Vertical storage power supply all-in-one machine
The quick-release component design solves the problem of cumbersome maintenance and replacement operations for vertical power storage units, enabling rapid disassembly and efficient maintenance, and improving the service life and reliability of the equipment.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- 大工晖耀智能科技洛阳有限公司
- Filing Date
- 2025-09-02
- Publication Date
- 2026-08-04
AI Technical Summary
Existing vertical power supplies suffer from component damage due to heat generation and dust accumulation during long-term use. Repairing or replacing them requires cumbersome bolt disassembly, resulting in low efficiency.
It adopts quick-release components, including a locking rod, a locking pin, and a locking element. The cover plate and the outer shell can be quickly and detachably connected by rotating the locking pin, without tools, which facilitates maintenance or replacement.
It enables quick assembly and disassembly of the power storage unit, improves maintenance and replacement efficiency, enhances connection reliability, and reduces the possibility of component damage.
Smart Images

Figure CN224595644U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of power supply technology, and in particular to a vertical integrated power storage unit. Background Technology
[0002] Existing storage power supply placement methods include vertical placement, which facilitates temporary relocation of the storage power supply. The storage power supply includes a casing, a cover plate that closes the casing, stacked batteries inside the casing, and electronic components and power interfaces inside the casing. The batteries and electronic components are arranged in a spaced and reasonable manner inside the casing. The cover plate is fixed to the opening of the casing with multiple bolts to close the casing and protect the components inside the casing.
[0003] The existing technical solutions mentioned above have the following drawbacks: During long-term use, the internal components of the power supply may be damaged due to prolonged heat generation, dust accumulation, etc., requiring repair or replacement. During the repair or replacement process, it is necessary to use a screwdriver to remove multiple bolts at the connection between the outer casing and the cover plate, which is cumbersome and inefficient. Utility Model Content
[0004] This application provides a vertical power bank unit for quick and convenient internal repair or replacement.
[0005] The above-mentioned technical objective of this application is achieved through the following technical solution:
[0006] A vertical power bank includes a cylindrical outer shell with an opening, a cover plate that closes the outer shell, and a quick-release assembly that detachably connects the cover plate to the outer shell. The outer shell is vertically oriented, and the cover plate has mounting holes at its corners, which connect the two surfaces of the cover plate. The quick-release assembly includes a locking rod disposed within the mounting holes, a locking pin disposed at the end of the peripheral wall of the locking rod, and a locking member disposed at the corner of the outer shell opening. The locking rod is slidably and rotatably disposed in the mounting holes. The locking member is cylindrical, with its outer peripheral wall fixedly connected to the inner wall at the corner of the outer shell opening. The surface of the locking member has locking holes connecting its two ends. The locking pin is adapted to the locking holes and can be slidably inserted into the locking holes, and the locking pin can pass through the locking member.
[0007] By adopting the above technical solution, and by setting up a shell, a cover plate, and a quick-release assembly, the quick-release assembly consists of a locking rod set in the mounting hole, a locking pin set at the end of the peripheral wall of the locking rod, and a locking member at the corner of the opening of the shell. The locking rod is rotatably set in the mounting hole. The locking member is a cylinder and its outer peripheral wall is fixed to the inner wall of the shell. A locking hole is opened on the end face of the locking member. The locking pin can be inserted into the locking hole from one end of the locking member, and the locking pin can pass through the locking member. The locking pin passes through the locking member, and by rotating the locking pin, the locking pin is locked at the other end of the locking member, realizing a quick and detachable connection between the cover plate and the shell. Disassembly and assembly can be completed without the aid of tools, which facilitates the maintenance or replacement of the internal parts of the all-in-one machine.
[0008] Optionally, the locking member has a locking groove on the end face near the inner bottom of the housing, the locking groove is spaced apart from the locking hole, the locking rod has an annular groove on its peripheral wall, and an annular thickened part is coaxially machined on the wall of the mounting hole, the annular thickened part is adapted to the annular groove and slidably sleeved in the annular groove.
[0009] By adopting the above technical solution, by setting a locking groove, annular groove and annular thickening part, the locking post is located at the other end of the locking part. The locking post can be inserted into the locking groove, which can enhance the reliability of the connection between the cover and the outer shell, reduce the possibility of the cover separating from the outer shell during the movement or use of the power storage unit, and reduce the possibility of the locking rod separating from the cover.
[0010] Optionally, a spring is also provided in the annular groove, and the spring is sleeved on the peripheral wall of the locking rod and located inside the annular groove.
[0011] By adopting the above technical solution and setting a spring, the locking pin can always be locked in the locking groove, thereby improving the stability of the connection between the cover plate and the outer shell.
[0012] Optionally, the end face of the locking element between the locking groove and the locking hole is machined to form a protruding arc surface.
[0013] By adopting the above technical solution, and by setting a protruding arc surface on the end face of the locking component between the locking groove and the locking hole, the possibility of the locking pin disengaging in the locking groove can be reduced, making the switching of the locking pin between the locking hole and the locking groove smoother, reducing jamming, and lowering operating resistance.
[0014] Optionally, the housing contains a battery, electronic components, and a power interface. The battery is located in the lower part of the housing, and the electronic components are located in the upper part of the housing. The electronic components include an integrated board connected to the battery, an inverter spaced apart from the battery, and a display screen detachably connected to the bottom of the housing. The display screen is spaced apart from the inverter and located on the side of the inverter away from the battery. The power interface is located on one side of the display screen. The power interface, inverter, integrated board, and battery are sequentially electrically connected to each other to form an energy storage power source. The display screen is electrically connected to the integrated board.
[0015] By adopting the above technical solution, and by setting up a battery, electronic components, and a power interface, the electronic components include an integrated board, an inverter, and a display screen. The power interface, inverter, integrated board, and battery are sequentially electrically connected to form an energy storage power supply. The display screen is electrically connected to the integrated board, which can realize the functions of power storage, conversion, and output. The display screen can display information such as the system operating status, thus forming a complete vertical energy storage power supply functional system.
[0016] Optionally, an electricity meter is provided between the power interface and the display screen, and the electricity meter is electrically connected to the integrated board.
[0017] By adopting the above technical solution and setting up an electricity meter, the power usage of the all-in-one machine can be measured. In commercial scenarios, it can support QR code payment or renewing power, thus expanding the application scope of the all-in-one machine.
[0018] Optionally, four positioning plates are provided on the surface of the opening of the outer shell. The four positioning plates are in the shape of a square frame and are close to each other. The positioning plates are integrally formed with the outer shell. The positioning plates and the adjacent outer shell are transitioned by two spaced and oppositely oriented arcs. The edge of the cover plate is bent to form a groove that fits the positioning plates. The four positioning plates can be inserted into the groove formed by the edge of the cover plate.
[0019] By adopting the above technical solution and setting a positioning plate, precise docking and positioning of the cover plate and the outer shell can be achieved, reducing installation deviation and improving the tightness and stability of the connection between the two.
[0020] Optionally, the outer casing sidewall is provided with a plurality of heat dissipation holes evenly spaced in a strip shape, and the heat dissipation holes connect the inside and outside of the outer casing.
[0021] By adopting the above technical solution and setting heat dissipation holes, air circulation between the inside of the casing and the outside can be promoted, heat generated by batteries, electronic components and other components during operation can be dissipated in a timely manner, heat accumulation can be reduced, and the normal operating temperature of internal components can be maintained.
[0022] In summary, this application has the following technical effects:
[0023] 1. By setting up an outer shell, a cover plate, and a quick-release assembly, the quick-release assembly consists of a locking rod set in the mounting hole, a locking pin set at the end of the peripheral wall of the locking rod, and a locking member at the corner of the opening of the outer shell. The locking rod is rotatably set in the mounting hole. The locking member is a cylinder and its outer peripheral wall is fixed to the inner wall of the outer shell. A locking hole is opened on the end face of the locking member. The locking pin can be inserted into the locking hole from one end of the locking member, and the locking pin can pass through the locking member. The locking pin passes through the locking member. By rotating the locking pin, the locking pin is locked in place at the other end of the locking member, realizing a quick and detachable connection between the cover plate and the outer shell. Disassembly and assembly can be completed without the aid of tools, which is convenient for maintenance or replacement of the internal parts of the all-in-one machine.
[0024] 2. By setting a locking groove, annular groove and annular thickening part, the locking post is located at the other end of the locking part. The locking post can be inserted into the locking groove, which can enhance the reliability of the connection between the cover and the outer shell and reduce the possibility of the cover separating from the outer shell during the movement or use of the power storage unit. The annular thickening part reduces the possibility of the locking rod separating from the cover.
[0025] 3. By installing an electricity meter, the power usage of the all-in-one machine can be measured. In commercial scenarios, it can support QR code payment or renewing power, thus expanding the application scope of the all-in-one machine. Attached Figure Description
[0026] Figure 1 This is a structural diagram of the object of this application;
[0027] Figure 2 This is a structural diagram of this application after it has been opened;
[0028] Figure 3 This is a structural diagram of the quick-release component of this application.
[0029] Explanation of reference numerals in the attached drawings: 1. Basic structure; 11. Outer shell; 111. Casters; 112. Ventilation holes; 113. Moving groove; 114. Positioning plate; 12. Cover plate; 121. Mounting hole; 13. Battery; 14. Electronic components; 15. Power interface; 16. Meter; 2. Quick-release assembly; 21. Locking rod; 211. Ring groove; 212. Locking handle; 22. Spring; 23. Locking pin; 24. Locking element; 241. Locking hole; 242. Locking groove; 243. Protruding arc surface. Detailed Implementation
[0030] The present application will be further described in detail below with reference to the accompanying drawings.
[0031] This application discloses a vertical integrated power bank, referring to... Figure 1 The integrated power storage unit includes a basic structure 1 that enables the function and a quick-release assembly 2 installed on the basic structure 1. The basic structure 1 enables the function of power storage and provides physical protection for its internal components, reducing the possibility of physical damage and improving service life. The quick-release assembly 2 facilitates the opening and closing of the basic structure 1, making it convenient to repair or replace the internal components of the basic structure 1 and improving efficiency.
[0032] Combination Figure 1 and Figure 2The basic structure 1 includes a vertically arranged outer shell 11, a cover plate 12 enclosing the outer shell 11, a battery 13 disposed inside the outer shell 11, and electronic components 14 disposed inside the outer shell 11. The outer shell 11 is a cylindrical box with openings formed by bending strip plates, and one side wall of the outer shell 11 is also an opening. Four casters 111 are rectangularly distributed on the lower outer wall of the outer shell 11, which facilitate the movement of the integrated power bank and improve its practicality.
[0033] Combination Figure 1 and Figure 2 The cover plate 12 is a strip plate that can close the opening of the outer casing 11. The battery 13 is located inside the lower part of the outer casing 11 and is detachably connected to the inner wall of the outer casing 11 by bolts. The electronic component 14 is located inside the upper part of the outer casing 11. The electronic component 14 includes an integrated board connected to the battery 13, an inverter spaced apart from the battery 13, and a display screen detachably connected to the bottom of the outer casing 11. The integrated board is a circuit board used to manage the charging and discharging of the battery 13. The display screen is spaced apart from the inverter and located on the side of the inverter away from the battery 13. A square hole is opened at a corresponding position on the bottom of the outer casing 11, which connects the inside and outside of the outer casing 11, allowing the display screen to be seen through the square hole.
[0034] Combination Figure 1 and Figure 2 A power interface 15 is provided on one side of the display screen inside the outer casing 11. The power interface 15 is connected to the inner end wall and inner side wall of the outer casing 11. The power interface 15 and the housing at the corner of the outer casing 11 form a closed cavity. Square through holes are provided on the side wall and end of the power interface 15 of the outer casing 11 to facilitate external connection of the power interface 15. The power interface 15, inverter, integrated board and battery 13 are electrically connected to each other in sequence, and the display screen is electrically connected to the integrated board, thereby forming an energy storage power supply.
[0035] Combination Figure 1 and Figure 2 The outer casing 11 has heat dissipation holes 112 on both sides opposite the inverter. These holes are circular and spaced evenly in a strip shape. The holes connect the inside and outside of the casing 11, allowing for heat dissipation from the interior and reducing the possibility of heat buildup. The outer walls of the casing 11, facing away from each other, are recessed inwards with strip-shaped moving grooves 113. The length of the moving grooves 113 is perpendicular to the length of the casing 11. These grooves are spaced apart from the heat dissipation holes 112 and located in the middle of the casing 11's length, facilitating the movement of the integrated power storage unit.
[0036] Combination Figure 1 and Figure 2Four positioning plates 114 are provided on the surface of the opening of the outer shell 11. The positioning plates 114 are integrally formed with the outer shell 11. The four positioning plates 114 are square in shape, and the surfaces of the four positioning plates 114 are parallel to the end wall surfaces and side wall surfaces of the outer shell 11, respectively. The positioning plates 114 and the adjacent outer shell 11 are transitioned by two spaced and oppositely oriented arcs, and the four positioning plates 114 are close to each other. The edge of the cover plate 12 is bent to form a groove that fits the positioning plates 114, and the four positioning plates 114 can be inserted into the groove formed by the edge of the cover plate 12.
[0037] Combination Figure 1 and Figure 2 When used at home, the power bank can be moved using the casters 111 and charged / discharged via the power interface 15. When used for commercial purposes, a power meter 16 that allows for QR code-based power dispensing can be installed between the display screen inside the casing 11 and the power interface 15. The power meter 16 is electrically connected to the integrated board. A square hole connecting the inside and outside of the casing 11 is provided at a corresponding position on the bottom of the casing 11 to expose the power meter 16. During use, payment or renewal of power is made by scanning the QR code.
[0038] Combination Figure 2 and Figure 3 The cover plate 12 has a mounting hole 121 at the corner of the plate surface opposite to the outer shell 11. The mounting hole 121 connects the two plates of the cover plate 12. An annular thickened part is formed on the wall of the mounting hole 121. The axis of the annular thickened part coincides with the axis of the mounting hole 121. The surface of the annular thickened part facing the outer shell 11 is flush with the plate surface of the cover plate 12 facing the outer shell 11.
[0039] Combination Figure 2 and Figure 3 The quick-release assembly 2 includes a locking rod 21 disposed in the mounting hole 121, a spring 22 sleeved on the locking rod 21, and a locking pin 23 disposed at the end of the peripheral wall of the locking rod 21. The locking rod 21 is a round rod, which is rotatably disposed in the mounting hole 121 and the annular thickened part. The axis of the locking rod 21 is perpendicular to the surface of the cover plate 12. An annular groove 211 is formed on the peripheral wall of the locking rod 21. The annular thickened part is adapted to the annular groove 211 and slidably sleeved on the locking rod 21. The inner wall of the annular thickened part is slidably fitted with the bottom of the annular groove 211.
[0040] Combination Figure 2 and Figure 3 Spring 22 is disposed within mounting hole 121 and sleeved on locking rod 21, with spring 22 located between the groove wall of annular groove 211 and the side wall of annular thickened portion. Locking post 23 is cylindrical, with its end face fixedly connected to the end of locking rod 21 near housing 11, and the axis of locking post 23 perpendicular to the axis of locking rod 21. Locking handle 212 is fixedly disposed on the end of locking rod 21 away from locking post 23, with its side wall fixedly connected to the end face of locking rod 21, and its length direction perpendicular to the axis of locking rod 21.
[0041] Combination Figure 2 and Figure 3 The quick-release assembly 2 also includes a locking member 24 disposed at the end of the inner plate of the positioning plate 114. The locking member 24 is a cylinder, and its outer peripheral wall is fixed to the plate surface of the positioning plate 114. The locking member 24 corresponds to the mounting hole 121. The end face of the locking member 24 away from the inner bottom of the outer shell 11 is flush with the side wall of the positioning plate 114 away from the inner bottom of the outer shell 11. The axis of the locking member 24 is perpendicular to the plate surface of the cover plate 12. A locking hole 241 is provided on the end face of the locking member 24. The locking hole 241 connects the two end faces of the locking member 24. The locking hole 241 is adapted to the locking post 23, and the locking post 23 can be slidably inserted into the locking hole 241. When the side wall of the positioning plate 114 abuts against the plate surface of the cover plate 12, the locking post 23 passes through the locking member 24. A locking groove 242 is provided on the surface of the locking member 24 near the bottom of the mounting groove. The locking groove 242 is located next to the locking hole 241. The locking pin 23 is adapted to the locking groove 242 and can be inserted into the locking groove 242. The surface of the locking member 24 between the locking groove 242 and the locking hole 241 is machined to form a protruding arc surface 243 with an arc.
[0042] Combination Figure 2 and Figure 3 When the side wall of the positioning plate 114 abuts against the surface of the cover plate 12, the locking pin 23 passes through the locking hole 241 and the locking member 24. When the locking handle 212 is rotated, the locking pin 23 compresses the spring 22 when it passes the protruding arc surface 243. When it is inserted into the locking groove 242, the spring 22 is released. The spring 22 can keep the locking pin 23 in the locking groove 242 without rotating the locking handle 212, thus fixing the cover plate 12 to the opening of the housing 11. The housing 11 and the cover plate 12 can protect the components installed in the housing 11 and improve the service life of the power storage. The quick-release assembly 2 can quickly disassemble the cover plate 12 from the housing 11, making it convenient to repair or replace the inside of the housing 11.
[0043] This specific embodiment is merely an explanation of this application and is not intended to limit it. After reading this specification, those skilled in the art can make modifications to this embodiment without contributing any inventive step, but such modifications are protected by patent law as long as they fall within the scope of the claims of this application.
Claims
1. A vertical integrated power storage unit, characterized in that: The device includes a cylindrical outer shell (11) with an opening, a cover plate (12) that closes the outer shell (11), and a quick-release assembly (2) that detachably connects the cover plate (12) to the outer shell (11). The outer shell (11) is vertically arranged, and the cover plate (12) has mounting holes (121) at the corners of its surface. The mounting holes (121) connect the two surfaces of the cover plate (12). The quick-release assembly (2) includes a locking rod (21) located in the mounting hole (121) and a locking pin (2) located at the end of the peripheral wall of the locking rod (21). 3) and a locking member (24) provided at the corner of the opening of the outer shell (11). The locking rod (21) is slidably and rotatably disposed in the mounting hole (121). The locking member (24) is a cylinder. The outer peripheral wall of the locking member (24) is fixedly connected to the inner wall at the corner of the opening of the outer shell (11). The surface of the locking member (24) is provided with a locking hole (241) connecting the two end faces. The locking pin (23) is adapted to the locking hole (241) and can be slidably inserted into the locking hole (241). The locking pin (23) can pass through the locking member (24).
2. The vertical storage power supply all-in-one machine according to claim 1, characterized in that: The locking member (24) has a locking groove (242) on its end face near the bottom of the outer shell (11). The locking groove (242) is spaced apart from the locking hole (241). The locking rod (21) has an annular groove (211) on its peripheral wall. The mounting hole (121) has an annular thickened part coaxially machined on its wall. The annular thickened part is adapted to the annular groove (211) and is slidably fitted in the annular groove (211).
3. The vertical storage power supply all-in-one machine according to claim 2, characterized in that: A spring (22) is also provided in the annular groove (211), and the spring (22) is sleeved on the peripheral wall of the locking rod (21) and located in the annular groove (211).
4. The vertical storage power supply all-in-one machine according to claim 3, characterized in that: The end face of the locking member (24) between the locking groove (242) and the locking hole (241) is machined to form a protruding arc surface (243).
5. The vertical storage power supply all-in-one machine according to claim 1, characterized in that: The housing (11) contains a battery (13), electronic components (14), and a power interface (15). The battery (13) is located in the lower part of the housing (11), and the electronic components (14) are located in the upper part of the housing (11). The electronic components (14) include an integrated board connected to the battery (13), an inverter spaced apart from the battery (13), and a display screen detachably connected to the bottom of the housing (11). The display screen is spaced apart from the inverter and is located on the side of the inverter away from the battery (13). The power interface (15) is located on the side of the display screen. The power interface (15), inverter, integrated board, and battery (13) are sequentially electrically connected to each other to form an energy storage power supply. The display screen is electrically connected to the integrated board.
6. The vertical storage power supply all-in-one machine according to claim 5, characterized in that: A power meter (16) is provided between the power interface (15) and the display screen, and the power meter (16) is electrically connected to the integrated board.
7. The vertical storage power supply all-in-one machine according to claim 6, characterized in that: Four positioning plates (114) are provided on the surface of the opening of the outer shell (11). The four positioning plates (114) are in the shape of a square frame. The four positioning plates (114) are close to each other and are integrally formed with the outer shell (11). The positioning plates (114) and the adjacent outer shell (11) are transitioned by two spaced and oppositely oriented arcs. The edge of the cover plate (12) is bent to form a groove that fits the positioning plates (114). The four positioning plates (114) can be inserted into the groove formed by the edge of the cover plate (12).
8. The vertical storage power supply all-in-one machine according to claim 7, characterized in that: The outer shell (11) has a plurality of heat dissipation holes (112) evenly spaced on its side wall in a strip shape, and the heat dissipation holes (112) connect the inside and outside of the outer shell (11).