Structure of disassembly mode of aluminum air power supply face shell and anode assembly
By using hook-shaped structures of male and female buckles and release buttons in the aluminum air power supply, the problems of complex assembly of aluminum air power components and inconvenient liquid replacement operation are solved, and rapid disassembly and convenient liquid replacement are achieved, improving the user experience.
Patent Information
- Application Number
- CN202422077965.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-27
- Publication Date
- 2025-08-26
- Estimated Expiration
- 2034-08-27
AI Technical Summary
The assembly method of aluminum air power supply is complicated, the user's liquid replacement and circulation operation is inconvenient, and the internal wiring arrangement of the product is chaotic, affecting product quality and customer experience.
The hook-shaped structure of the male buckle on the anode assembly and the female buckle on the cathode assembly is adopted, combining the release button and the release rod to achieve rapid disassembly and assembly; the face shell assembly and the anode assembly are assembled by screws, and the body shell and the cathode assembly are assembled by screws, and the press-type release lock structure is integrated.
It realizes rapid separation of the panel and anode assembly and cathode assembly, reduces the operation complexity of liquid replacement and improves customer experience.
Smart Images

Figure CN223273369U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of aluminum-air power supplies, in particular to a structure for disassembling a face shell and an anode assembly of an aluminum-air power supply. Background Art
[0002] In an era of continuous advancements in new energy technologies, power supply products are becoming increasingly diverse. Metal fuel power supplies can be categorized as magnesium-air power supplies, aluminum-air power supplies, and zinc-air power supplies, depending on the anode material. Aluminum-air power supplies, due to their high energy density, abundant aluminum resources, environmental friendliness, safety, reliability, and easy fuel storage and portability, have broad application prospects in a variety of fields, including communication backup, emergency rescue, and outdoor activities.
[0003] The main components of an aluminum-air power supply include a housing assembly, anode assembly, cathode assembly, and body shell. Currently, various aluminum-air power supply assembly methods exist on the market. These methods suffer from complex and cumbersome assembly, inconvenient fluid replacement and recycling, and a disorganized internal wiring arrangement. These negatively impact product quality and the user experience, necessitating improvements. Summary of the Invention
[0004] 1. Technical problems to be solved:
[0005] How can the panels and anode components be quickly integrated and disassembled from the product?
[0006] 2. Technical solution:
[0007] In order to solve the above problems, the utility model provides a structure for disassembling an aluminum air power supply shell and an anode assembly, including an anode assembly and a cathode assembly, a male buckle is provided on the anode assembly, and a female buckle is provided on the cathode assembly, the male buckle is hook-shaped, and the female buckle is frame-shaped, the hook of the male buckle enters the frame of the female buckle, so that the anode assembly and the cathode assembly are tightly connected, and also includes a release structure, the release structure includes a release button and a release rod, one end of the release rod is fixedly connected to the release button, and the other end is connected to the lower half of the male buckle, and the release button is pressed, and the male buckle rotates clockwise under the action of the release rod to disengage from the female buckle.
[0008] Furthermore, a spring is provided on one side of the male buckle.
[0009] Furthermore, the aluminum-air power supply includes a face shell assembly, an anode assembly, a cathode assembly, and a body shell. The face shell assembly and the anode assembly are assembled into a face shell and anode combined assembly by screws, and the body shell and the cathode assembly are assembled into a body shell and cathode combined assembly by screws.
[0010] Furthermore, the cathode assembly includes a left electrolyte cavity and a right electrolyte cavity, and the left electrolyte cavity 12 and the right electrolyte cavity are each integrated with a female buckle.
[0011] Furthermore, it also includes an aluminum plate bracket, and the male buckle is integrated on the aluminum plate bracket.
[0012] Furthermore, it also includes a product wiring harness, which is concentrated between the aluminum plate bracket 9 and the surface shell assembly 1.
[0013] 3.Beneficial effects:
[0014] The utility model utilizes a press-release lock structure arranged on the panel and anode assembly to integrate and disassemble the panel and anode assembly from the product, thereby achieving rapid separation from the cathode assembly, reducing the complexity of liquid replacement and recycling operations, and improving customer experience. BRIEF DESCRIPTION OF THE DRAWINGS
[0015] Figure 1 This is a schematic diagram of the overall structure of the aluminum-air power supply of the utility model.
[0016] Figure 2 It is an exploded view of the aluminum air panel and anode combination assembly of the utility model.
[0017] Figure 3 It is an exploded view of the cathode assembly of the utility model.
[0018] Figure 4 The utility model releases the locking state of the male buckle and the female buckle of the lock buckle.
[0019] Figure 5 The utility model releases the lock buckle male buckle and the female buckle to the unlocked state.
[0020] Explanation of the accompanying reference numerals: 1. Surface shell assembly; 2. Anode assembly; 3. Cathode assembly; 4. Body shell; 5. Release button; 6. Upper shell; 7. Male buckle; 8. Spring; 9. Aluminum plate bracket; 10. Aluminum plate; 11. Female buckle; 12. Left electrolyte cavity; 13. Cathode sheet; 14. Middle electrolyte cavity; 15. Right electrolyte cavity. DETAILED DESCRIPTION
[0021] The present invention will be described in detail below with reference to the accompanying drawings.
[0022] A structure for disassembling an aluminum air power supply housing and anode assembly, comprising an anode assembly 2 and a cathode assembly 3, wherein a male buckle 7 is provided on the anode assembly 2 and a female buckle 11 is provided on the cathode assembly 3. Figure 4As shown, the male buckle 7 is hook-shaped and the female buckle 11 is frame-shaped. The hook of the male buckle 7 enters the frame of the female buckle 11, so that the anode assembly 2 and the cathode assembly 3 are tightly connected. It also includes a release structure, and the release structure includes a release button 5 and a release rod. One end of the release rod is fixedly connected to the release button, and the other end is connected to the lower half of the male buckle 7. When the release button 5 is pressed, the male buckle 7 rotates clockwise under the action of the release rod and disengages from the female buckle 11.
[0023] By pressing the release button 5 on the face shell assembly, the release lock male buckle 7 on the anode assembly 2 is quickly separated from the release lock female buckle 11 on the cathode assembly 3, so that the face shell and the anode combined assembly can be quickly disassembled from the product, and the electrolyte cavity on the cathode assembly is exposed to the user. The user can quickly add electrolyte to the cavity, cover the face shell and the anode combined assembly, and complete a liquid replacement cycle, thereby achieving the purpose of fast and convenient liquid replacement and reducing the time cost of liquid replacement.
[0024] In one embodiment, Figure 1 As shown, the aluminum-air power supply includes a face shell assembly 1, an anode assembly 2, a cathode assembly 3, and a body shell 4.
[0025] The face shell assembly 1 and the anode assembly 2 of this embodiment are assembled into a face shell and anode combination assembly by screws, such as Figure 2 As shown, from top to bottom are: release button 5, upper shell 6, male buckle 7, spring 8, aluminum plate bracket 9 and aluminum plate 10.
[0026] The body shell 4 and the cathode assembly are assembled into a body shell and cathode combined assembly by screws, such as Figure 3 As shown, it includes a left electrolyte cavity 12 , a middle electrolyte cavity 14 and a right electrolyte cavity 15 , and cathode plates 13 are provided between the left electrolyte cavity 12 , the middle electrolyte cavity 14 and the right electrolyte cavity 15 .
[0027] In one embodiment, a spring 8 is provided on one side of the male buckle 7. Figure 5 As shown, press the release button 5, place the face shell and anode combination assembly on the body shell and cathode combination assembly, release the release button 5, and under the action of the spring 8, release the lock buckle male buckle 7 counterclockwise to make the male buckle enter the female buckle 11 to achieve the locked state.
[0028] The utility model utilizes a press-release lock structure arranged on the panel and the anode assembly to integrate and disassemble the panel and the anode assembly from the product, thereby achieving rapid separation from the cathode assembly and reducing the complexity of the liquid replacement and recycling operation.
[0029] In one embodiment, the cathode assembly 3 includes a left electrolyte chamber 12 and a right electrolyte chamber 15 , and each of the left electrolyte chamber 12 and the right electrolyte chamber 15 is integrated with a female buckle 11 .
[0030] In one embodiment, an aluminum plate bracket 9 is further included, and the male buckle 7 is integrated on the aluminum plate bracket 9 .
[0031] In the finished product, before disassembly, the left and right electrolyte chambers 12 and 15 each have a female buckle 11 integrated therein, and are locked with the release buckle male buckle 7 integrated with the aluminum plate bracket 9. By pressing the release button 5 on the faceplate assembly 1 and rotating the release buckle male buckle 7 clockwise along the rotation axis, the release buckle male buckle 7 disengages from the left and right chamber release buckle female buckles 11, thereby unlocking the faceplate and anode assembly from the body shell and cathode assembly. The user can then inject the prepared electrolyte directly into the left electrolyte chamber 12, the middle electrolyte chamber 14, and the right electrolyte chamber 15 in the cathode assembly 3. After electrolyte is added, the user presses the release button 5 to place the faceplate and anode assembly over the body shell and cathode assembly. Release the release button 5, and the spring rotates the release buckle male buckle 7 counterclockwise against the left and right chamber release buckle female buckles 11, achieving a locked state, thus completing the entire disassembly and installation process.
[0032] In one embodiment, the product wiring harness is concentrated between the aluminum plate bracket 9 and the surface shell assembly 1, which does not affect the liquid replacement operation and does not require the wiring harness to be arranged.
Claims
1. A structure for disassembling an aluminum air power supply housing and an anode assembly, comprising an anode assembly (2) and a cathode assembly (3), wherein a male buckle (7) is provided on the anode assembly (2) and a female buckle (11) is provided on the cathode assembly (3), characterized in that: The male buckle (7) is hook-shaped, and the female buckle (11) is frame-shaped. The hook of the male buckle (7) enters the frame of the female buckle (11), so that the anode assembly (2) and the cathode assembly (3) are tightly connected. The release structure also includes a release button (5) and a release rod. One end of the release rod is fixedly connected to the release button, and the other end is connected to the lower half of the male buckle (7). When the release button (5) is pressed, the male buckle (7) rotates clockwise under the action of the release rod and disengages from the female buckle (11).
2. The structure of the aluminum air power supply housing and anode assembly disassembly method according to claim 1 is characterized in that: A spring (8) is provided on one side of the male buckle (7).
3. The structure of the aluminum air power supply housing and anode assembly disassembly method according to claim 1, characterized in that: The aluminum-air power supply comprises a face shell assembly (1), an anode assembly (2), a cathode assembly (3), and a body shell (4); the face shell assembly (1) and the anode assembly (2) are assembled into a face shell and anode combined assembly by screws; and the body shell (4) and the cathode assembly (3) are assembled into a body shell and cathode combined assembly by screws.
4. The structure of the aluminum air power supply housing and anode assembly disassembly method according to claim 1, characterized in that: The cathode assembly (3) comprises a left electrolyte cavity (12) and a right electrolyte cavity (15), and each of the left electrolyte cavity (12) and the right electrolyte cavity (15) is integrated with a female buckle (11).
5. The structure of the aluminum air power supply housing and anode assembly disassembly method as claimed in claim 3, characterized in that: It also includes an aluminum plate bracket (9), and the male buckle (7) is integrated on the aluminum plate bracket (9).
6. The structure of the aluminum air power supply housing and anode assembly disassembly method according to claim 5, characterized in that: It also includes a product wiring harness, which is concentrated between the aluminum plate bracket (9) and the surface shell component (1).