Movable energy storage equipment

The rotatable control panel design solves the problem of easy damage to the control panel of mobile energy storage equipment when it is not in use, and enables safe transportation and extended service life of the equipment in complex environments.

CN121508066APending Publication Date: 2026-02-10湖南格兰博科技股份有限公司
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Patent Information

Application Number
CN202511701274.8
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-11-19
Publication Date
2026-02-10

AI Technical Summary

Technical Problem

The control panel of existing mobile energy storage devices is easily damaged by scratches when not in use, which can lead to damage to the display screen, buttons and interfaces, affecting the service life of the equipment.

Method used

It adopts a rotatable control panel structure. When in use, the panel rotates to the outside of the equipment, and when not in use, it rotates to the inside of the equipment. The protective shell, protective box and side panels form physical protection to reduce damage to the panel.

Benefits of technology

It effectively protects the safety of the control panel when not in use, extends the service life of the equipment, and adapts to mobile transportation in complex outdoor environments.

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Abstract

The invention provides mobile energy storage equipment which comprises a protective shell, a protective box and a side plate are installed on the front face of the protective shell, the protective box communicates with the protective shell, a connecting port and a connecting groove are formed in the faces, close to each other, of the protective box and the side plate correspondingly, and an operation panel structure is rotationally connected between the connecting port and the connecting groove. The operation panel structure comprises two connecting pipes connected with the connecting port and the connecting groove respectively, a protection box is fixedly communicated between the two connecting pipes, an operation panel body is arranged on the front face of the protection box, and a fixing piece is arranged between the protection box and the protection box. In a normal use state, the operation panel structure rotates to enable the operation panel main body to face the outside of the protective shell to meet use requirements, and when the operation panel structure is transferred or stored in a non-use state, the operation panel main body rotates to face the protective shell, and at the moment, the protective shell, the protective box, the side plate and the protective box can form physical protection.
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Description

TECHNICAL FIELD

[0001] The present application belongs to the technical field of energy storage, and particularly relates to a mobile energy storage device. BACKGROUND

[0002] With the rapid development of mobile energy storage technology, mobile energy storage devices are increasingly widely applied in fields such as outdoor operation, emergency power supply, and charging of portable electronic devices. However, the existing mobile energy storage devices generally have the following technical defects: The control panel of a traditional device is usually fixed to the surface of the device shell. During transportation or storage in a non-use state, the control panel is prone to damage due to scratches, affecting the service life of the device. SUMMARY

[0003] The present application aims to solve the problems of the prior art and provides a mobile energy storage device.

[0004] To achieve the above-mentioned purpose, the technical solution of the present application is as follows: The present application provides a mobile energy storage device, which comprises a protective shell, a protective box and a side plate are installed on the front face of the protective shell, and the protective box is in communication with the protective shell, one side of the protective box and the side plate close to each other is respectively provided with a connecting port and a connecting groove, an operating panel structure is rotatably connected between the connecting port and the connecting groove, the operating panel structure comprises two connecting pipes connected with the connecting port and the connecting groove respectively, a protective box is fixedly connected and communicated between the two connecting pipes, an operating panel main body is arranged on the front face of the protective box, and a fixing member is arranged between the protective box and the protective box.

[0005] A communication port is formed on the front face of the protective shell, the position of the communication port corresponds to the position of the protective box, and the communication port is used to realize the communication between the protective box and the protective shell.

[0006] In one embodiment, the fixing member comprises a groove and a chamber formed on the protective box, a baffle is slidably connected in the chamber, a limiting rod is fixedly connected to the middle part of the baffle, one end of the limiting rod extends into the groove and is fixedly connected with a push plate, and a first limiting groove and a second limiting groove that cooperate with the limiting rod are formed on one side of the protective box close to the protective box.

[0007] The first limiting groove and the second limiting groove are respectively located below and above the connecting port.

[0008] A spring is sleeved on the outer surface of the limiting rod, and the spring is located in the chamber.

[0009] In one embodiment, the side plate, the protective box and the protective box are all provided with a second heat dissipation port on the side close to each other.

[0010] The back surface of the protective shell is provided with a back plate, a plurality of first heat dissipation openings are formed in the back plate, and a plurality of heat dissipation fans corresponding to the positions of the first heat dissipation openings are mounted on the inner side of the back plate.

[0011] A plurality of batteries are mounted in the protective shell, and heat dissipation channels are formed between the batteries.

[0012] The batteries are connected with a spiral cable, the spiral cable passes through the communication opening, the connecting opening and the connecting pipe connected with the connecting opening and extends into the protective box, and the spiral cable is connected with the operation panel body.

[0013] In one embodiment, a handle is fixedly mounted on the top of the protective shell.

[0014] Compared with the prior art, the mobile energy storage device adopts a rotatable operation panel structure, in the normal use state, the operation panel structure is rotated so that the operation panel body faces the outside of the protective shell to meet the use requirement, and in the non-use state, the operation panel body is rotated to face the protective shell, at this time, the protective shell, the protective box, the side plate and the protective box can form physical protection, reduce the damage of the display screen, the keys and the interface of the operation panel body, compared with the protection structure that the control panel is driven by the motor, the rotatable design is more convenient for manual operation, and the overall structure is simpler and lighter, and can better adapt to the movement and transportation in the complex outdoor terrain such as mountainous forest. BRIEF DESCRIPTION OF DRAWINGS

[0015] Figure 1 It is a perspective view of the mobile energy storage device of the application; Figure 2 It is a perspective view of the mobile energy storage device of the application; Figure 3 It is an exploded view of the mobile energy storage device of the application; Figure 4 It is a structure view of the connecting groove; Figure 5 It is a top view of the protective box; Figure 6 It is a structure view of the operation panel structure; Figure 7 It is a structure view of the mobile energy storage device of the application in the non-use state.

[0016] Explanation of reference signs: 1. Protective shell; 101. Protective box; 102. Side plate; 103. Connection port; 104. Connection groove; 105. Back plate; 106. Handle; 107. First heat dissipation vent; 108. Connecting port; 2. Operation panel structure; 201. Protective box; 202. Connecting pipe; 203. Operation panel body; 204. Groove; 205. Chamber; 206. Baffle; 207. Limiting rod; 208. Spring; 209. Push plate; 3. Second heat dissipation vent; 4. First limiting groove; 5. Second limiting groove. Detailed Implementation

[0017] See also Figures 1-6 This embodiment provides a mobile energy storage device, including a protective shell 1. A protective box 101 and a side plate 102 are mounted on the front of the protective shell 1, and the protective box 101 is connected to the protective shell 1. A connection port 103 and a connection groove 104 are respectively provided on the sides of the protective box 101 and the side plate 102 that are close to each other. An operation panel structure 2 is rotatably connected between the connection port 103 and the connection groove 104. The operation panel structure 2 includes two connecting pipes 202 that are respectively connected to the connection port 103 and the connection groove 104. A protective box 201 is fixedly connected between the two connecting pipes 202. An operation panel body 203 is provided on the front of the protective box 201. The main body 203 of the control panel is bolted to the protective box 201. The protective box 201 is connected to the connecting pipe 202 to allow for wiring. A fastener is provided between the protective box 201 and the protective case 101. Under normal use, the control panel structure 2 rotates so that the main body 203 of the control panel faces outward from the protective case 1 to meet usage requirements. When transporting or storing the control panel in a non-use state, the main body 203 of the control panel rotates to face the protective case 1. At this time, the protective case 1, the protective case 101, the side plate 102 and the protective box 201 can form physical protection to reduce the damage to the display screen, buttons and interfaces of the main body 203 of the control panel.

[0018] Furthermore, the protective shell 1 has a communication port 108 on its front side, and the position of the communication port 108 corresponds to the position of the protective box 101. The communication port 108 is used to realize the communication between the protective box 101 and the protective shell 1. The protective box 101 and the protective shell 1 are connected by bolts, and the side plate 102 is also connected to the protective shell 1 by bolts.

[0019] Furthermore, the fasteners include a groove 204 and a chamber 205 formed on the protective box 201. A baffle 206 is slidably connected in the chamber 205. A limiting rod 207 is fixedly connected to the middle of the baffle 206. One end of the limiting rod 207 extends into the groove 204 and is fixedly connected to a push plate 209. A first limiting groove 4 and a second limiting groove 5 are formed on the side of the protective box 101 near the protective box 201 to cooperate with the limiting rod 207. The first limiting groove 4 and the second limiting groove 5 are located below and above the connection port 103, respectively. When the main body of the operating panel 203 faces the outside of the protective shell 1, the limiting rod 207 is inserted into the second limiting groove 5 to limit the protective box 201. When the main body of the operating panel 203 faces the inside of the protective shell 1, the limiting rod 207 is inserted into the inner wall of the first limiting groove 4.

[0020] Furthermore, a spring 208 is fitted onto the outer surface of the limiting rod 207. The spring 208 is located inside the chamber 205, and the force of the spring 208 can limit the limiting rod 207 through the baffle 206. The spring 208 is located between the baffle 206 and the end of the chamber 205 away from the baffle 206. In its natural state, the limiting rod 207 extends out of the protective box 201.

[0021] Furthermore, the side panels 102, the protective box 101, and the protective housing 201 are all provided with second heat dissipation vents 3 on their adjacent sides; a back plate 105 is installed on the back of the protective shell 1, and the back plate 105 is installed on the back of the protective shell 1 by bolts. Several first heat dissipation vents 107 are provided on the back plate 105, and a cooling fan corresponding to the position of the first heat dissipation vent 107 is installed on the inner side of the back plate 105. A heat dissipation path is formed between the cooling fan, the first heat dissipation vent 107, and the second heat dissipation vent 3.

[0022] Furthermore, the protective casing 1 contains several batteries, and heat dissipation channels are provided between the batteries.

[0023] Furthermore, the battery is connected to a spiral cable, which passes through the connecting port 108, the connecting port 103, and the connecting pipe 202 connected to the connecting port 103 and extends into the protective box 201. The spiral cable is connected to the main body of the operation panel 203. The use of a spiral cable can meet the rotation requirements.

[0024] The main body of the operation panel 203 has an interface, a power display screen, buttons and other structures. The circuits and wiring between the various structures are all existing technologies and will not be described in detail in this application.

[0025] Furthermore, a handle 106 is fixedly installed on the top of the protective shell 1. The handle 106 can be connected by welding or bolting.

[0026] When it is necessary to change the form of this application... Figure 1 Switch toFigure 7 When the push plate 209 is pushed, it causes the limiting rod 207 to move, causing the limiting rod 207 to separate from the second limiting groove 5. Then, after rotating the protective box 201 downwards, the push plate 209 is released, and the limiting rod 207 is inserted into the first limiting groove 4 under the action of the spring 208 and the baffle 206. Figure 7 As shown; When it is necessary to change the form of this application... Figure 7 Switch to Figure 1 When the push plate 209 is pushed, it causes the limiting rod 207 to move, causing the limiting rod 207 to separate from the first limiting groove 4. Then, after rotating the protective box 201 upward, the push plate 209 is released, and the limiting rod 207 is inserted into the second limiting groove 5 under the action of the spring 208 and the baffle 206. Figure 1 As shown.

[0027] Those skilled in the art should understand that the discussion of any of the above embodiments is merely exemplary and is not intended to imply that the scope of protection of this application is limited to these examples; within the framework of this application, the technical features of the above embodiments or different embodiments can also be combined, the steps can be implemented in any order, and there are many other variations of different aspects of one or more embodiments of this application as described above, which are not provided in detail for the sake of brevity.

[0028] One or more embodiments in this application are intended to cover all such substitutions, modifications, and variations that fall within the broad scope of this application. Therefore, any omissions, modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of one or more embodiments in this application should be included within the protection scope of this application.

Claims

1. A mobile energy storage device, characterized in that, The device includes a protective shell (1), on the front of which a protective box (101) and a side plate (102) are installed, and the protective box (101) and the protective shell (1) are connected. The protective box (101) and the side plate (102) are respectively provided with a connection port (103) and a connection groove (104) on the side that are close to each other. An operation panel structure (2) is rotatably connected between the connection port (103) and the connection groove (104). The operation panel structure (2) includes two connecting pipes (202) that are respectively connected to the connection port (103) and the connection groove (104). A protective box (201) is fixedly connected between the two connecting pipes (202). An operation panel body (203) is provided on the front of the protective box (201), and a fixing member is provided between the protective box (201) and the protective box (101).

2. The mobile energy storage device as described in claim 1, characterized in that, The protective shell (1) has a communication port (108) on its front side. The position of the communication port (108) corresponds to the position of the protective box (101). The communication port (108) is used to realize the communication between the protective box (101) and the protective shell (1).

3. The mobile energy storage device as described in claim 2, characterized in that, The fastener includes a groove (204) and a chamber (205) formed on the protective box (201). A baffle (206) is slidably connected in the chamber (205). A limiting rod (207) is fixedly connected to the middle of the baffle (206). One end of the limiting rod (207) extends into the groove (204) and is fixedly connected to a push plate (209). A first limiting groove (4) and a second limiting groove (5) are formed on the side of the protective box (101) near the protective box (201) to cooperate with the limiting rod (207).

4. The mobile energy storage device as described in claim 3, characterized in that, The first limiting groove (4) and the second limiting groove (5) are located below and above the connection port (103), respectively.

5. The mobile energy storage device as described in claim 4, characterized in that, A spring (208) is fitted on the outer surface of the limiting rod (207), and the spring (208) is located inside the chamber (205).

6. The mobile energy storage device as described in claim 1, characterized in that, The side plate (102), the protective box (101) and the protective box (201) are all provided with a second heat dissipation vent (3) on the side that is close to each other.

7. The mobile energy storage device as described in claim 1, characterized in that, The protective shell (1) has a back plate (105) installed on its back side. The back plate (105) has a plurality of first heat dissipation vents (107) and a cooling fan corresponding to the position of the first heat dissipation vents (107) is installed on the inner side of the back plate (105).

8. The mobile energy storage device as described in claim 2, characterized in that, The protective shell (1) contains several batteries, and heat dissipation channels are provided between the batteries.

9. The mobile energy storage device as described in claim 8, characterized in that, The battery is connected to a spiral cable that passes through the connecting port (108), the connecting port (103), and the connecting tube (202) connected to the connecting port (103) and extends into the protective box (201). The spiral cable is connected to the main body of the operation panel (203).

10. The mobile energy storage device as described in claim 9, characterized in that, A handle (106) is fixedly installed on the top of the protective shell (1).