 and adjacent to the middle part, two arc-shaped convex pieces 512 protrude outward, and the two convex pieces 512 enclose the rotating hole 510. One end of the adjusting part 55 away from the rotating part 51 bends to one side to form an avoidance groove 552, and the avoidance groove 552 is used for the penetration of the abutting part 90. The end of the adjusting part 55 away from the rotating part 51 forms an abutting block 554, and the abutting block 554 facilitates the pushing of the driving part 80.

[0025] Please refer to Figures 2 to 4 as well. The machine compartment 20 includes a rectangular top plate 21, two end plates 23 vertically extending downward from opposite ends of the top plate 21, and a side plate 25 vertically extending downward from one side edge of the top plate 21 and connected to the same side of the two end plates 23; the top plate 21, the two end plates 23 and the side plate 25 jointly enclose a receiving cavity 201 for receiving the ends of two shared power banks 500 (as Figure 9 shown). Support plates 211 protrude upward from opposite ends of the top plate 21 respectively, and a fixing space 212 for receiving the fixing seat 30 is enclosed between the two support plates 211 and the top plate 21. Inside the fixing space 212 of the top plate 21 and adjacent to each support plate 211, two connecting cylinders 213 and two connecting rods 214 are arranged side by side along the length direction of the support plate 211, and the two connecting rods 214 are located between the two connecting cylinders 213; two spaced positioning cylinders 215 are provided inside the fixing space 212 of the top plate 21 and adjacent to each support plate 211. The two connecting cylinders 213 and the two connecting rods 214 at the same end are located between the two positioning cylinders 215 at the same end and the corresponding support plate 211, and each positioning cylinder 215 communicates with the receiving cavity 201 of the machine compartment 20. Two rows of spaced transverse through grooves 216 are opened in the middle of the fixing space 212 of the top plate 21, and the transverse through grooves 216 facilitate the electrical connection of the shared power bank 500 to the main control circuit board (not shown in the figure). Two spaced longitudinal through grooves 231 are provided near the support plate 211 on each end plate 23, and each longitudinal through groove 231 communicates with the receiving cavity 201 of the machine compartment 20, and the two longitudinal through grooves 231 respectively correspond to the side walls of the two shared power banks 500. Each longitudinal through groove 231 extends to the top plate 21, and a stop block 233 is provided near the corresponding support plate 211 in each longitudinal through groove 231, and the stop block 233 is used to stop the corresponding clamping part 50.

[0026] Please refer to Figure 1 - Figure 2 and Figure 4, the fixing base 30 includes a fixing plate 31 disposed at one end of the machine compartment 20 away from the shared power bank 500, a support block 33 protruding from the middle of the fixing plate 31, and extension blocks 35 disposed at opposite ends of the fixing plate 31; the driving member 80 is disposed on the support block 33, engaging members 50 are respectively disposed on opposite sides of each extension block 35, the rotating portion 51 of each engaging member 50 is rotatably connected to the extension block 35, and one end of the adjusting portion 55 of each engaging member 50 away from the hook 53 extends to the corresponding driving member 80. The driving member 80 pushes against the abutting block 554 of the engaging member 50 to cause the engaging member 50 to rotate along the rotating portion 51, so that the hook 53 of the engaging member 50 disengages from the corresponding shared power bank 500.

[0027] Two through holes 311 and two connection holes 312 are respectively disposed at opposite ends of the fixing plate 31. The two through holes 311 and the two connection holes 312 are arranged in a row along the width direction of the fixing plate 31, and the two connection holes 312 are located between the two through holes 311. The support block 33 is provided with two receiving grooves 331 spaced apart from each other, and the receiving grooves 331 penetrate through the fixing plate 31; the support block 33 is provided with a receiving hole 333 in the middle of each receiving groove 331. The support block 33 is provided with fixing holes 335 at the end portions on opposite sides of each receiving groove 331; the fixing plate 31 is provided with through holes 315 at both ends of each receiving groove 331, and the through holes 315 communicate with the corresponding receiving grooves 331, and the through holes 315 are for the penetration of the abutting member 90.

[0028] One rotating shaft 351 is respectively protruded on opposite sides of one end of each extension block 35 away from the fixing plate 31. The rotating shaft 351 is used for being inserted into the rotating hole 510 of the corresponding engaging member 50 to facilitate the rotation of the engaging member 50 along the rotating shaft 351.

[0029] Positioning rods 355 are respectively protruded at opposite ends of the fixing base 30. Each positioning rod 355 is located between the two engaging members 50 at the same end of the fixing base 30, and the positioning rod 355 is used for sleeving the reset member 60. The fixing base 30 is respectively provided with pre-tensioning washers 356 adjacent to the two engaging members 50 at each positioning rod 355 to facilitate the pre-tightening of the reset member 60 during installation, so that the position of the engaging member 50 is kept stable before installation. Specifically, the positioning rod 355 is located in the middle of the intersection of the fixing plate 31 and each extension block 35, and a convex cover is provided at the top end of the positioning rod 355 for preventing the reset member 60 from disengaging from the positioning rod 355; the two spaced pre-tensioning washers 356 are located on the top surface of each extension block 35 on the side of the corresponding positioning rod 355 away from the fixing plate 31.

[0030] As Figure 1 And Figure 5As shown, each reset member 60 is disposed between the two engaging members 50 at the end of the fixed base 30. The reset member 60 includes two reset rods 62 extending in opposite directions, and the two reset rods 62 elastically push against the corresponding two engaging members 50. In this embodiment, the reset member 62 is a torsion spring sleeved on the corresponding positioning rod 355. The torsion spring includes a torsion spring body 61 wound in a spiral. The two reset rods 62 respectively extend outward from the opposite ends of the torsion spring, that is, the two reset rods 62 respectively extend outward from the opposite ends of the torsion spring body 61.

[0031] Each driving member 80 is used to push against the adjusting portions 55 of the two engaging members 50 that are respectively engaged on the opposite sides of the same shared power bank 500, so that the hooks 53 of the engaging members 50 are disengaged from the shared power bank 500. In this embodiment, the driving member 80 is a solenoid valve, and the solenoid valve is electrically connected to the main control circuit board. The driving member 80 includes a movable piston rod 82 (as Figure 8 shown). The solenoid valve can control the extension and contraction of the movable piston rod 82. When the movable piston rod 82 extends, it can push against the abutting blocks 554 of the corresponding two engaging members 50. When the movable piston rod 82 contracts, the pushing against the abutting blocks 554 is released. An installation plate 84 is provided at the bottom of the driving member 80, and through holes 842 are respectively provided at the opposite ends of the installation plate 84.

[0032] As Figure 4 shown, the abutting member 90 is an elastic ejector pin. In this embodiment, the number of elastic ejector pins is four.

[0033] Please refer to Figure 6 and Figure 7When assembling the shared power bank storage device 100, insert the bottom ends of the four abutting members 90 into the four through holes 315 of the fixing base 30 respectively, so that the bottom end of each abutting member 90 passes through the fixing base 30; install the two reset members 60 on the two positioning rods 355 of the fixing base 30 respectively. Specifically, the torsion spring body 61 of each reset member 60 is sleeved on the positioning rod 355, and the two reset rods 62 respectively abut against the two preloading washers 356; place two of the clamping members 50 on the opposite sides of one of the extension blocks 35 of the fixing base 30 respectively, so that the two rotary shafts 351 of the extension block 35 are respectively inserted into the rotary holes 510 of the two clamping members 50, the adjusting portion 55 of each clamping member 50 is accommodated in the corresponding receiving groove 331, and the abutting block 554 of the adjusting portion 55 extends into the corresponding accommodating hole 333; place the other two clamping members 50 on the opposite sides of the other extension block 35 of the fixing base 30 respectively, so that the two rotary shafts 351 of the extension block 35 are respectively inserted into the rotary holes 510 of the clamping members 50, and the adjusting portion 55 of each clamping member 50 is accommodated in the corresponding receiving groove 331; that is, the hooks 53 of the two clamping members 50 in the same receiving groove 331 are used to clamp the same shared power bank 500, and the abutting blocks 554 of the two clamping members 50 both extend into the accommodating holes 333. Place the two driving members 80 on the support block 33 respectively, and the moving piston rods 82 of the two driving members 80 respectively extend into the accommodating holes 333. A number of locking members respectively pass through the through holes 842 of the mounting plate 84 and are locked in the corresponding fixing holes 335 to fix the two driving members 80 at the fixing position 30; at this time, the reset rods 62 of each reset member 60 respectively push between the adjusting portion 55 and the rotating portion 51 of the corresponding clamping member 50, and each moving piston rod 82 contacts the corresponding two abutting blocks 554. Each abutting member 90 is accommodated in the corresponding avoidance groove 552, and the moving piston rod 82 of each driving member 80 contacts the abutting blocks 554 of the two clamping members 50 in the corresponding accommodating hole 333, that is, the extension of the moving piston rod 82 can push the two clamping members 50 to rotate one week.

[0034] Then, the fixing base 30 is installed on the machine compartment 20. Specifically, the fixing plate 31 is placed on the two support plates 211 of the machine compartment 20. The bottom ends of the four abutting members 90 respectively pass through the four positioning cylinders 215 and extend into the accommodating cavity 201 of the machine compartment 20. Each connecting rod 214 is inserted into the corresponding connecting hole 312. The four through holes 311 respectively face the four connecting cylinders 213 of the machine compartment 20. A plurality of locking members respectively pass through the through holes 311 and are locked in the corresponding connecting cylinders 213. At this time, the two extension blocks 35 are respectively located outside the two support plates 211. The hook 53 of each clamping member 50 is inserted into the corresponding longitudinal through groove 231 of the machine compartment 20, so that the hook 53 is located in the accommodating cavity 201 of the machine compartment 20. At this time, the rotation axis line of the rotating part 51 of each clamping member 50 is perpendicular to the direction in which the shared power bank 500 is inserted into the machine compartment 20, and the rotation axis line of the rotating part 51 is closer to the center of the fixing base 30 than the corresponding hook 53.

[0035] At this time, the hook 53, the rotating part 51 and the adjusting part 55 of each clamping member 50 form a similar lever structure. The moving piston rod 82 of the driving member 80 abuts against the adjusting part 554 of the corresponding two clamping members 50, so that the clamping member 50 rotates along the rotating shaft 351, so as to force the hook 53 to move away from the corresponding shared power bank 500; The hook 53, the rotating part 51 of each clamping member 50 and the reset rod 62 of the corresponding reset member 60 form another lever structure. The reset rod 62 of the reset member 60 elastically abuts against the adjusting part 55 of the corresponding clamping member 50 near the rotating part 51, so that the clamping member 50 rotates along the rotating shaft 351, so as to force the hook 53 to move towards the corresponding shared power bank 500 and be clamped to the shared power bank 500. The two reset rods of each reset member 60 respectively elastically abut against the two clamping members 50 at the same end of the fixing base 30, so as to drive each clamping member 50 to rotate along the corresponding rotating shaft 351, so as to force the hook 53 to move towards the inside of the machine compartment 20.

[0036] Please refer to Figures 9 to 11 together. When using the shared power bank storage device 100 to store the shared power bank 500, clamping grooves 501 are respectively provided at the positions adjacent to the ends on the opposite sides of the shared power bank 500 (as Figure 2As shown in the figure, insert one end of each shared power bank 500 with a clamping groove 501 into the accommodating cavity 201 of the cabinet 20. The opposite side walls of the shared power bank 500 respectively slide and push against the guiding surfaces 530 of the hooks 53 of the two clamping members 50, so that each clamping member 50 rotates along the corresponding rotating shaft 351 to push the hook 53 to move towards the corresponding longitudinal through groove 231. The adjusting part 55 moves towards the middle of the fixed seat 30 and pushes against the corresponding reset rod 62, causing each reset rod 62 to elastically deform; and the end wall of the shared power bank 500 presses against the corresponding abutting member 90. Continue to insert the shared power bank 500 into the accommodating cavity 201 of the cabinet 20 until the hooks 53 of the two clamping members 50 are respectively facing the two clamping grooves 501 of the shared power bank 500. Then the two reset rods 62 elastically reset and drive the corresponding two clamping members 50 to rotate back along the corresponding rotating shaft 351, so that the hooks 53 of the two clamping members 50 are respectively inserted into the corresponding clamping grooves 501 of the shared power bank 500, and the abutting member 90 elastically abuts against the end wall of the shared power bank 500, so that the shared power bank 500 is stored in the shared power bank storage device 100, and the shared power bank 500 is electrically connected to the main control circuit board to facilitate charging the shared power bank 500.

[0037] If a user needs to borrow a shared power bank 500, the user uses a mobile device to scan the QR code on the shared power bank storage device 100 to pay the deposit, and then can rent a power bank. Specifically, after the user scans the QR code and pays the deposit, the main control circuit board of the shared power bank storage device 100 controls the corresponding driving member 80 to drive the moving piston rod 82 to extend. The moving piston rod 82 pushes against the abutting blocks 554 of the clamping members 50 on both sides of the corresponding shared power bank 500, so that the two clamping members 50 rotate along the corresponding rotating shaft 351, that is, the adjusting part 55 of the clamping member 50 moves towards the middle of the fixed seat 30, and the hook 53 moves towards the outside away from the shared power bank 500 until the hooks 53 of the two clamping members 50 both disengage from the two clamping grooves 501 of the shared power bank 500. The two abutting members 90 elastically reset to push the shared power bank 500 out of the cabinet 20 for the user to extract.

[0038] In other embodiments, a plurality of shared power bank storage devices 100 can be arranged horizontally and / or vertically in one body to store more shared power banks 500.

[0039] The above are the implementation manners of the embodiments of the present invention. It should be noted that for those of ordinary skill in the art in the technical field, without departing from the principle of the embodiments of the present invention, several improvements and refinements can be made, and these improvements and refinements are also regarded as the protection scope of the present invention.

Claims

1. A shared power bank storage device, characterized in that, It includes a cabin for plugging in a shared power bank, a fixing seat provided in the cabin, several clamping members rotatably connected to the end of the fixing seat, a reset member for forcing the clamping members to reset, a driving member for driving the clamping members to rotate, and an elastic abutting member provided on the fixing seat. The abutting member passes through the cabin and abuts against the shared power bank; at least one clamping member is rotatably provided at the end of the fixing seat corresponding to a shared power bank, and the at least one clamping member is used for clamping at least one shared power bank. On the two opposite sides of each shared power bank at the same end of the fixing seat, a clamping member is respectively provided; the reset member includes two reset rods extending in opposite directions, and the two reset rods elastically push the corresponding two clamping members so that each clamping member clamps the corresponding shared power bank; each clamping member includes a rotating portion rotatably connected to the fixing seat, a hook located at one end of the rotating portion, and an adjusting portion located at the other opposite end of the rotating portion. Each driving member is used for driving the corresponding clamping member to rotate. The hook, the rotating portion and the adjusting portion of each clamping member form a lever structure. The driving member pushes the adjusting portions of the corresponding two clamping members so that the clamping member rotates along the rotating portion, forcing the hook to move away from the corresponding shared power bank to disengage from the corresponding shared power bank; the hook, the rotating portion of each clamping member and the corresponding reset member form another lever structure. The reset member elastically abuts against the adjusting portions of the corresponding two clamping members so that the clamping member rotates along the rotating portion, forcing the hook to move towards the corresponding shared power bank.

2. The shared power bank storage device according to claim 1, wherein The two clamping members are used for jointly clamping the shared power bank, and the driving member is used for driving the two clamping members on the opposite sides of the shared power bank to rotate to disengage from the shared power bank.

3. The shared power bank storage device according to claim 2, characterized in that, The hook is used for clamping the corresponding shared power bank. The end of the adjusting portion away from the hook extends to the middle position of the fixing seat. The driving member is arranged at the middle position of the fixing seat. The driving member abuts against the corresponding adjusting portion to make the clamping member rotate along the rotating portion, so that the hook disengages from the corresponding shared power bank.

4. The shared power bank storage device according to claim 1, wherein The rotation axis line of the rotating portion of each clamping member is perpendicular to the direction in which the shared power bank is inserted into the cabin, and the rotation axis line of the rotating portion is closer to the center of the fixing seat than the corresponding hook.

5. The shared power bank storage device according to claim 1, wherein The fixing seat includes a fixing plate provided on the side of the cabin away from the shared power bank, a support block protruding from the middle of the fixing plate, and extension blocks provided at the opposite ends of the fixing plate. The driving member is arranged on the support block. Clamping members are respectively arranged on the two opposite sides of each extension block. The rotating portion of each clamping member is rotatably connected to the extension block, and the end of the adjusting portion of each clamping member away from the hook extends to the corresponding driving member.

6. The shared power bank storage device according to claim 5, wherein, On the two opposite sides of each end of each extension block away from the fixing plate, a rotating shaft protrudes respectively. The rotating portion of each clamping member is provided with a rotating hole, and each rotating shaft is inserted into the corresponding rotating hole so that the clamping member rotates along the corresponding rotating shaft.

7. The shared power bank storage device according to claim 6, wherein On the side of the rotating part facing the adjusting part, two arc-shaped tabs protrude outward near the middle, and the two tabs enclose the rotating hole.

8. The shared power bank storage device according to claim 5, wherein, The support block of the fixed seat is provided with two receiving grooves spaced apart from each other. The adjusting parts of the two clamping parts on the same side of the fixed seat are received in the same receiving groove. A driving part is correspondingly arranged on each receiving groove of the fixed seat. The driving part includes a telescopic driving rod. The extension of the driving part pushes against the two adjusting parts in the same receiving groove, driving the corresponding two clamping parts to rotate together, so that the hooks of the two clamping parts are disengaged from the shared power bank.

9. The shared power bank storage device according to claim 1, characterized in that, Each reset part is arranged at the end of the fixed seat between the two clamping parts. The two reset rods respectively elastically push against the two clamping parts at the same end of the fixed seat to drive each clamping part to rotate along the corresponding rotating shaft, so as to force the hook to move towards the corresponding shared power bank.

10. The shared power bank storage device according to claim 9, characterized in that, Positioning rods protrude from opposite ends of the fixed seat respectively. Each positioning rod is located between the two clamping parts at the same end of the fixed seat. The reset part is a torsion spring sleeved on the positioning rod, and the two reset rods respectively extend outward from opposite ends of the torsion spring.

11. The shared power bank storage device according to claim 10, wherein, The fixed seat is respectively provided with preloading flanges near the two clamping parts of each positioning rod. When installing the torsion spring, the two positioning rods of the torsion spring are respectively abutted against the two preloading flanges.

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