Charging gun storage and transportation device and working method thereof

By designing a combined structure of chute, slide bar, slider and stabilizing spring, the problem of easy damage during transportation of charging guns was solved, achieving safe transportation and efficient storage, and improving space utilization and equipment management efficiency.

CN121361632APending Publication Date: 2026-01-20HEFEI ELECTRIC VEHICLE CHARGING FACILITIES INVESTMENT & OPERATION CO LTD
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Patent Information

Application Number
CN202511946960.1
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-12-23
Publication Date
2026-01-20

AI Technical Summary

Technical Problem

Existing charging gun transport devices are prone to damage during transportation, such as shell breakage, interface deformation, or loosening of internal components, leading to equipment failure. Furthermore, they have low space utilization during storage and are difficult to manage in a standardized manner.

Method used

A charging gun storage and transportation device was designed, which includes a box, a box cover, and a shockproof device. The shockproof device absorbs vibration energy and disperses impact force through a combination of sliding grooves, sliding rods, sliding blocks and stabilizing springs, and achieves classified storage in combination with the placement slots on the placement plate.

Benefits of technology

It effectively buffers vibration and impact during transportation, protects the charging gun from damage, improves space utilization, simplifies maintenance procedures, extends equipment life, and reduces maintenance costs.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses a charging gun storage and transportation device and a working method thereof, and relates to the technical field of electric vehicle charging equipment.The charging gun storage and transportation device comprises a box body, the surface of the box body is rotationally connected with a box cover, and an anti-vibration device is installed in the box body. The safety of the charging gun in the transportation and storage process is improved, a sliding structure that a sliding groove in the device is matched with a sliding rod and a sliding block is matched with symmetrically-arranged stable springs, vibration impact force in different directions during transportation can be effectively buffered, when the box body is shaken by external force, the sliding block slides along the sliding rod, the stable springs absorb vibration energy through telescopic deformation, and the safety of the charging gun is improved. Meanwhile, the supporting rod rotates around the first rotating shaft and the second rotating shaft, impact force is further dispersed, the charging gun is prevented from directly bearing vibration, the problems of interface damage, line looseness and the like caused by vibration of the charging gun are greatly reduced through the overall shockproof design, the requirements for long-distance transportation and complex environment storage are met, and the service life of the charging gun is prolonged.
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Description

TECHNICAL FIELD

[0001] The application relates to the technical field of electric vehicle charging equipment, in particular to a charging gun storage and transportation device and a working method thereof. BACKGROUND

[0002] The charging gun storage and transportation device mainly refers to a special tool or method for protecting the safety of the charging gun during transportation and storage, so as to prevent the device from being damaged or the performance from being reduced, and ensure the safety of the charging gun: the charging gun is placed in the storage box, so that the charging gun is prevented from being collided and the charging gun is prevented from being collided with each other to cause the surface shell to be damaged, and the charging gun is effectively protected when being stored and placed. The applicant finds that a charging gun bag is disclosed in the Chinese patent with the application number CN202322819636.6, the existing upper cover and bottom box are made of oxford cloth, and the charging gun will shake when being pressed, so that the charging gun cannot be conveniently protected, and the following scheme is proposed, which comprises a bag body and a bag cover, one side of the bag body and the bag cover is fixedly connected, the remaining three edges of the bag body and the bag cover are detachably connected to form a box body for storing the charging gun, a containing box is arranged in the bag body, a sponge body is arranged in the containing box, a first containing cavity and a second containing cavity are formed in the top of the sponge body for limiting and fixing the charging gun and the connecting wire, in the application, the bag body can be opened by pressing the containing box to move downward, the charging gun can be stored, and when the charging gun is not stored, the bag body can be folded and stored to save the occupied space and facilitate batch transportation, but during the transportation process, the charging gun placed in the box body will be impacted to different degrees, so that the charging gun placed in the box body is indirectly collided, the charging gun body is easily damaged, the shell is broken, the interface is deformed or the internal components are loose, and the device cannot be used due to the fault, for example, the device in the box body is collided due to the batch loading and the vehicle bumping during the transportation process, or the device is dropped and impacted on the ground when being loaded and unloaded, so the charging gun placed in the box body is collided, therefore, the application provides a charging gun storage and transportation device. SUMMARY

[0003] The application aims to provide a charging gun storage and transportation device and a working method thereof.

[0004] To achieve the above object, the application provides the following technical scheme: a charging gun storage and transportation device, comprising a box, a box cover rotatably connected to the surface of the box, an anti-vibration device mounted in the box, the anti-vibration device comprising a sliding groove, the sliding groove being formed in the interior of the box, a sliding rod fixedly connected to the inner wall of the sliding groove, a sliding block slidably connected to the surface of the sliding rod, a stabilizing spring fixedly connected to the surface of the sliding block, at least two groups of fixing blocks mounted on the surface of the sliding block, a first rotating shaft rotatably connected to the surface of at least two groups of the fixing blocks, a supporting rod rotatably connected to the surface of the first rotating shaft, a second rotating shaft rotatably connected to the surface of the supporting rod, a connecting block fixedly connected to the surface of the second rotating shaft, and a mounting bracket fixedly connected to the surface of the connecting block.

[0005] As a further scheme of the application: the sliding rod penetrates into the interior of the box, the inner wall of the sliding groove is fixedly connected with the stabilizing spring, and the stabilizing spring is arranged in two groups and symmetrically.

[0006] As a further scheme of the application: the stabilizing spring is sleeved with the surface of the sliding rod, and the end of the stabilizing spring away from the sliding groove is fixedly connected with the surface of the sliding block.

[0007] As a further scheme of the application: the surface of the sliding block is provided with an opening, and the opening is slidably connected with the surface of the sliding rod.

[0008] As a further scheme of the application: the upper surface of the fixing block is fixedly connected with the sliding block, and the end of the supporting rod away from the first rotating shaft is rotatably connected with the surface of the second rotating shaft.

[0009] As a further scheme of the application: the connecting block is fixedly connected with the lower surface of the placing bracket, the upper surface of the placing bracket is fixedly connected with a placing plate, and the surface of the placing plate is provided with a plurality of placing grooves.

[0010] The application further discloses a working method of the charging gun storage and transportation device, comprising the following steps: Step one, opening the box cover: holding the handle on the surface of the box cover, rotating the box cover around the box to open, checking the sliding groove, sliding rod, stabilizing spring and placing groove on the surface of the placing plate in the box to ensure that there is no foreign matter blocking and that the components are intact; Step two, placing the charging gun: placing the charging gun to be stored into the placing groove on the surface of the placing plate, the charging gun shell completely adheres to the inner wall of the placing groove, and the outline of the placing groove restricts the horizontal sliding of the charging gun; Step three, closing and locking: rotating the box cover to adhere to the box, tightening the lock to keep the box cover and the box in close contact, forming a closed space, and completing the storage of the charging gun. Step four, shock buffering: when the box is shaken by external force during transportation, the impact force borne by the placement plate is transmitted to the mounting bracket, driving the connecting block and the second rotating shaft to move, and the supporting rod rotates around the first rotating shaft and the second rotating shaft, converting the vertical impact force into horizontal thrust; Step five, energy absorption: the horizontal thrust drives the sliding block to slide along the slide rod, and the stable spring deforms to absorb the vibration energy when the sliding block moves; Step six, reset and stabilization: after the vibration is weakened, the stable spring releases the elastic restoring force, pushing the sliding block to return to the initial position along the slide rod, and the supporting rod reversely rotates to drive the placement plate to reset, maintaining the stable bearing state of the charging gun; Step seven, opening and taking the gun: after arriving at the destination, the lock is loosened in the opposite direction, the handle is held to open the box cover, and the charging gun is directly taken out from the placement slot; Step eight, component inspection: after use, the sliding state of the sliding block, the elasticity of the stable spring, and the flexibility of the supporting rod of the shockproof device are checked, and if the components are abnormal, the corresponding components are directly disassembled and replaced; Step nine, device reset: after maintenance is completed, the box cover is closed and the lock is tightened, so that the device returns to the closed state and waits for the next use.

[0011] As a further scheme of the present application: the surface of the box is rotationally connected with a box cover, the surface of the box cover is fixedly connected with a handle, the surface of the box cover is provided with a lock, and the number of the lock is two groups and is symmetrically arranged.

[0012] Compared with the prior art, the beneficial effects of the present application are as follows: 1. The shockproof device structure is designed to improve the safety of the charging gun during transportation and storage, and the sliding structure of the slide groove in the device, the slide rod and the sliding block is matched with the symmetrically arranged stable spring, which can effectively buffer the vibration impact force in different directions during transportation. When the box is shaken by external force, the sliding block slides along the slide rod, the stable spring absorbs the vibration energy by stretching and deforming, and at the same time the supporting rod rotates around the first rotating shaft and the second rotating shaft, further dispersing the impact force, avoiding the charging gun directly bearing the vibration, greatly reducing the problems of interface damage, line loosening and other problems caused by vibration of the charging gun, adapting to long-distance transportation and complex environment storage needs, prolonging the service life of the charging gun and reducing the maintenance and replacement cost.

[0013] 2. The present application sets multiple groups of placement slots with different specifications on the surface of the placement plate, which can realize the classified and orderly storage of multiple charging guns of different models. This partition storage method not only can avoid the chaotic problem caused by random stacking of charging guns, but also can maximize the use of limited storage space, significantly improve the space utilization rate, and provide strong support for the standardized management of charging equipment, which is convenient for staff to quickly take, count and maintain.

[0014] 3、The application adopts a modular integrated scheme, wherein core shockproof components such as sliding rods and stabilizing springs adopt standardized interfaces and detachable structure design, the disassembly process of components is greatly simplified, the disassembly, maintenance and replacement operation of single components can be completed without complex tools, the difficulty and labor cost of later maintenance are effectively reduced, the long-term stable operation of the shockproof system is ensured, and the service life of the entire storage device is prolonged.

[0015] Other advantages, objects, and features of the application will be set forth in part in the following specification taken in conjunction with the accompanying drawings, and in part will become apparent to those skilled in the art from a consideration of the following specification and drawings, or can be learned from the practice of the application. BRIEF DESCRIPTION OF DRAWINGS

[0016] Figure 1 is a schematic diagram of the three-dimensional structure in the embodiment of the application; Figure 2 is a schematic diagram of the main body of the shockproof device in the embodiment of the application; Figure 3 is a schematic diagram of the main body of the shockproof device in the embodiment of the application; Figure 2 is a schematic diagram of the structure at A in the embodiment of the application; Figure 4 is a schematic diagram of the main body of the mounting bracket in the embodiment of the application; Figure 5 is a schematic diagram of the main body of the mounting bracket in the embodiment of the application; Figure 4 is a schematic diagram of the structure at B in the embodiment of the application.

[0017] In the figure: 1, box body; 2, box cover; 3, handle; 4, lock catch; 5, placing groove; 6, shockproof device; 61, sliding groove; 62, sliding rod; 63, stabilizing spring; 64, sliding block; 65, opening; 66, fixed block; 67, first rotating shaft; 68, supporting rod; 69, placing plate; 610, mounting bracket; 611, connecting block; 612, second rotating shaft. DETAILED DESCRIPTION

[0018] The specific embodiments of the application will be further described below in conjunction with the accompanying drawings, and it should be noted that the description of these embodiments is used to help understand the application, but does not constitute a limitation on the application.

[0019] In addition, the technical features involved in each of the embodiments of the application described below can be combined with each other as long as they do not conflict with each other.

[0020] Please refer to the accompanying drawings Figure 1 - the accompanying drawings Figure 5The application discloses a charging gun storage and transportation device which comprises a box body 1, a box cover 2 is rotationally connected to the surface of the box body 1, a shockproof device 6 is installed in the box body 1, the shockproof device 6 comprises a sliding groove 61, the sliding groove 61 is formed in the box body 1, a sliding rod 62 is fixedly connected to the inner wall of the sliding groove 61, a sliding block 64 is slidably connected to the surface of the sliding rod 62, a stabilizing spring 63 is fixedly connected to the surface of the sliding block 64, at least two groups of fixing blocks 66 are installed on the surface of the sliding block 64, a first rotating shaft 67 is rotationally connected to the surface of the at least two groups of fixing blocks 66, a supporting rod 68 is rotationally connected to the surface of the first rotating shaft 67, a second rotating shaft 612 is rotationally connected to the surface of the supporting rod 68, a connecting block 611 is fixedly connected to the surface of the second rotating shaft 612, a mounting bracket 610 is fixedly connected to the surface of the connecting block 611, the sliding rod 62 is slidably connected with the sliding block 64, and the stabilizing spring 63 is symmetrically arranged, so that vertical vibration can be converted into horizontal elastic buffering, the charging gun can avoid directly bearing violent bumping impact force, the double-rotating-shaft rotating structure at the two ends of the supporting rod 68 can flexibly disperse stress in different directions, concentrated impact force can be decomposed into multiple-point dispersed force, the influence of local stress on the charging gun is reduced, the elastic reset function of the spring can quickly return the device to an equilibrium state, the charging gun can avoid colliding with the inner wall of the box body 1 due to continuous shaking, and the outer shell, the interface and the internal components are protected.

[0021] By adopting the above scheme, the application considers that, although the existing device can realize charging gun storage by pressing the containing box to open the package body, and can save floor space and facilitate batch transportation when not in use, the box body is easy to be displaced and collide in the process of transportation due to batch loading and vehicle bumping, or is easy to be dropped and collide with the ground when loading and unloading, so that the charging gun inside is indirectly collided, the charging gun shell is broken, the interface is deformed or the internal components are loose, and the problem of direct equipment failure and non-use is caused. Therefore, the safety in the process of charging gun transportation and storage is improved by designing the structure of the shockproof device 6, and the sliding structure of the sliding groove 61, the sliding rod 62 and the sliding block 64 in the device is matched with the symmetrically arranged stabilizing spring 63, so that the vibration impact force in different directions during transportation can be effectively buffered. When the box body 1 is shaken by external force, the sliding block 64 slides along the sliding rod 62, the stabilizing spring 63 absorbs vibration energy by stretching and deforming, and the supporting rod 68 rotates around the first rotating shaft 67 and the second rotating shaft 612, so that the impact force is further dispersed, the charging gun directly bears the vibration, the overall shockproof design greatly reduces the problems of interface damage, line loosening and the like caused by vibration of the charging gun, adapts to long-distance transportation and complex environment storage requirements, prolongs the service life of the charging gun, and reduces the maintenance and replacement cost.

[0022] In the embodiment one, the sliding rod 62 penetrates into the inside of the box body 1, the inner wall of the sliding groove 61 is fixedly connected with the stabilizing springs 63, the stabilizing springs 63 are symmetrically arranged in two groups, the stabilizing springs 63 are surface sleevedly connected with the sliding rod 62, one end of the stabilizing springs 63 away from the sliding groove 61 is fixedly connected with the surface of the sliding block 64, and the surface of the sliding block 64 is provided with the opening 65 in a sliding connection with the surface of the sliding rod 62. Specifically, the bidirectional fixing structure of the stabilizing springs 63 realizes efficient shock absorption and buffering, one end of the stabilizing springs 63 is fixedly connected with the inner wall of the sliding groove 61, and the other end is fixedly connected with the surface of the sliding block 64, so that a stable elastic support system is formed, when the placing plate 69 is subjected to downward pressure due to the weight of the charging gun or the transportation bumping or upward reaction force due to vibration, the pressure is transmitted to the connecting block 611 through the placing support, and then the second rotating shaft 612 drives the supporting rod 68 to rotate around the first rotating shaft 67, the rotation of the supporting rod 68 is converted into horizontal thrust on the sliding block 64, so that the sliding block 64 moves along the axis direction of the sliding rod 62, at this time, the stabilizing springs 63 are deformed in an adaptive manner with the movement of the sliding block 64, and the elastic restoring force of the stabilizing springs 63 forms a reverse force, so that the sliding block 64 quickly returns to the balance position, and the entire shockproof structure maintains a stable stress balance state, the rigid elastic force of the stabilizing springs 63 not only provides balanced support, but also guides the sliding block 64 to smoothly and reciprocally slide along the surface of the sliding rod 62, and the upward and downward vibration impact force received by the placing plate 69 is converted into the elastic potential energy of the spring through the sliding displacement, so that the upward and downward vibration amplitude range of the placing plate 69 is effectively buffered and constrained, and the charging gun is prevented from being damaged due to severe bumping, meanwhile, the opening 65 specially arranged on the surface of the sliding block 64 is in precise sliding connection with the sliding rod 62, and this design skillfully avoids the direct contact between the sliding block 64 and the inner wall of the sliding groove 61 during reciprocating movement, the traditional structure that the sliding block 64 is in close contact with the inner wall of the sliding groove 61 is prone to generate large frictional resistance, so that the sliding block 64 is blocked or even stuck, and the device is guided and slid through the sliding rod 62 and the opening 65, so that the frictional stress of the sliding block 64 is greatly reduced, the sliding block 64 is always located in the central region of the sliding groove 61 through the limiting action of the sliding rod 62, and is not in close contact with the inner wall, the frictional sticking problem is avoided from the root, and the operation stability and service life of the shockproof structure are significantly improved.

[0023] In the embodiment two, the fixed block 66 is fixedly connected with the upper surface of the sliding block 64, the supporting rod 68 is rotatably connected with the surface of the second rotating shaft 612 at the end away from the first rotating shaft 67, the connecting block 611 is fixedly connected with the lower surface of the placing support, the upper surface of the placing support is fixedly connected with the placing plate 69, the surface of the placing plate 69 is provided with a plurality of placing grooves 5, the surface of the box body 1 is rotatably connected with the box cover 2, the surface of the box cover 2 is fixedly connected with the handle 3, and the surface of the box cover 2 is provided with the lock catch 4 arranged in two groups and symmetrically. Specifically, the anti-vibration performance is further optimized by the rotating connection structure at both ends of the supporting rod 68, one end of which is rotatably connected to the fixed block 66 on the surface of the sliding block 64 through the first rotating shaft 67, and the other end is stably connected to the connecting block 611 through the second rotating shaft 612, forming a bidirectional rotatable force transmission structure. When the placing plate 69 is subjected to up-down amplitude pressure, the supporting rod 68 can flexibly and stably rotate around the shafts of the first rotating shaft 67 and the second rotating shaft 612. The precise fit between the rotating shafts and the rod body eliminates the rotating gap, avoids the phenomenon of rotation obstruction or jamming of the supporting rod 68, and more importantly, the double-rotating-shaft constraint structure can limit the movement track of the placing plate 69, ensuring that it only moves in the vertical direction with amplitude, avoiding the horizontal position deviation of the placing plate 69 when it bounces up and down, and ensuring that the charging gun is always in a stable bearing state. In addition, the rotating connection of the box cover 2 and the box body 1, the handle 3 and the symmetrically arranged lock catch 4 form a complete protection. The handle 3 can easily control the opening and closing of the box cover 2. After closing, the lock catch 4 is tightened to form a firm closing constraint on the box cover 2, preventing the device from tipping over or the box cover 2 from accidentally opening when the device is in transport, avoiding damage to the internal charging gun, and the charging gun can be directly placed and taken from above the box body 1, which is convenient and efficient. At the same time, the placing groove 5 on the surface of the placing plate 69 is a profiled structure that is opened to match the size of the charging gun body, and its contour is highly compatible with the charging gun shell, which can limit and fix the charging gun in all directions, effectively preventing the charging gun from sliding left and right horizontally in the box body 1 due to transportation shaking, preventing collision between the gun body and the box wall or between the gun bodies, and further improving the structural protection of the device.

[0024] The application also discloses a working method of the charging gun storage and transportation device. Step one, open the box cover: hold the handle 3 on the surface of the box cover 2, and rotate the box cover 2 around the box body 1 to open it. Check the sliding groove 61, sliding rod 62, stabilizing spring 63 of the anti-vibration device 6 in the box body 1 and the placing groove 5 on the surface of the placing plate 69 to ensure that there is no obstruction, and that the components are intact. Step two, place the charging gun: place the charging gun to be stored into the placing groove 5 on the surface of the placing plate 69, and make the charging gun shell completely fit the inner wall of the placing groove 5 to limit the horizontal sliding of the charging gun through the contour of the placing groove 5. Step three, close and lock: rotate the box cover 2 to fit the box body 1, tighten the lock catch 4, and keep the box cover 2 and the box body 1 in close contact to form a closed space, and complete the storage of the charging gun. Step four, vibration buffering: when the box body 1 is subjected to external force vibration during transportation, the impact force borne by the placing plate 69 is transmitted to the mounting bracket 610, driving the connecting block 611 and the second rotating shaft 612 to move, and the supporting rod 68 rotates around the first rotating shaft 67 and the second rotating shaft 612, converting the vertical impact force into horizontal thrust. Step five, energy absorption: horizontal thrust drive slider 64 along the slide rod 62, stable spring 63 with slider 64 movement produces extension deformation, absorbing shock energy; Step six, reset stable: after the shock is weakened, the stable spring 63 releases the elastic recovery force, pushes the slider 64 along the slide rod 62 to return to the initial position, the support rod 68 reversely rotates to drive the placement plate 69 to reset, and keeps the stable charging gun bearing state; Step seven, open the gun: after reaching the destination, reverse unscrew the lock 4, hold the handle 3 to open the box cover 2, and directly take out the charging gun from the placement slot 5; Step eight, component inspection: after use, check the sliding state of the slider 64, the elasticity of the stable spring 63 and the rotation flexibility of the support rod 68 of the shockproof device 6. If the components are abnormal, directly disassemble and replace the corresponding components; Step nine, device reset: after maintenance, close the box cover 2 and tighten the lock 4 to make the device return to the closed state and wait for next use.

[0025] Working principle: first, hold the corresponding handle 3 of the box body 1 to open the box cover 2, check whether the internal shockproof device 6 and the placement slot 5 on the placement plate 69 are intact and free from obstruction, then put each charging gun into the corresponding placement slot 5, use the fit structure of the placement slot 5 and the charging gun shell to realize the limiting and fixing of the charging gun, avoid horizontal sliding and mutual collision during storage and transportation, after placement, rotate the box cover 2 to tightly close it with the box body 1, tighten the lock 4 at the box cover 2, form reliable closure constraint through the fastening effect of the lock 4, prevent the box cover 2 from being accidentally opened during transportation or carrying, causing the charging gun to fall and be damaged, complete the closed process of charging gun storage, when the device encounters bumps or impacts, the impact force borne by the placement plate 69 is transmitted to the installation bracket 610 and the connecting block 611 below, the connecting block 611 drives the connected components to push the support rod 68, the support rod 68 rotates around the shaft at both ends to convert the vertical impact force into horizontal thrust on the slider 64, the slider 64 smoothly slides along the slide rod 62 in the slide groove 61, at the same time drives the stable spring 63 connected thereto to produce extension deformation, converts the impact force into elastic potential energy, after the shock is weakened, the stable spring 63 relies on the elastic recovery force to generate reverse force, pushes the slider 64 to return to the initial equilibrium position along the slide rod 62, the support rod 68 reversely rotates with the slider 64 to reset the placement plate 69, continuously keeps the stable bearing state of the charging gun, avoids the charging gun directly bearing the shock throughout the process, after reaching the destination, loosen the lock 4 to open the box cover 2, directly take out the charging gun from the placement slot 5, after use, check whether the components of the shockproof device 6 are normal, if the components are found to be abnormal, the related components can be conveniently disassembled and replaced to ensure normal use of the device, thus the whole working process is completed.

[0026] The above front, back, left, right, up and down are with respect to the Figure 1For reference.

[0027] In the description of the present application, it should be understood that the terms "center", "longitudinal", "transverse", "front", "back", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer" and the like indicate the orientation or positional relationship based on the orientation or positional relationship shown in the drawings, and are only for the purpose of facilitating the description of the present application and simplifying the description, and do not indicate or imply that the device or element referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as a limitation on the scope of protection of the present application.

[0028] The embodiments of the present application are described in detail above in combination with the drawings, but the present application is not limited to the described embodiments.

[0029] For those skilled in the art, various changes, modifications, replacements and variations can be made to these embodiments without departing from the principles and spirits of the present application, and still fall within the scope of protection of the present application.

Claims

1. A charging gun storage and transport device comprising a box (1), characterized in that: The surface of the box (1) is rotatably connected with a box cover (2), the inside of the box (1) is provided with a shockproof device (6), the shockproof device (6) comprises a sliding groove (61), the sliding groove (61) is arranged in the inside of the box (1), the inner wall of the sliding groove (61) is fixedly connected with a sliding rod (62), the surface of the sliding rod (62) is slidably connected with a sliding block (64), the surface of the sliding block (64) is fixedly connected with a stabilizing spring (63), the surface of the sliding block (64) is provided with at least two groups of fixing blocks (66), the surface of the at least two groups of fixing blocks (66) is rotatably connected with a first rotating shaft (67), the surface of the first rotating shaft (67) is rotatably connected with a supporting rod (68), the surface of the supporting rod (68) is rotatably connected with a second rotating shaft (612), the surface of the second rotating shaft (612) is fixedly connected with a connecting block (611), and the surface of the connecting block (611) is fixedly connected with a mounting bracket (610).

2. The charging gun storage and transportation device according to claim 1, characterized in that: The sliding rod (62) penetrates into the inside of the box (1), the inner wall of the sliding groove (61) is fixedly connected with the stabilizing spring (63), and the stabilizing spring (63) is arranged in two groups and is symmetrically arranged.

3. The charging gun storage and transportation device of claim 1, wherein: The stabilizing spring (63) is sleeved with the surface of the sliding rod (62), and one end, away from the sliding groove (61), of the stabilizing spring (63) is fixedly connected with the surface of the sliding block (64).

4. The charging gun storage and transportation device of claim 1, wherein: The surface of the sliding block (64) is provided with an opening (65), and the opening (65) is slidably connected with the surface of the sliding rod (62).

5. The charging gun storage and transport device of claim 1, wherein: The surface of the sliding block (64) is provided with an opening (65), and the opening (65) is slidably connected with the surface of the sliding rod (62).

6. The charging gun storage and transport device of claim 1, wherein: The surface of the sliding block (64) is provided with an opening (65), and the opening (65) is slidably connected with the surface of the sliding rod (62).

7. The charging gun storage and transport device of claim 1, wherein: The surface of the box (1) is rotatably connected with a box cover (2), the surface of the box cover (2) is fixedly connected with a handle (3), the surface of the box cover (2) is provided with a lock buckle (4), and the number of the lock buckles (4) is two and symmetrically arranged.

8. A method of operating a charging gun storage and transport device according to any one of claims 1 to 7, characterized in that, The steps include the following steps: Step one, opening the box cover: hold the handle (3) on the surface of the box cover (2), drive the box cover (2) to rotate around the box (1) to open, and check the sliding groove (61), the sliding rod (62), the stabilizing spring (63) and the placing groove (5) on the surface of the placing plate (69) of the shockproof device (6) in the box (1); Step two, placing the charging gun: the charging gun to be stored is placed in the placing groove (5) on the surface of the placing plate (69), and the outline of the placing groove (5) restricts the horizontal sliding of the charging gun; Step three, closing and locking: rotate the box cover (2) to be attached to the box (1), and tighten the lock buckle (4).

9. The method of operating a charging gun storage and transport device of claim 8, wherein, It also includes a shockproof transportation step: Step four, shock buffering: when the box (1) is shaken by external force during transportation, the impact force borne by the placement plate (69) is transmitted to the mounting bracket (610), driving the connecting block (611) and the second rotating shaft (612) to move, and the supporting rod (68) rotates around the first rotating shaft (67) and the second rotating shaft (612); Step five, energy absorption: the horizontal thrust drives the sliding block (64) to slide along the slide rod (62), and the stable spring (63) moves with the sliding block (64) to produce extension and contraction deformation; Step six, reset and stabilize: after the shock is weakened, the stable spring (63) releases the elastic recovery force, pushes the sliding block (64) to return to the initial position along the slide rod (62), and the supporting rod (68) reversely rotates to drive the placement plate (69) to reset.

10. The method of operating a charging gun storage and transport device of claim 8, wherein, It also includes the steps of taking out and maintaining: Step seven, open the gun: after arriving at the destination, unscrew the lock catch (4) in the opposite direction, hold the handle (3) to open the box cover (2), and directly take out the charging gun from the placement slot (5); Step eight, component inspection: after taking out, check the sliding state of the sliding block (64) of the shockproof device (6), the elasticity of the stable spring (63), and the rotating flexibility of the supporting rod (68). If the components are abnormal, directly disassemble and replace the corresponding components; Step nine, device reset: after maintenance is completed, close the box cover (2) and tighten the lock catch (4) to make the device return to the closed state and wait for the next use.

Citation Information

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