Power generation type anti-glare panel with high vibration resistance

By designing a multi-group separate light barrier and main rod on the anti-glare plate, combined with the design of the power generation permanent magnet and turbine cavity, the problem of poor vibration resistance of the existing anti-glare plate is solved, and efficient wind energy conversion and electric power generation is achieved.

CN119956700AInactive Publication Date: 2025-05-09ZHEJIANG COLLEGE OF ZHEJIANG UNIV OF TECHOLOGY
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202510280373.7
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-03-11
Publication Date
2025-05-09
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

The existing anti-glare plates have poor vibration resistance and are prone to severe winds to break, and have a single function and occupy a large area.

Method used

A high vibration resistance power generation anti-glare plate is designed. By setting up a multi-group separate light barrier plate and main rod, an exhaust joint is formed between the light barrier plate to reduce wind resistance. Longitudinal grooves and mass blocks are provided in the main rod to improve stability, and wind energy is converted into electrical energy using the power generation permanent magnet and the turbine cavity.

Benefits of technology

It improves the vibration resistance of the anti-glare plate, reduces the risk of wind damage, and at the same time realizes the power generation function, reduces equipment costs, and is suitable for large-scale laying.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN119956700A_ABST
    Figure CN119956700A_ABST
Patent Text Reader

Abstract

The invention relates to the related technical field of anti-glare panels, and discloses a high-vibration-resistance power generation type anti-glare panel which comprises a functional body, a main rod is arranged on the upper side of the functional body, auxiliary rods are arranged on the two sides of the main rod, light barriers are arranged on the auxiliary rods, bending angles are arranged at the upper ends and the lower ends of the light barriers, and exhaust gaps are formed between the adjacent light barriers. A longitudinal groove is formed in the main rod, a mass block is arranged in the longitudinal groove in an up-down sliding mode, the power generation type anti-glare panel with the high vibration resistance is provided with a plurality of sets of separated light barriers, on one hand, the light barriers are used for shading, and on the other hand, air exhaust seams are formed between the adjacent light barriers and used for exhausting air and reducing resistance; due to the arrangement of the exhaust seams, the deformable degree of the exhaust seams is increased, linkage vibration of the exhaust seams caused by wind resistance is avoided, and therefore the risk that the exhaust seams are damaged by wind power is greatly reduced.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The invention relates to the technical field related to anti-glare panels, and in particular to a power-generating anti-glare panel with high vibration resistance. Background Art

[0002] An anti-glare plate is a traffic safety product manufactured to solve the glare from oncoming vehicle lights and installed on the central median of a highway. Most of them are installed on the guardrail of the central median of the highway or in the middle of the guardrail. Some are also installed on the movable guardrail of the central opening. Common ones include ordinary straight plates, reverse S-shaped plates, etc. Existing anti-glare plates are easily broken by strong winds, have poor vibration resistance, single function, and occupy a large area. The main problem solved by the present invention is how to provide an anti-glare plate with good vibration resistance and capable of utilizing wind energy. Summary of the invention

[0003] The object of the present invention is to provide a highly vibration-resistant power-generating anti-glare panel to overcome the above-mentioned defects in the prior art.

[0004] The present invention is achieved through the following technical solutions.

[0005] A highly vibration-resistant power-generating anti-glare panel of the present invention comprises a functional body, wherein a main rod is provided on the upper side of the functional body, auxiliary rods are provided on both sides of the main rod, the auxiliary rods are provided with light baffles, the upper and lower ends of the light baffles have bending angles, exhaust gaps are formed between adjacent light baffles, a longitudinal groove is provided in the main rod, a mass block is provided in the longitudinal groove for sliding up and down, a control body is provided on the upper side of the main rod, a turbine cavity is provided in the control body, the turbine cavity connects the longitudinal groove and the outside air, a turbine is rotatably provided in the turbine cavity, blades are rotatably provided on the outside of the control body, the shaft of the blade is connected to the shaft of the turbine, a power-generating cavity is provided at the bottom of the functional body, a power-generating permanent magnet is provided in the power-generating cavity, the upper side of the power-generating permanent magnet is connected to the lower end of the main rod, a power-generating coil is provided on the power-generating cavity wall, and the power-generating permanent magnet is connected to the main rods adjacent to each other in front and behind.

[0006] A further technical solution is that a support cavity is provided on the upper side of the functional body, a transition cavity is provided between the support cavity and the power generation cavity, a connecting rod is rotatably provided on the wall of the support cavity, the rotation axis of the connecting rod is parallel to the surface of the light baffle, a vibration amplifying rod is provided under the connecting rod, the connecting rod is connected to the main rod on the top, the vibration amplifying rod passes through the transition cavity, and the vibration amplifying rod is connected to the power generation permanent magnet.

[0007] A further technical solution is that the support cavity wall is provided with an annular permanent magnet, a cylindrical permanent magnet is provided in the central groove of the annular permanent magnet, the outer side of the cylindrical permanent magnet has the same magnetic pole as the wall of the central groove of the annular permanent magnet, the upper side of the cylindrical permanent magnet is connected to the lower end of the main rod, and the lower end of the cylindrical permanent magnet is connected to the vibration connecting rod.

[0008] A further technical solution is that an adjusting body is provided on one side of the functional body, an adjusting cavity is provided in the adjusting body, a first piston and a second piston are slidably provided in the adjusting cavity, a spring is provided between the first piston and the second piston, a liquid pipe is provided on the side of the adjusting cavity close to the first piston, the liquid pipe is connected to the main rod, the cavity on the side of the adjusting cavity close to the first piston is provided with liquid, and the longitudinal groove is located in the cavity on the lower side of the mass block and is provided with liquid.

[0009] According to a further technical solution, a threaded hole is provided on one side wall of the regulating chamber close to the second piston and connected to the outside, a threaded rod is threadedly connected in the threaded hole, a lever is provided on the outer side of the threaded rod, and the inner side of the threaded rod abuts against the second piston.

[0010] A further technical solution is that a ventilation hole is provided on the upper side of the turbine chamber which is connected to the outside world, and a rain shield is rotatably provided on the turbine chamber located on the upper side of the ventilation hole. The upper side of the rain shield is connected to the blades, and a turbine rod is provided on the lower side of the rain shield. The turbine rod enters into the turbine chamber, and the lower end of the turbine rod is connected to the axis of the turbine.

[0011] According to a further technical solution, a ground mounting plate is provided on the lower side of the functional body, the lower end of the ground mounting plate is connected to the ground, and the upper side of the ground mounting plate fixes and mounts multiple groups of functional bodies.

[0012] Beneficial effects of the present invention:

[0013] A highly vibration-resistant power-generating anti-glare panel of the present invention is provided with a plurality of separate light-blocking panels. On the one hand, the light-blocking panels are used for shading, and on the other hand, exhaust slits are formed between adjacent light-blocking panels for exhausting air and reducing resistance. The provision of the exhaust slits increases the deformability of the exhaust slits, avoids chain vibrations of the exhaust slits caused by wind resistance, and thus greatly reduces the risk of the exhaust slits being damaged by wind.

[0014] The exhaust slit vibrates due to the wind, and the main rod transmits the vibration to the generating permanent magnet. The generating permanent magnet and the generating coil have opposite motion, thereby forming an induced electromotive force in the generating coil, which plays the role of power generation and shock absorption. The generating permanent magnet connects the front and rear main rods to each other, and can coordinate the vibration pace of the connected main rods to achieve a resonance effect, thereby converting the vibration of all connected main rods into the vibration of the generating permanent magnet. This design can amplify tiny vibrations, facilitate the concentrated conversion of mechanical energy into electrical energy, save equipment costs, and facilitate large-scale laying.

[0015] The external wind blows the blades to rotate, and the pressure in the space above the longitudinal groove is proportional to the rotation of the blades. When the external wind is strong, the pressure in the space above the longitudinal groove is high, and the mass block moves downward, thereby lowering the center of gravity of the main rod, improving stability, and avoiding excessive vibration of the device. When the wind is weak, the mass block moves upward to improve the swingability of the main rod, so that the vibration of the main rod always remains within a certain safety range as the wind changes. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] In order to more clearly illustrate the embodiments of the invention or the technical solutions in the prior art, the drawings required for use in the embodiments or the description of the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of the invention. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying any creative work.

[0017] The present invention is further described below in conjunction with the accompanying drawings and embodiments.

[0018] Figure 1 It is a schematic diagram of the overall structure of the present invention;

[0019] Figure 2 yes Figure 1 A schematic diagram of the enlarged structure of the 10th part of the middle functional body;

[0020] Figure 3 yes Figure 1 A schematic diagram of the structure enlargement in the middle;

[0021] Figure 4 yes Figure 2 A schematic diagram of the enlarged structure at B in the middle;

[0022] Figure 5 yes Figure 1 FIG. 2 is a schematic diagram of an enlarged side structure between adjacent light blocking plates 20. FIG. DETAILED DESCRIPTION

[0023] Combine the following Figure 1-5 The present invention is described in detail. For the convenience of description, the directions mentioned below are defined as follows: the up, down, left, right, front, and back directions mentioned below are the same as Figure 1The up-down, left-right, front-back directions of the projection relationship itself are consistent.

[0024] Combined with Figure 1-5 The high vibration-resistant power-generating anti-glare panel comprises a functional body 10, a main rod 14 is arranged on the upper side of the functional body 10, auxiliary rods 21 are arranged on both sides of the main rod 14, and the auxiliary rods 21 are provided with light-blocking plates 20, two light-blocking plates 20 are close to each other at one end and have a certain bending angle, and the bending angle is between 0-90 degrees, multiple groups of light-blocking plates 20 are arranged in a triangle, and exhaust gaps 22 are formed between adjacent light-blocking plates 20, a longitudinal groove 26 is arranged in the main rod 14, and a mass block 27 is provided in the longitudinal groove 26 for sliding up and down, and a control body 2 is provided on the upper side of the main rod 14 5. A turbine chamber 28 is provided in the control body 25, and the turbine chamber 28 is connected with the longitudinal groove 26 and the outside air. A turbine 29 is rotatably provided in the turbine chamber 28. A blade 31 is rotatably provided on the outer side of the control body 25, and the shaft of the blade 31 is connected with the shaft of the turbine 29. A power generation chamber 13 is provided at the bottom of the functional body 10, and a power generation permanent magnet 24 is provided in the power generation chamber 13. The upper side of the power generation permanent magnet 24 is connected to the lower end of the main rod 14. A power generation coil 23 is provided on the wall of the power generation chamber 13, and the power generation permanent magnet 24 is connected to the main rod 14 adjacent to the front and rear.

[0025] The present device replaces the traditional anti-glare plate, and a main rod 14 is provided for supporting the main body, and an auxiliary rod 21 plays the role of auxiliary support. A plurality of separate light-blocking panels 20 are provided for shading, and the light-blocking panels 20 are arranged in a triangle, which is beneficial to reducing the wind resistance at the top of the light-blocking panels 20 and enhancing the support of the bottom. An exhaust slit 22 is formed between adjacent light-blocking panels 20. On the one hand, it is used for exhausting air and reducing resistance. On the other hand, it increases the deformability of the exhaust slit 22, and avoids the chain vibration of the light-blocking panels 20 caused by wind resistance, thereby greatly reducing the risk of the light-blocking panels 20 being damaged by wind. The light-blocking panels 20 vibrate under the action of wind, and the vibration is transmitted to the main rod 14 through the auxiliary rod 21. The main rod 14 transmits the vibration to the power-generating permanent magnet 24, and a counter-motion occurs between the power-generating permanent magnet 24 and the power-generating coil 23, thereby forming an induced electromotive force in the power-generating coil 23, which plays the role of power generation and shock absorption. Connecting the front and rear main rods 14 to each other can make the vibration steps of the connected main rods 14 coordinated and reach a resonance effect, thereby converting the vibration of all connected main rods 14 into the vibration of the power generation permanent magnet 24. Such a design can amplify tiny vibrations, facilitate the concentrated conversion of mechanical energy into electrical energy, save the cost of equipment, and facilitate large-scale laying. The external wind blows the blades 31 to rotate, and the blades 31 drive the turbine 29 to rotate. The turbine 29 compresses the external air to the longitudinal groove 26 located on the upper side of the mass block 27. The pressure of the space on the upper side of the longitudinal groove 26 is proportional to the rotation of the blade 31. When the external wind is strong, the pressure of the space on the upper side of the longitudinal groove 26 is strong, and the mass block 27 moves downward, thereby lowering the center of gravity of the main rod 14, improving stability, and avoiding excessive vibration of the device. When the wind force is weak, the mass block 27 moves upward to improve the swingability of the main rod 14, so that the vibration of the main rod 14 is always kept within a certain safety range with the change of wind force.

[0026] Preferably, a support cavity 12 is provided on the upper side of the functional body 10, and a transition cavity 42 is provided between the support cavity 12 and the power generation cavity 13. A connecting rod 17 is rotatably provided on the wall of the support cavity 12, and the rotation axis of the connecting rod 17 is parallel to the surface of the light baffle 20. A vibration amplifying rod 18 is provided under the connecting rod 17, and the connecting rod 17 is connected to the main rod 14 on top. The vibration amplifying rod 18 passes through the transition cavity 42, and the vibration amplifying rod 18 is connected to the power generation permanent magnet 24.

[0027] The vibration of the main rod 14 is transmitted to the vibration amplifying rod 18 through the connecting rod 17. The vibration amplifying rod 18 amplifies the vibration of the main rod 14 and acts on the generating permanent magnet 24. The connecting rod 17 absorbs part of the vibration parallel to the light baffle 20, does not limit the vibration perpendicular to the light baffle 20, and plays a certain filtering role.

[0028] Preferably, the wall of the support cavity 12 is provided with an annular permanent magnet 15, and a cylindrical permanent magnet 16 is provided in the central groove of the annular permanent magnet 15. The outer side of the cylindrical permanent magnet 16 has the same magnetic pole as the wall of the central groove of the annular permanent magnet 15. The upper side of the cylindrical permanent magnet 16 is connected to the lower end of the main rod 14, and the lower end of the cylindrical permanent magnet 16 is connected to the vibration connecting rod 19.

[0029] The annular permanent magnet 15 controls the cylindrical permanent magnet 16 through the action of the magnetic field, fixes the cylindrical permanent magnet 16 in the center groove of the annular permanent magnet 15, and fixes the main rod 14 through the magnetic field, thereby reducing friction, reducing noise, and facilitating efficient transmission of vibration from the main rod 14 to the generating permanent magnet 24.

[0030] Preferably, an adjusting body 34 is provided on one side of the functional body 10, and an adjusting chamber 36 is provided in the adjusting body 34. A first piston 37 and a second piston 38 are slidably provided in the adjusting chamber 36, and a spring is provided between the first piston 37 and the second piston 38. A liquid pipe 35 is provided on the side of the adjusting chamber 36 close to the first piston 37, and the liquid pipe 35 is connected to the main rod 14. Liquid is provided in the cavity of the adjusting chamber 36 close to the first piston 37, and liquid is provided in the cavity of the longitudinal groove 26 located at the lower side of the mass block 27.

[0031] The second piston 38 is pushed to control the distance between the first piston 37 and the second piston 38, thereby adjusting the compression of the spring. The pressure is transmitted to the longitudinal groove 26 through the first piston 37 and the liquid, and then to the lower surface of the mass block 27, thereby controlling the supporting force on the lower side of the mass block 27.

[0032] Preferably, a side wall of the regulating chamber 36 close to the second piston 38 is connected to the outside and is provided with a threaded hole 40, a threaded rod 39 is threadedly connected inside the threaded hole 40, a lever 41 is provided outside the threaded rod 39, and the inner side of the threaded rod 39 abuts against the second piston 38.

[0033] Hold the lever 41 and rotate it. The lever 41 drives the threaded rod 39 to rotate in the threaded hole 40. The threaded rod 39 abuts against the second piston 38, thereby adjusting the position of the second piston 38 in the regulating chamber 36, thereby adjusting the spring compression amount and the pressure of the liquid in the regulating chamber 36.

[0034] Preferably, a ventilation hole 32 is provided on the upper side of the turbine chamber 28 which is connected to the outside world. A rain shield 30 is rotatably provided on the upper side of the ventilation hole 32. The blades 31 are connected to the upper side of the rain shield 30. A turbine rod 33 is provided on the lower side of the rain shield 30. The turbine rod 33 enters into the turbine chamber 28. The lower end of the turbine rod 33 is connected to the axis of the turbine 29.

[0035] The function of the rain shield 30 is to shield the outlet of the ventilation hole 32 from rain, and as the blades 31 rotate, the blades 31 drive the rain shield 30 to rotate, which can throw out the dust on the surface of the rain shield 30. The rotation of the rain shield 30 drives the turbine 29 to rotate through the turbine rod 33, thereby converting wind energy into the rotation of the turbine 29.

[0036] Preferably, a ground mounting plate 11 is provided on the lower side of the functional body 10 , the lower end of the ground mounting plate 11 is connected to the ground, and the upper side of the ground mounting plate 11 fixes and mounts multiple groups of functional bodies 10 .

[0037] The ground mounting plate 11 is installed on the ground. The ground mounting plate 11 provides an installation position for installing multiple groups of functional bodies 10. When a single group of functional bodies 10 has a problem, it is convenient to replace it.

[0038] The above embodiments are only for illustrating the technical concept and features of the present invention, and their purpose is to enable people familiar with the technology in this field to understand the content of the present invention and implement it, and they cannot be used to limit the protection scope of the present invention. Any equivalent changes or modifications made according to the spirit of the present invention should be included in the protection scope of the present invention.

Claims

1. A highly vibration-resistant power-generating anti-glare panel, comprising a functional body, characterized in that: A main rod is provided on the upper side of the functional body, auxiliary rods are provided on both sides of the main rod, the auxiliary rods are provided with light baffles, the upper and lower ends of the light baffles have bending angles, and exhaust gaps are formed between adjacent light baffles. A longitudinal groove is provided in the main rod, and a mass block is provided in the longitudinal groove for sliding up and down. A control body is provided on the upper side of the main rod, and a turbine cavity is provided in the control body, and the turbine cavity connects the longitudinal groove and the outside air. A turbine is rotatably provided in the turbine cavity, and blades are rotatably provided on the outside of the control body, and the shaft of the blade is connected to the shaft of the turbine. A power generation cavity is provided at the bottom of the functional body, and a power generation permanent magnet is provided in the power generation cavity, and the upper side of the power generation permanent magnet is connected to the lower end of the main rod, and a power generation coil is provided on the power generation cavity wall, and the power generation permanent magnet is connected to the main rods adjacent to each other in front and behind.

2. The highly vibration-resistant power-generating anti-glare panel according to claim 1, characterized in that: A support cavity is provided on the upper side of the functional body, a transition cavity is provided between the support cavity and the power generation cavity, a connecting rod is rotatably provided on the wall of the support cavity, the rotation axis of the connecting rod is parallel to the surface of the light baffle, a vibration amplifying rod is provided under the connecting rod, the connecting rod is connected to the main rod on the top, the vibration amplifying rod passes through the transition cavity, and the vibration amplifying rod is connected to the power generation permanent magnet.

3. The highly vibration-resistant power-generating anti-glare panel according to claim 2, characterized in that: The support cavity wall is provided with an annular permanent magnet, a cylindrical permanent magnet is provided in the central groove of the annular permanent magnet, the outer side of the cylindrical permanent magnet has the same magnetic pole as the wall of the central groove of the annular permanent magnet, the upper side of the cylindrical permanent magnet is connected to the lower end of the main rod, and the lower end of the cylindrical permanent magnet is connected to the vibration connecting rod.

4. The highly vibration-resistant power-generating anti-glare panel according to claim 1, characterized in that: An adjusting body is provided on one side of the functional body, an adjusting cavity is provided in the adjusting body, a first piston and a second piston are slidably provided in the adjusting cavity, a spring is provided between the first piston and the second piston, a liquid pipe is provided on the side of the adjusting cavity close to the first piston, the liquid pipe is connected to the main rod, liquid is provided in the cavity on the side of the adjusting cavity close to the first piston, and liquid is provided in the cavity of the longitudinal groove located at the lower side of the mass block.

5. The highly vibration-resistant power-generating anti-glare panel according to claim 4, characterized in that: A threaded hole is provided on one side wall of the regulating chamber close to the second piston and communicates with the outside. A threaded rod is threadedly connected in the threaded hole. A lever is provided on the outer side of the threaded rod. The inner side of the threaded rod abuts against the second piston.

6. The highly vibration-resistant power-generating anti-glare panel according to claim 1, characterized in that: A ventilation hole is provided on the upper side of the turbine chamber, which is connected to the outside world. A rain shield is rotatably provided on the upper side of the ventilation hole. The blades are connected to the upper side of the rain shield. A turbine rod is provided on the lower side of the rain shield. The turbine rod enters into the turbine chamber, and the lower end of the turbine rod is connected to the axis of the turbine.

7. The highly vibration-resistant power-generating anti-glare panel according to claim 1, characterized in that: A ground mounting plate is provided at the lower side of the functional body, the lower end of the ground mounting plate is connected to the ground, and the upper side of the ground mounting plate fixes and mounts multiple groups of functional bodies.