一种翻盖组合结构及电源控制模块
By using the interference fit design of the first buckle and the first slot in the flip cover assembly structure, the problem of poor repairability and reusability caused by screw connection in traditional flip cover components is solved, and the product reliability is not affected by multiple disassemblies.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- LIXUN PRECISION IND (WUHU) CO LTD
- Filing Date
- 2025-07-28
- Publication Date
- 2026-07-17
AI Technical Summary
Traditional flip-top components are connected by screws, which can cause the screws to strip when frequently disassembled, affecting the product's repairability and reusability.
The design employs an interference fit between the first buckle and the first slot to achieve a detachable connection between the base and the main body. The interference fit between the snap-fit surface of the first buckle and the side wall of the first slot along the Z direction ensures reliable connection.
It enables multiple disassemblies without affecting product reliability, improves repairability and reusability, avoids stripping of screws due to frequent disassembly, and ensures high connection reliability.
Smart Images

Figure CN224521378U_ABST
Abstract
Claims
1. A flip-cover assembly structure, characterized in that, include: The main body is provided with a first card slot, the opening of the first card slot facing the Y direction; The first flip-top assembly includes a base and a cover plate. The cover plate is rotatably connected to the base and has an open state and a closed state. The cover plate, the base, and the main body are arranged sequentially along the Z direction. The base is provided with a first buckle. The snap-fit surface of the first buckle near the cover plate along the Z direction and the groove sidewall of the first slot near the cover plate along the Z direction are interference-fitted to make the first buckle snap into the first slot. The Y direction and the Z direction are perpendicular to each other.
2. The flip combination structure according to claim 1, wherein The first buckle has protruding ribs on its snap-fit surface for interference fit with the first buckle groove.
3. The flip combination structure according to claim 1, wherein The main body is also provided with a second slot, the opening direction of the second slot is the same as the opening direction of the first slot, and the first slot and the second slot are spaced apart along the Y direction; the base is also provided with a second buckle, the first buckle and the second buckle are provided on both sides of the first flip assembly along the Y direction, the first buckle and the first slot are engaged, the second buckle and the second slot are engaged, and the second buckle and the second slot are interference fit along the Y direction.
4. The flip combination structure according to claim 1, wherein The main body is provided with two guide blocks along the X direction. The two guide blocks are provided with guide surfaces on one side facing each other along the X direction. The first flip cover assembly is installed between the two guide blocks. The guide surfaces are used to provide guidance for the first flip cover assembly to be installed on the main body along the Z direction. The guide blocks are in clearance fit with the first flip cover assembly. The X direction is perpendicular to the Y direction and the Z direction, respectively.
5. The flip combination structure according to claim 1, wherein The base has a first protrusion on one side along the Y direction, and the first protrusion has a groove. The cover plate has a second protrusion on one side along the Y direction, and the second protrusion has a rotating shaft. The main body has a third protrusion, and the rotating shaft is rotatably connected between the end face of the groove and the third protrusion. The first protrusion and the third protrusion are staggered along the extension direction of the rotating shaft.
6. The flip combination structure according to claim 5, wherein The first protrusion has a retaining seat, the second protrusion has a retaining protrusion, and the cover plate can be rotated until the retaining protrusion engages with the retaining seat, so that the cover plate is in the open state.
7. The flip combination structure according to claim 1, wherein The base and the cover plate are rotatably connected on one side of the Y direction around a center line parallel to the X direction. The base is provided with a snap-fit seat on the other side of the Y direction, and the cover plate is provided with a snap-fit buckle on the other side of the Y direction. When the cover plate is closed, the snap-fit seat and the snap-fit buckle are snapped together, and the snap-fit buckle and the snap-fit seat are interference-fitted on the side of the Y direction.
8. The flip combination structure according to claim 1, wherein It also includes a first busbar disposed on the main body. When the cover is in the closed state, one side of the cover along the Z direction covers the first busbar. When the cover is in the open state, the first busbar is exposed to the outside. The first busbar is confined to the first flip-top assembly along both the Y and X directions.
9. The flip combination structure according to claim 8, wherein The first busbar has a first limiting block and a second limiting block protruding along the Z direction, and the base has a first limiting groove and a second limiting groove. The first limiting block is limited in the first limiting groove along the X direction, and the second limiting block is limited in the second limiting groove along the Y direction; or, the first busbar is disposed in the base, and the inner sidewall of the base has a limiting part, and the outer contour of the first busbar is limited by the limiting part.
10. The flip combination structure according to claim 8, wherein It also includes a second busbar and a second flip-cover assembly. When the second flip-cover assembly is closed, the second busbar is covered by the second flip-cover assembly. When the second flip-cover assembly is open, the second busbar is exposed to the outside.
11. A power control module, characterized by It includes a housing and a flip-top assembly as described in any one of claims 1-10, with the main body connected to the opening of the housing.