Anti-glare board structure with wind resistance and bidirectional adjustment
By combining the design of the base, vertical support structure, horizontal adjustable support rod and vertical elastic support structure, the problems of complex height adjustment and high cost of the anti-glare panel are solved, and the anti-glare panel can be quickly adjusted and wind-resistant, thus improving the efficiency and wind resistance of the anti-glare panel.
Patent Information
- Application Number
- CN202311011433.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-08-11
- Publication Date
- 2026-02-03
- Estimated Expiration
- 2043-08-11
AI Technical Summary
Existing anti-glare panels have complex height adjustment structures, high costs, limited functionality, and are cumbersome to adjust. Existing wind-resistant structures also lack height and width adjustment designs.
The design incorporates a base, a vertical support structure, a horizontally adjustable support rod, a vertical elastic support structure, and an anti-glare panel. Through the cooperation of the vertical elastic support structure and the vertical support structure, the height and spacing of the anti-glare panel can be adjusted in both directions. The buffering and vibration reduction function of the vertical elastic support structure is used to prevent wind damage.
It enables quick and convenient adjustment of the height and spacing of the anti-glare panels, improves work efficiency, has good wind resistance, and reduces structural complexity and cost.
Smart Images

Figure CN117071464B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of transportation facilities technology, and more specifically, to a bidirectional adjustable anti-glare panel structure with wind resistance function. Background Technology
[0002] In recent years, with rapid economic development, highways have become one of the main means of travel. Besides providing convenient travel services, highways also present some safety hazards. For example, glare emitted by vehicles traveling at high speeds at night is one of the main causes of decreased visual function for oncoming drivers and traffic accidents. Glare refers to visual conditions that cause visual discomfort and reduce the visibility of objects due to unsuitable brightness distribution or extreme brightness contrast in space or time. Properly installed anti-glare facilities can effectively eliminate and reduce the impact of glare on drivers. However, in existing highway designs, the height of anti-glare facilities and the spacing between anti-glare panels are generally fixed and do not change with variations in the highway alignment. This disadvantage is particularly pronounced on flat curves and long downhill sections. Therefore, it is necessary to address the glare problem on flat curves and long downhill sections where conventional anti-glare measures are insufficient.
[0003] The patent application number is 202110968634.6, and the patent name is an invention patent for a multifunctional anti-glare panel for highways. It includes a variable plastic elastic stress anti-glare mechanism, a self-contained electromagnetic suspension control mechanism, a force-converting reaction space compression fixing mechanism, and a fixed support frame. This solution can use wind power to convert into a space-usable compression fixing force to achieve the wind resistance effect of the anti-glare mechanism. Moreover, the anti-glare mechanism can adjust the angle according to the strength and direction of the wind. However, this solution has a complex structure, high cost, is not suitable for large-scale use, and has no practical application value.
[0004] Patent application number 201320635630.7, entitled "A Height-Adjustable Anti-Glare Panel," uses a multi-row bolt system for height adjustment. Patent application number 201520989975.1, entitled "An Anti-Glare Panel with Height Adjustment Function," includes an anti-glare panel and a retaining block. The retaining block has a receiving groove, and one end of the anti-glare panel is installed in the receiving groove to increase or decrease the number of anti-glare panels. It also uses a multi-row bolt system for height adjustment. Both patents describe the same height adjustment method for the anti-glare panels, requiring two anti-glare panels (a base panel and an upper panel). This method is cumbersome, requiring adjustment one panel at a time, and the upper panel and base panel are prone to loosening under external forces such as wind.
[0005] The application number is 201620218360.3, and the patent name is an adjustable height anti-glare plate for the median strip of a road. It includes a fixed plate body set on a base, a movable sliding plate body set on the top of the solid plate body, sliding rails set vertically on both sides of the fixed plate body, the sliding plate body set in the sliding rails, and a screw for raising or lowering the sliding plate body set on the solid plate body. The lower end of the screw protrudes from the fixed plate body.
[0006] The patent application, number 201720715041.8, entitled "A Height-Adjustable Anti-Glare Panel," includes an inner panel, an outer frame, an adjusting rod, an adjusting handle, a toothed slide rail, a bracket, and a base. The adjusting handle drives the adjusting rod to move along one set of toothed slide rails to an adjacent set, thereby moving the inner panel up or down. When the desired height is reached, the adjusting rod is engaged within a limiting groove in the toothed slide rail. This anti-glare panel height adjustment structure is complex and has high manufacturing costs.
[0007] The application number is 202022174998.0, and the patent name is a high-strength wind-resistant anti-glare panel. The anti-glare panel has springs at the bottom for vibration damping, but it does not have height or width adjustment functions.
[0008] The application number is 202123135655.4, and the patent name is a molded fiberglass anti-glare plate. It is designed with a first spring and a second spring to simultaneously offset the impact force on the guide plate, thereby minimizing the impact force on the main body of the anti-glare plate. It does not involve adjusting the height or width.
[0009] The application number is 202223367992.0, and the patent name is "An Adjustable Anti-Glare Panel for Urban Roads". The anti-glare panel can be rotated to adjust the angle, which requires the use of motors and other components, resulting in high costs.
[0010] In summary, existing anti-glare panels involve height adjustment structures, anti-glare panel spacing adjustment structures, and wind-resistant structures. Height adjustment structures suffer from drawbacks such as complex structures, high costs, and lack of practical application value. Furthermore, adjusting the height requires adjusting each panel individually, resulting in low work efficiency. Wind-resistant structures mostly employ the principle of spring vibration damping, providing buffering and vibration reduction when the anti-glare panel is subjected to impact forces. However, these solutions only address the wind-resistant structure and do not include designs for adjusting the height or width of the anti-glare panels. Summary of the Invention
[0011] The technical problem to be solved by the present invention is to address the shortcomings of existing anti-glare panels, such as complex height adjustment structure, high cost, and single function. The present invention provides an anti-glare panel structure that is simple in structure, easy to use, and has a height adjustment structure, an anti-glare panel spacing adjustment structure, and a wind-resistant structure, and is bidirectionally adjustable with wind-resistant function.
[0012] The above-mentioned objectives of the present invention are achieved through the following technical solutions:
[0013] A bidirectional adjustable anti-glare panel structure with wind resistance includes a base, a vertical support structure, a horizontally adjustable support rod, a vertical elastic support structure, and an anti-glare panel. At least two vertical support structures are installed on the base, and a horizontally adjustable support rod connects two adjacent vertical support structures. The horizontally adjustable support rod is movably connected to the vertical support structure, and a vertical elastic support structure is provided between the horizontally adjustable support rod and the base. The anti-glare panel is vertically installed on the horizontally adjustable support rod.
[0014] Furthermore, the horizontally adjustable support rod has multiple rows of mounting holes, and the anti-glare plate is fixedly mounted on the horizontally adjustable support rod by fasteners. "Multiple rows" refers to two or more rows.
[0015] Furthermore, the horizontally adjustable support rod and the vertical support structure are movably connected by a vertical adjustment block. The vertical adjustment block includes a fixed block, an adjusting rod, and a limiting cap. The limiting cap is fixed to the adjusting rod, the adjusting rod passes through the fixed block, and the horizontally adjustable support rod is movably installed on the adjusting rod and located between the fixed block and the limiting cap. The fixed block or the adjusting rod can be manually driven to move, thereby adjusting the distance between the fixed block and the limiting cap.
[0016] Furthermore, the fixing block is fixed to the vertical support structure, the adjusting rod is threadedly connected to the fixing block, and the end of the horizontally adjustable support rod has a hole with a diameter larger than the outer diameter of the adjusting rod. The horizontally adjustable support rod is sleeved on the adjusting rod and is located between the limiting cap and the fixing block. By manually rotating the threaded adjusting rod, the adjusting rod rises or falls along the fixing block, thereby adjusting the distance between the fixing block and the limiting cap.
[0017] Furthermore, the vertical elastic support structure includes a mounting block and a spring. The mounting block is mounted on the base, one end of the spring is fixed to the mounting block, and the other end is in contact with or connected to the horizontally adjustable support rod. The spring is in a compressed state.
[0018] Furthermore, the adjusting rod is a bolt, and the limiting cap is a nut on the bolt.
[0019] Height Adjustment Principle: A vertical elastic support structure is installed between the base and the horizontally adjustable support rod. The vertical elastic support structure is compressed and also supports the horizontally adjustable support rod. Rotating the bolt lengthens the portion above the fixed block, releasing the spring and pushing the horizontally adjustable support rod upwards until its end is tightened against the nut. Conversely, rotating the bolt shortens the portion above the fixed block, tightening the horizontally adjustable support rod against the nut, compressing the spring, and causing the horizontally adjustable support rod to move downwards.
[0020] This invention's vertical elastic support structure not only provides wind protection and vibration reduction but also offers height adjustment capabilities. Both the vertical elastic support structure and the vertical support structure are simple in design, requiring no electrical components and being purely mechanical. Adjusting the height of the anti-glare panel is as simple as turning a bolt, making adjustment convenient and quick. Furthermore, the anti-glare panels themselves are adjusted simultaneously on the horizontally adjustable support rod, eliminating the need for individual panel adjustments and improving efficiency.
[0021] Furthermore, the vertical support structure is an H-beam or square steel, etc.
[0022] Furthermore, the vertical support structure is an H-beam, and the fixing block is installed in the groove of the H-beam, with the width of the fixing block equal to the width of the groove. This facilitates the positioning of the fixing block during installation.
[0023] The present invention has the following beneficial effects:
[0024] The bidirectional adjustable anti-glare panel structure with wind resistance described in this invention includes a base, a vertical support structure, a horizontally adjustable support rod, a vertical elastic support structure, and an anti-glare panel. The horizontally adjustable support rod is movably connected to the vertical support structure via a vertical adjustment block, which includes a fixing block, an adjusting rod, and a limiting cap. In use, since the vertical elastic support structure is always in a compressed state, when the vertical elastic support structure is stationary, the horizontally adjustable support rod and the limiting cap are pressed together. Rotating the adjusting rod adjusts the distance between the fixing block and the limiting cap, thus adjusting the height of the anti-glare panel located on the horizontally adjustable support rod. When the anti-glare panel is subjected to wind load, the vertical elastic support structure acts as a buffer and vibration damper. The horizontally adjustable support rod can move freely between the limiting cap and the fixing block, giving the vertical elastic support structure vertical freedom during vibration. The horizontally adjustable support rod has multiple rows of mounting holes, allowing the spacing between the anti-glare panels to be adjusted by increasing or decreasing the number of anti-glare panels. In summary, the present invention is a bidirectional adjustable anti-glare panel structure with wind-resistant function that simultaneously has a height adjustment structure, an anti-glare panel spacing adjustment structure, and a wind-resistant structure.
[0025] Meanwhile, the vertical support structure is made of square steel or H-beam steel, the horizontally adjustable support rod is a long rod, the vertical elastic support structure is a spring, the fixing block of the vertical adjustment block can be of any shape, the adjustment rod is a bolt, and the limiting cap is the nut of the bolt. Adjusting the height of the anti-glare panel is as simple as turning the threaded adjustment rod, making adjustment convenient and quick. This solves the shortcomings of existing anti-glare panel height adjustment structures, which are complex, costly, have limited functionality, and are cumbersome to adjust. Attached Figure Description
[0026] The accompanying drawings, which form part of this application, are used to provide a further understanding of the invention. The illustrative embodiments of the invention and their descriptions are used to explain the invention and do not constitute an undue limitation of the invention. In the drawings:
[0027] Figure 1 This is a schematic diagram of a bidirectional adjustable anti-glare panel with wind resistance.
[0028] Figure 2 This is a schematic diagram of the vertical adjustment block structure.
[0029] Base-1, Vertical support structure-2, Horizontally adjustable support rod-3, Vertical elastic support structure-4, Mounting block-41, Spring-42, Anti-glare plate-5, Vertical adjustment block-6, Fixing block-61, Adjusting rod-62, Limit cap-63, Nut-64. Detailed Implementation
[0030] The embodiments of the present invention will be described in detail below with reference to the accompanying drawings, but the present invention can be implemented in many different ways as defined and covered by the claims. Example
[0031] This application provides a bidirectional adjustable anti-glare panel structure with wind resistance, which allows for convenient and quick adjustment of the height and spacing between the anti-glare panels, solving the anti-glare problem on curved road sections and long downhill sections. Simultaneously, this structure has good wind resistance, providing flexible wind load resistance. Figure 1 As shown, the anti-glare panel structure includes a base 1, a vertical support structure 2, a horizontally adjustable support rod 3, a vertical elastic support structure 4, and an anti-glare panel 5. At least two vertical support structures 2 are installed on the base 1, and a horizontally adjustable support rod 3 connects two adjacent vertical support structures 2. The horizontally adjustable support rod 3 is movably connected to the vertical support structure 2, and a vertical elastic support structure 4 is provided between the horizontally adjustable support rod 3 and the base 1. The horizontally adjustable support rod 3 has multiple rows of mounting holes, and the anti-glare panel 5 is vertically fixed on the horizontally adjustable support rod 3 by fasteners.
[0032] The horizontally adjustable support rod 3 and the vertical support structure 2 are movably connected via a vertical adjustment block 6, such as... Figure 2As shown, the vertical adjustment block 6 includes a fixed block 61, an adjusting rod 62, and a limiting cap 63. The limiting cap 63 is fixed to the adjusting rod 62, and the fixed block 61 is fixed to the vertical support structure 2. The adjusting rod 62 is threadedly connected to the fixed block 61. A hole is opened at the end of the horizontally adjustable support rod 3, the diameter of which is larger than the outer diameter of the adjusting rod 62. The horizontally adjustable support rod 3 is sleeved on the adjusting rod 62 and is located between the limiting cap 63 and the fixed block 61. Manually rotating the threaded adjusting rod 62 causes it to rise or fall along the fixed block 61, thereby adjusting the distance between the fixed block 61 and the limiting cap 63. Figure 2 As shown, a nut 64 is also screwed onto the adjusting rod.
[0033] The vertical elastic support structure 4 includes a mounting block 41 and a spring 42. The mounting block 41 is mounted on the base 1. One end of the spring 42 is fixed to the mounting block 41, and the other end is in contact with or connected to the horizontally adjustable support rod 3. The spring 42 is in a compressed state. Since the vertical elastic support structure 4 is always in a compressed state, when the vertical elastic support structure 4 is in a static state, the horizontally adjustable support rod 3 is pressed against the limiting cap 63. Rotating the adjusting rod 62 adjusts the distance between the fixing block 61 and the limiting cap 63, thereby adjusting the height of the anti-glare plate 5 located on the horizontally adjustable support rod 3. When the anti-glare plate is subjected to wind load, the horizontally adjustable support rod 3 can move freely between the limiting cap and the fixing block, giving the vertical elastic support structure vertical freedom when vibrating.
[0034] The horizontally adjustable support rod 3 is a rod with a row of threaded holes evenly distributed in the horizontal direction. The anti-glare plate 5 is a conventional anti-glare plate, which is bolted to the horizontally adjustable support rod 3.
[0035] The vertical support structure 2 is an H-beam, and the fixing block 61 is installed in the groove of the H-beam. The width of the fixing block 61 is equal to the width of the groove of the H-beam. This facilitates the positioning of the fixing block 61 during installation.
[0036] The bidirectional adjustable anti-glare panel structure with wind resistance described in this application can be modularly and conveniently installed. When installed on construction sections such as flat curves or long downhill sections of highways where the height and spacing of the anti-glare panels need to be adjusted on-site, the anti-glare height of the anti-glare panel 5 can be adjusted by simultaneously rotating the adjusting rod 62 on the vertical adjusting block 6 at both ends. When it is necessary to adjust the spacing between the anti-glare panels 5 and add more anti-glare panels 5, the installation holes on the horizontally adjustable support rod 3 can be used to adjust and add anti-glare panels 5. At the same time, since the vertical support structure 4 provides a certain buffering and shock absorption effect, this structure can provide better wind resistance than conventional anti-glare panels when subjected to strong winds, effectively avoiding damage to the anti-glare panels under wind load.
[0037] The above description is merely a preferred embodiment of the present invention and is not intended to limit the invention. Various modifications and variations can be made to the present invention by those skilled in the art. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present invention should be included within the scope of the present invention.
Claims
1. A bidirectional adjustable anti-glare panel structure with wind resistance function, characterized in that, The system includes a base, a vertical support structure, a horizontally adjustable support rod, a vertical elastic support structure, and an anti-glare panel. At least two vertical support structures are mounted on the base. A horizontally adjustable support rod connects two adjacent vertical support structures, and the horizontally adjustable support rod is movably connected to the vertical support structure. A vertical elastic support structure is provided between the horizontally adjustable support rod and the base. The anti-glare panel is vertically mounted on the horizontally adjustable support rod. The horizontally adjustable support rod and the vertical support structure are movably connected by a vertical adjustment block. The vertical adjustment block includes a fixed block, an adjusting rod, and a limiting cap. The limiting cap is fixed to the adjusting rod, the adjusting rod passes through the fixed block, and the horizontally adjustable support rod is movably mounted on the adjusting rod and located between the fixed block and the vertical support structure. Between the limiting caps; the fixed block or adjusting rod is moved manually to adjust the distance between the fixed block and the limiting cap; the fixed block is fixed to the vertical support structure, the adjusting rod is threaded to the fixed block, and the end of the horizontally adjustable support rod has a hole with a diameter larger than the outer diameter of the adjusting rod. The horizontally adjustable support rod is sleeved on the adjusting rod and is located between the limiting cap and the fixed block; the threaded adjusting rod is manually rotated, and the adjusting rod rises or falls along the fixed block to adjust the distance between the fixed block and the limiting cap; the vertical elastic support structure includes a mounting block and a spring. The mounting block is mounted on the base, one end of the spring is fixed to the mounting block, and the other end is in contact with or connected to the horizontally adjustable support rod. The spring is in a compressed state.
2. The bidirectional adjustable anti-glare panel structure with wind resistance function according to claim 1, characterized in that, The horizontally adjustable support rod has multiple rows of mounting holes, and the anti-glare plate is fixedly mounted on the horizontally adjustable support rod by fasteners.
3. The bidirectional adjustable anti-glare panel structure with wind resistance function according to claim 1, characterized in that, The adjusting rod is a bolt, and the limiting cap is a nut on the bolt.
4. The bidirectional adjustable anti-glare panel structure with wind resistance function according to claim 1, characterized in that, The vertical support structure is made of H-beams or square steel.
5. The bidirectional adjustable anti-glare panel structure with wind resistance function according to claim 4, characterized in that, The vertical support structure is an H-beam, and the fixing block is installed in the groove of the H-beam. The width of the fixing block is equal to the width of the groove of the H-beam.
Citation Information
Patent Citations
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CN206941436U