High-power battery special for gas cooker and capable of increasing ignition frequency
By using magnets, magnetic clasps, and limiting blocks, the problem of high-power batteries being difficult to disassemble is solved, resulting in a battery structure that is easy to maintain and has a long lifespan, thus enhancing the battery's stability and safety.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-31
- Publication Date
- 2026-03-06
AI Technical Summary
The existing high-power battery structure is not easy to disassemble, which makes maintenance and repair difficult and results in high consumption of the casing.
The design employs magnets and magnetic locating plates, combined with limiting blocks and sealing rings, to achieve a stable connection of the battery body. It also facilitates disassembly and installation through snap-fit and magnetic attraction principles. The outer shell structure design enhances corrosion resistance and sealing performance.
This achieves a stable connection of the battery body, facilitating maintenance and repair, improving battery life and safety, and reducing casing wear.
Smart Images

Figure CN223978019U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of high-power battery technology, and specifically relates to a high-power battery for gas stoves that can increase the number of ignition cycles. Background Technology
[0002] This high-power battery for gas stoves, specifically designed to increase ignition frequency, utilizes advanced materials and an optimized structure to ensure sustained high-energy output. This battery not only boasts an ultra-long lifespan but also significantly improves the ignition efficiency and frequency of the gas stove. Compared to traditional batteries, it offers a higher ignition success rate and a substantial increase in consecutive ignitions. Its unique leak-proof and explosion-proof design guarantees safety and reliability, making cooking smoother and more worry-free. Whether for everyday home cooking or high-frequency use in commercial kitchens, it handles the demands with ease, making it an ideal choice for enhancing kitchen efficiency.
[0003] However, existing high-power batteries still have some shortcomings. Because the battery and casing structure are generally set as a single unit, the main structure is not easy to disassemble. If the battery structure is damaged, relevant personnel need to disassemble it by damaging the casing structure before the battery structure can be repaired or maintained. After the battery is repaired, a new casing structure needs to be reinstalled. This is not only not conducive to the later maintenance of the battery structure, but also increases the wear and tear on the casing. Utility Model Content
[0004] In view of the problems mentioned in the background art, the purpose of this utility model is to provide a high-power battery for gas stoves that can increase the number of ignitions, so as to solve the problems mentioned in the background art.
[0005] The above-mentioned technical objective of this utility model is achieved through the following technical solution:
[0006] A high-power battery for gas stoves that can increase ignition frequency includes a protective shell and a battery body. The battery body is installed inside the protective shell. A groove is formed at the top of the battery body. A magnet is fixedly connected to the inside of the groove, and the magnet covers the inside of the groove. A protective sheet is magnetically connected to the top of the battery body. A magnetically attached piece matching the groove is formed at the bottom of the protective sheet. The bottom of the magnetically attached piece is in contact with the top of the magnet. A positive terminal is installed at the top of the magnetically attached piece. A protective sleeve is snapped into the top of the protective shell. A positioning block is fixedly connected to the top of the protective sleeve. The position of the positioning block corresponds to the position of the protective sheet.
[0007] As a preferred technical solution, a limiting groove is formed at the top of the protective shell, and the limiting groove is formed on the four sides near the corners of the top of the protective shell. A limiting block that matches the limiting groove is fixedly connected to the bottom of the protective sleeve. The limiting block is engaged with the inside of the limiting groove. The protective sleeve is engaged with the top of the protective shell through the limiting groove and the limiting block.
[0008] As a preferred technical solution, a sealing ring is fixedly connected to the top of the protective shell, and a sealing groove matching the sealing ring is opened at the bottom of the protective sleeve. The sealing ring covers the inner side of the sealing groove and is located on the inner side of the adjacent limiting block.
[0009] As a preferred technical solution, a rubber pad is fixedly connected to the bottom end of the positioning block. The rubber pad is five millimeters thick and covers the bottom end of the positioning block. The bottom end of the rubber pad is in contact with the top end of the protective sheet.
[0010] As a preferred technical solution, the outer wall of the protective shell is coated with a corrosion-resistant layer, the thickness of the corrosion-resistant layer is two millimeters, the corrosion-resistant layer covers the outer wall of the protective shell, and the corrosion-resistant layer is made of polytetrafluoroethylene material.
[0011] As a preferred technical solution, the battery body has an internal anti-leakage layer with a thickness of five millimeters, and the anti-leakage layer is made of epoxy resin material. The battery body also has an internal reinforcement layer located on the inner side of the anti-leakage layer, and the reinforcement layer is made of high-purity active material.
[0012] As a preferred technical solution, the battery body has an explosion-proof layer inside, the explosion-proof layer is 5 mm thick, the explosion-proof layer is located inside the reinforcing layer, and the explosion-proof layer is made of a separator material. The battery body also has a reinforcing layer inside, the reinforcing layer is located inside the explosion-proof layer, and the reinforcing layer is made of stainless steel.
[0013] In summary, the present invention has the following main advantages:
[0014] First, due to the presence of the magnet, the mutual attraction between the magnet and the magnetic strip can effectively limit the position of the protective strip to prevent it from shifting. The protection of the positioning block can prevent the protective strip from falling off, thereby improving the stability of the protective strip's position. When the battery needs to be maintained later, the protective cover can be removed first through the snap-fit principle, and then the protective strip can be taken out directly through the magnetic attraction principle, thus exposing the battery. This allows the user to perform maintenance and repair on the battery without damaging the protective shell.
[0015] Secondly, due to the presence of the limiting block, the insertion of the limiting block can effectively limit the position of the protective sleeve to prevent displacement. It also facilitates the user's disassembly of the protective sleeve structure later. After the protective sleeve position is installed, its sealing ring can effectively seal the connection point between the protective sleeve and the protective shell to achieve a good sealing and dustproof protection effect. Due to the presence of the rubber pad, the rubber pad has good anti-slip ability and rubber elasticity, which can further improve the stability of the top pressure of the protective plate position, and at the same time prevent the positioning block from causing wear on the top of the protective plate. Attached Figure Description
[0016] Figure 1 This is a schematic diagram of the structure of this utility model;
[0017] Figure 2 This is a schematic diagram of the top structure of the protective shell of this utility model;
[0018] Figure 3 This is a schematic diagram of the protective sleeve structure of this utility model;
[0019] Figure 4 This is a schematic diagram of the protective sheet structure of this utility model;
[0020] Figure 5 This is a cross-sectional structural diagram of the battery body of this utility model.
[0021] Reference numerals in the attached diagram: 1. Protective outer shell; 2. Corrosion-resistant layer; 3. Battery body; 4. Groove; 5. Magnet; 6. Sealing ring; 7. Limiting groove; 8. Protective sleeve; 9. Limiting block; 10. Sealing groove; 11. Positioning block; 12. Rubber pad; 13. Protective sheet; 14. Positive electrode head; 15. Magnetic suction sheet; 16. Leak-proof layer; 17. Reinforcing layer; 18. Explosion-proof layer; 19. Strengthening layer. Detailed Implementation
[0022] Example
[0023] refer to Figures 1 to 5This embodiment discloses a high-power battery for gas stoves that can increase ignition frequency. It includes a protective shell 1 and a battery body 3. The battery body 3 is installed inside the protective shell 1. A groove 4 is formed at the top of the battery body 3, and a magnet 5 is fixedly connected to the inside of the groove 4, covering the inside of the groove 4. A protective sheet 13 is magnetically connected to the top of the battery body 3. A magnetically attached piece 15 matching the groove 4 is formed at the bottom of the protective sheet 13, with the bottom of the magnetically attached piece 15 abutting against the top of the magnet 5. A positive electrode head 14 is installed at the top of the magnetically attached piece 15. A protective sleeve 8 is snapped onto the top of the protective shell 1, and a positioning block 11 is fixedly connected to the top of the protective sleeve 8. The position of the positioning block 11 corresponds to the position of the protective sheet 13. The structure of the magnet 5 is compatible with the structural materials of the battery body 3. The protective sheet 13 is a power transmission sheet, so as not to hinder the normal use and operation of the battery body 3. At the same time, the bottom of the battery body 3 is also provided with a corresponding negative terminal. When in use, the magnet 5 can attract each other with the magnetic suction sheet 15, thereby effectively limiting the position of the protective sheet 13 to prevent it from shifting. The positioning block 11 can block the top of the protective sheet 13 to prevent the protective sheet 13 from falling off, thereby improving the stability of the position limitation of the protective sheet 13. When the battery body 3 needs to be maintained later, the protective sleeve 8 can be removed first by the snap-fit principle, and then the protective sheet 13 can be taken out directly by the magnetic suction principle, thereby exposing the battery body 3, so that the user can perform relative maintenance and repair on the battery body 3 without damaging the protective shell 1.
[0024] refer to Figures 1 to 4 The protective shell 1 has a limiting groove 7 at its top, located on the four sides near the corners of the top of the protective shell 1. A limiting block 9 matching the limiting groove 7 is fixedly connected to the bottom of the protective sleeve 8. The limiting block 9 is engaged with the inside of the limiting groove 7. The protective sleeve 8 is engaged with the top of the protective shell 1 via the limiting groove 7 and the limiting block 9. A sealing ring 6 is fixedly connected to the top of the protective shell 1. A sealing groove 10 matching the sealing ring 6 is located at the bottom of the protective sleeve 8, covering the inside of the sealing groove 10. The sealing ring 6 is located close to the inside of the limiting block 9. A rubber pad 12 with a thickness of five millimeters is fixedly connected to the bottom of the positioning block 11, covering the positioning block. At the bottom of 11, the bottom of the rubber pad 12 is in contact with the top of the protective sheet 13. Due to the presence of the limiting block 9, the insertion of the limiting block 9 can effectively limit the position of the protective sleeve 8 to prevent displacement. It also facilitates the user's disassembly of the protective sleeve 8 structure later. After the protective sleeve 8 is installed, its sealing ring 6 can effectively seal the connection point between the protective sleeve 8 and the protective shell 1 to achieve a good sealing and dustproof protection effect. Due to the presence of the rubber pad 12, the rubber pad 12 has good anti-slip ability and rubber elasticity, which can further improve the stability of the top pressure of the protective sheet 13 and also prevent the positioning block 11 from causing wear to the top of the protective sheet 13.
[0025] refer to Figure 1 The outer wall of the protective shell 1 is coated with a corrosion-resistant layer 2, which is two millimeters thick. The corrosion-resistant layer 2 covers the outer wall of the protective shell 1 and is made of polytetrafluoroethylene (PTFE). Due to the presence of the corrosion-resistant layer 2, it is a corrosion-resistant coating. PTFE has excellent physical and chemical properties, such as weather resistance, corrosion resistance, and high temperature resistance, which can improve the service life of the outer wall of the protective shell 1.
[0026] refer to Figure 5 The battery body 3 has an internal anti-leakage layer 16, which is five millimeters thick and made of epoxy resin. The battery body 3 also has an internal reinforcement layer 17, located close to the inside of the anti-leakage layer 16. The reinforcement layer 17 is made of high-purity active material. Due to the presence of the anti-leakage layer 16, its epoxy resin material has excellent sealing performance and chemical compatibility. It can tightly adhere to the internal components of the battery body 3, forming an effective leak-proof barrier to achieve good safety and leak-proof performance. The presence of the reinforcement layer 17, combined with the use of high-purity active material, significantly improves the discharge performance of the gas stove-specific battery.
[0027] refer to Figure 5 The battery body 3 has an explosion-proof layer 18 inside, which is five millimeters thick. The explosion-proof layer 18 is located inside the reinforcing layer 17 and is made of separator material. The battery body 3 also has a reinforcing layer 19 inside, which is located inside the explosion-proof layer 18 and is made of stainless steel. Due to the presence of the explosion-proof layer 18, its separator is a plastic film inside the battery, used to separate the positive and negative electrodes of the battery and prevent short circuits. Its battery separator is a polypropylene film, which has high insulation performance and chemical stability, and can effectively prevent the battery from spontaneously combusting. Due to the presence of the reinforcing layer 19, its stainless steel material has high strength and corrosion resistance, which can increase the impact resistance and durability of the battery body 3, thereby effectively improving the service life of the battery body 3.
[0028] Operating principle and advantages: During use, magnet 5 can attract the magnetic plate 15, effectively limiting the position of the protective plate 13 to prevent displacement. Positioning block 11 can block the top of the protective plate 13, preventing it from falling off and improving the stability of the position. When the battery body 3 needs maintenance, the protective sleeve 8 can be removed first using a snap-fit principle, and then the protective plate 13 can be directly removed using the magnetic attraction principle, thus exposing the battery body 3. This allows the user to remove the protective shell without damaging it. Even in case 1, the battery body 3 can still be maintained and repaired. Due to the presence of the limiting block 9, the insertion of the limiting block 9 can effectively limit the position of the protective sleeve 8 to prevent displacement. It also facilitates the user's later disassembly of the protective sleeve 8 structure. After the protective sleeve 8 is installed, its sealing ring 6 can effectively seal the connection point between the protective sleeve 8 and the protective shell 1, so as to achieve a good sealing and dustproof protection effect. Due to the presence of the rubber pad 12, the rubber pad 12 has good anti-slip ability and rubber elasticity, which can further improve the protective sheet 13. The stability of the top pressure at the point of contact is ensured, and wear on the top of the protective sheet 13 caused by the positioning block 11 is also avoided. Due to the presence of the corrosion-resistant layer 2, which is a corrosion-resistant coating, the epoxy material has excellent physical and chemical properties, such as weather resistance, corrosion resistance, and high temperature resistance, thereby improving the service life of the outer wall of the protective shell 1. Due to the presence of the leak-proof layer 16, its epoxy resin adhesive material has good sealing performance and chemical compatibility. It can tightly adhere to the internal components of the battery body 3, forming an effective leak-proof barrier to achieve a good safety leak-proof effect. Due to the presence of the reinforcing layer 17... The presence of the explosion-proof layer 18, through the use of high-purity active materials, significantly improves the discharge performance of the gas stove-specific battery. Due to the presence of the explosion-proof layer 18, its separator is a plastic film inside the battery, used to separate the positive and negative electrodes of the battery to prevent short circuits. Its battery separator is a polypropylene film, which has high insulation performance and chemical stability, and can effectively prevent the battery from spontaneously combusting. Due to the presence of the reinforcing layer 19, its stainless steel material has high strength and corrosion resistance, which can increase the impact resistance and durability of the battery body 3, thereby effectively improving the service life of the battery body 3.
Claims
1. A high-power battery for gas cookers with increased number of ignitions, comprising a protective casing (1) and a battery body (3), characterized in that: The inner side of the protective shell (1) is provided with a battery body (3), the top end of the battery body (3) is provided with a groove (4), the inner side of the groove (4) is fixedly connected with a magnet (5), the magnet (5) covers the inner side of the groove (4), the top end of the battery body (3) is magnetically connected with a protective sheet (13), the bottom end of the protective sheet (13) is provided with a magnetic sheet (15) matched with the groove (4), the bottom end of the magnetic sheet (15) is attached to the top end of the magnet (5), the top end of the magnetic sheet (15) is provided with a positive electrode head (14), the top end of the protective shell (1) is clamped with a protective sleeve (8), the top end of the protective sleeve (8) is fixedly connected with a positioning block (11), the position of the positioning block (11) corresponds to the position of the protective sheet (13).
2. A high power battery for gas stove with increased number of ignition according to claim 1 characterized in that: The top end of the protective shell (1) is provided with a limiting groove (7), the limiting groove (7) is provided on the four sides of the top end of the protective shell (1) near the corner, the bottom end of the protective sleeve (8) is fixedly connected with a limiting block (9) matched with the limiting groove (7), the limiting block (9) is clamped on the inner side of the limiting groove (7), and the protective sleeve (8) is clamped on the top end of the protective shell (1) through the limiting groove (7) and the limiting block (9).
3. The high-power battery for gas stove with increased number of ignition according to claim 2, characterized in that: The top end of the protective shell (1) is fixedly connected with a sealing ring (6), the bottom end of the protective sleeve (8) is provided with a sealing groove (10) matched with the sealing ring (6), the sealing ring (6) covers the inner side of the sealing groove (10), and the sealing ring (6) is located on the inner side close to the limiting block (9).
4. The high-power battery for gas stove with increased number of ignition according to claim 1, characterized in that: The bottom end of the positioning block (11) is fixedly connected with a rubber pad (12), the thickness of the rubber pad (12) is five millimeters, the rubber pad (12) covers the bottom end of the positioning block (11), and the bottom end of the rubber pad (12) is attached to the top end of the protective sheet (13).
5. The high-power battery for gas stove with increased number of ignition according to claim 1, characterized in that: The outer wall of the protective shell (1) is coated with a corrosion-resistant layer (2), the thickness of the corrosion-resistant layer (2) is two millimeters, the corrosion-resistant layer (2) covers the outer wall of the protective shell (1), and the corrosion-resistant layer (2) is made of polytetrafluoroethylene material.
6. The high-power battery for gas stove with increased number of ignition according to claim 1, characterized in that: The inside of the battery body (3) is provided with a liquid leakage prevention layer (16), the thickness of the liquid leakage prevention layer (16) is five millimeters, the liquid leakage prevention layer (16) is made of epoxy resin adhesive material, the inside of the battery body (3) is provided with a reinforcing layer (17), the reinforcing layer (17) is located on the inner side close to the liquid leakage prevention layer (16), and the reinforcing layer (17) is made of high-purity active material.
7. The high-power battery for gas stove with increased number of ignition according to claim 6, characterized in that: The inside of the battery body (3) is provided with an explosion-proof layer (18), the thickness of the explosion-proof layer (18) is five millimeters, the explosion-proof layer (18) is located on the inner side close to the reinforcing layer (17), the explosion-proof layer (18) is made of diaphragm material, and the inside of the battery body (3) is provided with a reinforcing layer (19), the reinforcing layer (19) is located on the inner side close to the explosion-proof layer (18), and the reinforcing layer (19) is made of stainless steel material.