一种防眩板抗风增强内置支架
By designing an anti-glare panel with an enhanced wind-resistant built-in support, and utilizing the built-in support frame and damping support structure to absorb wind vibration energy, the problem of the anti-glare panel being easily damaged in strong winds has been solved, thus improving the durability of the anti-glare panel and road safety.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- JIANGSU MODERN SHUNING ENGINEERING CONSTRUCTION CO LTD
- Filing Date
- 2025-08-22
- Publication Date
- 2026-07-17
AI Technical Summary
Anti-glare panels are prone to damage and breakage under strong winds, which increases traffic safety risks. Furthermore, existing anti-glare panels lack effective wind-resistant reinforcement support structures.
Design an anti-glare panel wind-resistant enhanced built-in bracket, including an internal support frame, an active connection damping support and a passive connection damping support, which are fixed by bolt connection. The damping ball joint shaft absorbs wind vibration energy and enhances the wind resistance performance of the anti-glare panel.
Improve the durability of anti-glare panels in strong winds, reduce the risk of damage, reduce traffic accidents, enhance road safety and operational reliability, and reduce construction costs and risks.
Smart Images

Figure CN224514088U_ABST
Abstract
Claims
1. An anti-glare panel wind-resistant reinforcement built-in bracket, characterized by, It includes an internal support frame (100) connected to the anti-glare panel and the anti-glare panel mounting base, an active connection damping support (200) supporting the anti-glare panel on one side and a passive connection damping support (300) supporting the anti-glare panel on the other side.
2. The anti-glare panel wind enhancement built-in support of claim 1, wherein: The built-in support frame (100) has an installation plate (102) at the top and a connecting plate (101) at the bottom. The installation plate (102) has ventilation holes (102a) and anchoring holes (102b), and the connecting plate (101) has connecting holes (101a).
3. The anti-glare panel wind enhancement built-in support of claim 1, wherein: The active connection damping support (200) includes an active connection support basin (203) and a universal ball joint active connection damping ball joint pivot (204). The active connection damping ball joint pivot (204) is embedded in the active connection support basin (203). The front end of the active connection support basin (203) is provided with a threaded connector (201), and the middle part is provided with an active connection limiting plate (202). One end of the active connection damping ball joint pivot (204) is provided with an active connection support rod (205), and the other end of the active connection support rod (205) is provided with an active connection support plate (206).
4. The anti-glare panel wind enhancement built-in support of claim 1, wherein: The passive connection damping support (300) includes a passive connection support basin (303) and a universal ball joint passive connection damping ball joint pivot (304). The passive connection damping ball joint pivot (304) is embedded in the passive connection support basin (303). The front end of the passive connection support basin (303) is provided with a threaded connection sleeve (301), and the middle part is provided with a passive connection limiting plate (302). One end of the passive connection damping ball joint pivot (304) is provided with a passive connection support rod (305), and the other end of the passive connection support rod (305) is provided with a passive connection support plate (306).
5. The anti-glare panel wind-enhanced built-in support according to claim 2, 3 or 4, characterized in that: The position and diameter of the connecting hole (101a) on the lower connecting plate (101) of the built-in support frame (100) correspond to the anti-glare plate and the anti-glare plate mounting base; the diameter of the anchoring hole (102b) on the upper mounting plate (102) of the built-in support frame (100) corresponds to the outer diameter of the threaded connecting sleeve (301) in the passive connection damping support (300); the mounting plate (102) of the built-in support frame (100), the threaded connector (201) of the active connection damping support (200) and the threaded connecting sleeve (301) of the passive connection damping support (300) have the same thickness.
6. The anti-glare panel wind-enhanced built-in support according to claim 3 or 4, characterized in that: The diameter of the threaded connector (201) in the active connection damping support (200) corresponds to the inner diameter of the threaded sleeve (301) in the passive connection damping support (300).
7. The anti-glare panel wind enhancement built-in bracket according to claim 2, 3 or 4, characterized in that: The built-in support frame (100) is connected to the anti-glare plate and the anti-glare plate mounting base by bolts at the connection hole (101a) opened in the lower connecting plate (101); the mounting plate (102) of the built-in support frame (100) is located between the active connection limiting plate (202) of the active connection damping support (200) and the passive connection limiting plate (302) of the passive connection damping support (300).
8. The anti-glare panel wind enhancement built-in support of claim 2, 3 or 4, wherein: The threaded connection sleeve (301) of the passive connection damping support (300) passes through the anchoring hole (102b) of the upper mounting plate (102) of the built-in support framework (100) and is connected with the threaded connection head (201) of the active connection damping support (200).