防偏转快装结构
By engaging the movable locking block on the quick-release base with the locking groove on the quick-release plate, and by cooperating with the anti-deflection protrusion and the locking groove, a double safety mechanism is formed, which solves the problem of loosening of the quick-release system in a vibration environment, improves the stability and safety of the connection, simplifies the operation steps and reduces costs.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- SHENZHEN KUPAS TECHNOLOGY CO LTD
- Filing Date
- 2025-09-11
- Publication Date
- 2026-07-17
AI Technical Summary
Existing quick-installation systems are prone to loosening under vibration, resulting in insufficient connection reliability and equipment instability.
The quick-release base uses a movable locking block on the quick-release plate to engage with a locking groove to achieve a first layer of anti-deflection, and the anti-deflection protrusion and anti-deflection slot work together to achieve a second layer of anti-deflection, forming a double insurance mechanism to enhance safety and reliability.
It effectively resists the torque and deflection force generated in all directions when the quick-connect plate is supporting the equipment, improving the stability and safety of the connection, simplifying the operation steps, reducing production costs and extending service life.
Smart Images

Figure CN224519117U_ABST
Abstract
Claims
1. An anti-deflection quick-release structure, comprising a quick-release base and a quick-release plate that fit together via a plug-in connection, characterized in that, The quick-release base includes: The base defines a receiving cavity and has a mating surface for engaging with the quick-release plate. On opposite sides of the mating surface, there are protruding insertion portions adapted to the quick-release plate, and the inner walls of the two opposing insertion portions form slots. The mating surface is provided with anti-deflection protrusions and guide holes extending through the receiving cavity, the guide holes extending along a first direction. The driven member is movably disposed within the accommodating cavity along the first direction; An active locking block is disposed on the driven member and protrudes partially from the mating surface through the guide hole; An actuating component is movably disposed on the base and is capable of abutting against the driven member to drive the driven member to move along a first direction; A first reset elastic element is disposed between the driven member and the inner wall of the receiving cavity, for providing the driven member with an elastic force to reset toward the side of the actuating component; The quick-release plate has a guide platform protruding from the edge of the side facing the quick-release base. The outer side wall of the guide platform is recessed with an anti-deflection groove that corresponds to the anti-deflection protrusion. The inner side wall of the guide platform is recessed with a locking groove that corresponds to the movable locking block.
2. The anti-deflection quick mount structure of claim 1, wherein The inner wall of the guide platform of the quick-release plate is provided with a guide inclined surface to guide the movable block to move in a first direction toward the side away from the trigger component during the process of inserting the quick-release plate into the quick-release seat.
3. The anti-deflection quick mount structure of claim 2, wherein, The quick-release plate has four guide platforms of equal length on its four edges facing the quick-release base. The inner sidewalls of the four guide platforms are provided with the guide inclined surface and the locking groove, and the outer sidewalls are provided with the anti-deflection slot.
4. The anti-deflection quick mount structure of claim 1, wherein The active card block has a cylindrical structure.
5. The anti-deflection quick mount structure of claim 1, wherein The movable block has a "V" shaped or trapezoidal structure, and the distance between the two inclined sidewalls of the movable block gradually increases from the side closer to the trigger component to the side farther away from the trigger component; correspondingly, the locking groove is configured to adapt to the "V" shaped or trapezoidal structure on the side closer to the trigger component.
6. The anti-deflection quick mount structure of claim 1, wherein The anti-deflection protrusion has a "V" shape or trapezoidal structure, and the distance between the two inclined sidewalls of the anti-deflection protrusion gradually increases from the inner sidewall to the outer sidewall; correspondingly, the anti-deflection slot is also set as a "V" shape or trapezoidal structure.
7. The anti-deflection quick mount structure of claim 1, wherein The touch component includes a button, a button base, and a driving member. The driving member is movably disposed within the accommodating cavity, and the button base is fixedly disposed on the driving member. The button is movably disposed on the button base along a second direction. A button groove for the button to move is provided on the side wall of the base. A through hole for the button to pass through is provided on the bottom wall of the button groove, and a limiting wall for restricting the button from passing through is formed on one side of the through hole.
8. The anti-deflection quick mount structure of claim 7, wherein, A second reset elastic element is provided between the driving component and the base.
9. The anti-deflection quick mount structure of claim 7, wherein, The button has a "T-shaped" slider on the side facing the button base, and the button base has a "T-shaped" groove on the side facing the button that is adapted to the "T-shaped" slider and extends in a second direction; the button base has an elastic post on the side facing the button, and the surface of the "T-shaped" slider facing the button base has a concave-convex structure adapted to the elastic plunger.
10. The anti-deflection quick mount structure of claim 1, wherein, The driven member has an "]-shaped structure, including two opposing arms and a connecting arm connecting the two arms. The connecting arm is located on the side away from the actuating component. The inner surfaces of the two arms are recessed with limiting grooves. A guide boss adapted to the driven member is provided in the accommodating cavity. The guide boss is located between the two arms of the driven member. The center of the guide boss is constructed as an outwardly protruding arc-shaped structure adapted to the limiting groove, and a nut or internal thread is provided at the position of the arc-shaped structure. A cover plate is detachably provided on the side of the seat away from the mating surface.