Full-wave-transparent lightning protection device with windproof function

By introducing windproof and adjustment components into the fully transparent lightning protection device, and using wind power to drive the movement of the windproof components, the stability problem of the device in strong wind environments is solved, ensuring the normal operation of the device's lightning protection and wave transmission functions.

CN223843337UActive Publication Date: 2026-01-27XIAN WANGBIDA MATERIAL TECH CO LTD
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Patent Information

Application Number
CN202520042264.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-08
Publication Date
2026-01-27
Estimated Expiration
2035-01-08

AI Technical Summary

Technical Problem

Existing fully transparent lightning protection devices lack wind protection in outdoor environments, making them susceptible to being blown over or structurally deformed by strong winds, thus affecting their lightning protection and wave transmission functions.

Method used

A fully transparent lightning protection device was designed, comprising a windproof component, an adjustment component, and a moving component. The adjustment component is driven by wind power to move the windproof component, so that the tip of the windproof component faces the direction of the wind, breaking the airflow and reducing the wind force on the lifting rod.

Benefits of technology

It effectively reduces the wind force on the lifting mast, preventing the device from tipping over or the structure from deforming, and ensuring the stability of lightning protection and wave transmission functions.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of lifting rods, and discloses a full-wave-transparent lightning protection device with a windproof function, which comprises a lifting rod, one side of the lifting rod is provided with a windproof component capable of reducing wind blowing power, and the other side of the lifting rod is provided with an adjusting component capable of enabling the windproof component to directly face wind blowing. By arranging the windproof assembly, the adjusting assembly and the moving assembly, when wind blows to the lifting rod, the adjusting assembly can be blown, the adjusting assembly can be matched with the moving assembly to move with the lifting rod as the center, when the adjusting assembly moves, the moving assembly can drive the windproof assembly to move, and the adjusting assembly is in a downwind state due to the wind; in this way, the tip of the windproof assembly can face the direction of wind blowing due to movement, wind can be broken open by the tip of the windproof assembly and blown away towards the two sides of the windproof assembly, and therefore the wind blowing force borne by the lifting rod can be reduced.
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Description

Technical Field

[0001] This utility model relates to the field of lifting pole technology, and in particular to a fully transparent lightning protection device with windproof function. Background Technology

[0002] Currently, a fully transparent lightning protection device is a device that installs a lightning rod on a rising mast. "Fully transparent" means that it has excellent penetration of electromagnetic waves (such as radar waves, communication signals, etc.) and hardly hinders the transmission of electromagnetic waves. When used in fields such as communications and radar, signals can pass smoothly through the support device, ensuring communication quality or the accuracy of radar detection.

[0003] Fully transparent surge protection devices are generally installed near base station antennas. While protecting base station equipment from lightning strikes, they do not interfere with communication signals because the communication signals can pass through the device smoothly, ensuring the normal operation of the base station's communication function. Strong winds in the outdoor environment can cause great damage to the device. If the device does not have good wind resistance, it may be blown over or deformed. Once the device tilts, it will not only damage the device itself, but may also affect its lightning protection and wave transmission functions. Therefore, it is necessary to design a fully transparent surge protection device with wind resistance. Utility Model Content

[0004] To solve the above-mentioned technical problems, this utility model provides a fully transparent lightning protection device with windproof function.

[0005] This utility model is achieved using the following technical solution: a fully transparent lightning protection device with windproof function, including a lifting rod, a lightning rod fixedly installed at the top of the lifting rod, a windproof component that can reduce the wind force on one side of the lifting rod, an adjustment component that allows the windproof component to face the wind directly on the other side of the lifting rod, and a movable component that allows the windproof component and the adjustment component to rotate around the lifting rod, the windproof component including a first windproof plate disposed on one side of the lifting rod and having a first insertion slot on the top, and a second windproof plate that is slidably inserted into the first insertion slot.

[0006] With the above technical solution, when the wind blows towards the lifting rod, it will move the adjustment component. The adjustment component will then move around the lifting rod in coordination with the moving component. When the adjustment component moves, the moving component will move the windproof component along with it. Because the adjustment component is blown by the wind, it is in a downwind state. As a result, the tip of the windproof component will face the direction of the wind due to the movement. In this way, the wind will be broken by the tip of the windproof component and blown away to both sides of the windproof component. This can reduce the force of the wind blowing on the lifting rod.

[0007] As a further improvement to the above solution, both the first and second windproof panels are arranged in a "V" shape.

[0008] With the above technical solution, the tips of the first and second windproof plates will be broken, allowing the wind to move along both sides of the two windproof plates and not blow directly onto the lifting rod.

[0009] As a further improvement to the above solution, the moving component includes a first fixing ring fixedly sleeved at the bottom end of the lifting rod and a second fixing ring fixedly sleeved at the top end of the lifting rod. Sliding grooves are provided on the cylindrical surfaces of the first fixing ring and the second fixing ring, and sliding rings are slidably sleeved on both sliding grooves.

[0010] With the above technical solution, the sliding ring will rotate on the first fixed ring and the second fixed ring, thereby allowing the first windproof plate and the second windproof plate to rotate along the lifting rod.

[0011] As a further improvement to the above solution, a first connecting plate is symmetrically fixedly installed on both sides of each sliding ring, and a first fixing plate arranged in a "T" shape is fixedly installed inside the openings of the first windproof plate and the second windproof plate. The ends of the two first fixing plates near the lifting rod are fixedly installed with the adjacent first connecting plate.

[0012] With the above technical solution, the rotation of the sliding ring will cause the first connecting plate to move the first fixed plate, thereby allowing the first windproof plate and the second windproof plate to rotate around the lifting rod.

[0013] As a further improvement to the above solution, the adjustment assembly includes a first adjustment plate disposed on one side of the lifting rod and having a second insertion slot on its top, and a second adjustment plate slidably inserted into the second insertion slot. The top of the first adjustment plate and the bottom of the second adjustment plate are both fixedly installed with second fixing plates, and the ends of the two second fixing plates near the lifting rod are both fixedly installed with adjacent first connecting plates.

[0014] With the above technical solution, the first and second adjustment plates are made of lightweight plastic. When blown by the wind, they will move with the wind, causing the second fixing plate to drive the first connecting plate, which in turn drives the sliding ring to rotate. This ensures that the tips of the first and second windproof plates always face the direction from which the wind blows.

[0015] As a further improvement to the above solution, both sides of the lifting rod are provided with first support bars with third insertion slots at their top ends. Second support bars are slidably inserted into the interior of each of the two third insertion slots. The bottom ends of the two first support bars are fixedly installed with the adjacent first connecting plate at the bottom end of the lifting rod, and the top ends of the two second support bars are fixedly installed with the adjacent first connecting plate at the top end of the lifting rod.

[0016] Through the above technical solution, the first support bar and the second support bar will play a certain stabilizing role for the lifting rod. When the lifting rod is raised, lowered and retracted, the second support bar will be inserted into the interior of the first support bar to prevent the lifting rod from being unable to retract.

[0017] Compared with the prior art, the beneficial effects of this utility model are as follows:

[0018] This invention incorporates a windproof component, an adjustment component, and a moving component. When wind blows towards the lifting rod, it activates the adjustment component, which then moves in coordination with the moving component around the lifting rod. As the adjustment component moves, the moving component carries the windproof component along with it. Because the adjustment component is exposed to the wind, it is in a downwind position. Consequently, the tip of the windproof component faces the direction of the wind, causing the wind to be broken up by the tip and blown away to both sides of the windproof component. This reduces the force exerted on the lifting rod by the wind. Attached Figure Description

[0019] Figure 1 This is a three-dimensional structural diagram of the present invention;

[0020] Figure 2 This is a schematic diagram of the structure of the present invention with a movable component;

[0021] Figure 3 This is a cross-sectional structural diagram of the second fixed ring and sliding ring of this utility model.

[0022] Explanation of key symbols:

[0023] 1. Lifting rod; 201. First windproof plate; 202. Second windproof plate; 301. First adjusting plate; 302. Second adjusting plate; 401. First fixing ring; 402. Second fixing ring; 403. Sliding ring; 5. Second support bar; 6. First connecting plate; 7. First fixing plate; 8. Second fixing plate; 9. First support bar; 10. Lightning rod. Detailed Implementation

[0024] The present invention will be further described below with reference to the accompanying drawings and specific embodiments. It should be noted that, without conflict, the various embodiments or technical features described below can be arbitrarily combined to form new embodiments.

[0025] Please combine Figures 1-3 This embodiment of a fully transparent lightning protection device with windproof function includes a lifting rod 1, a lightning rod 10 fixedly installed at the top of the lifting rod 1, a windproof component that can reduce the wind force on one side of the lifting rod 1, an adjustment component that allows the windproof component to face the wind directly on the other side of the lifting rod 1, and a movable component that allows the windproof component and the adjustment component to rotate around the lifting rod 1.

[0026] When the wind blows towards the lifting rod 1, it will move the adjusting component. The adjusting component will then move around the lifting rod 1 in coordination with the moving component. When the adjusting component moves, the moving component will move the windproof component along with it. Because the adjusting component is blown by the wind, it is in a downwind state. As a result, the tip of the windproof component will face the direction of the wind due to the movement. In this way, the wind will be broken by the tip of the windproof component and blown away to both sides of the windproof component. This can reduce the force of the wind blowing on the lifting rod 1.

[0027] The windproof assembly includes a first windproof plate 201 disposed on one side of the lifting rod 1 and having a first insertion slot on the top, and a second windproof plate 202 slidably inserted into the first insertion slot. Both the first windproof plate 201 and the second windproof plate 202 are arranged in a "V" shape.

[0028] When the wind blows towards the tips of the first windproof plate 201 and the second windproof plate 202, it will be broken, allowing the wind to move along the sides of the two windproof plates and not blow directly onto the lifting rod 1.

[0029] The movable component includes a first fixing ring 401 fixedly sleeved at the bottom end of the lifting rod 1 and a second fixing ring 402 fixedly sleeved at the top end of the lifting rod 1. Sliding grooves are provided on the cylindrical surfaces of the first fixing ring 401 and the second fixing ring 402, and sliding rings 403 are slidably sleeved on the two sliding grooves.

[0030] The sliding ring 403 rotates on the first fixed ring 401 and the second fixed ring 402, thereby allowing the first windproof plate 201 and the second windproof plate 202 to rotate along the lifting rod 1.

[0031] Each sliding ring 403 has a first connecting plate 6 symmetrically fixedly installed on both sides. The openings of the first windproof plate 201 and the second windproof plate 202 are both fixedly installed with a first fixing plate 7 arranged in a "T" shape. The ends of the two first fixing plates 7 near the lifting rod 1 are fixedly installed with the adjacent first connecting plate 6.

[0032] When the sliding ring 403 rotates, the first connecting plate 6 will drive the first fixed plate 7 to move, thereby allowing the first windproof plate 201 and the second windproof plate 202 to rotate around the lifting rod 1.

[0033] The adjustment assembly includes a first adjustment plate 301 disposed on one side of the lifting rod 1 and having a second insertion slot at the top, and a second adjustment plate 302 slidably inserted into the second insertion slot. A second fixing plate 8 is fixedly installed on the top of the first adjustment plate 301 and the bottom of the second adjustment plate 302. The ends of the two second fixing plates 8 near the lifting rod 1 are fixedly installed with the adjacent first connecting plate 6.

[0034] The first adjusting plate 301 and the second adjusting plate 302 are made of lightweight plastic. When blown by the wind, they will move with the wind, causing the second fixing plate 8 to drive the first connecting plate 6, which in turn drives the sliding ring 403 to rotate. This ensures that the tips of the first windproof plate 201 and the second windproof plate 202 always face the direction from which the wind blows.

[0035] Both sides of the lifting rod 1 are provided with first support bars 9 with third insertion slots at the top. Second support bars 5 are slidably inserted into the two third insertion slots. The bottom ends of the two first support bars 9 are fixedly installed with the adjacent first connecting plate 6 at the bottom end of the lifting rod 1. The top ends of the two second support bars 5 are fixedly installed with the adjacent first connecting plate 6 at the top end of the lifting rod 1.

[0036] The first support bar 9 and the second support bar 5 will play a certain stabilizing role for the lifting rod 1. When the lifting rod 1 is raised, lowered and retracted, the second support bar 5 will be inserted into the interior of the first support bar 9 to prevent the lifting rod 1 from being unable to retract.

[0037] The implementation principle of a windproof, fully transparent lightning protection device in this embodiment is as follows: when the lifting rod 1 is raised, the second fixing ring 402 moves upward. After the second fixing ring 402 moves upward, the sliding ring 403 also moves upward. Thus, the two first connecting plates 6 at the top of the lifting rod 1 move upward together. The upward movement of the two first connecting plates 6 will also move the first fixing plate 7, the second fixing plate 8, and the second support bar 5 upward. Thus, the second windproof plate 202 will be pulled out from the first insertion slot of the first windproof plate 201 and move upward. The second adjusting plate 302 will be pulled out from the second insertion slot of the first adjusting plate 301 and move upward. The second support bar 5 will be pulled out from the third insertion slot of the first support bar 9 and move upward. This arrangement can avoid affecting the lifting function of the lifting rod 1.

[0038] After the lifting rod 1 completes its ascent, the second windproof plate 202, the second adjusting plate 302, and the second support bar 5 will unfold. When the wind blows towards the lifting rod 1 from different directions, the second adjusting plate 302 and the first adjusting plate 301 will be blown away by the wind and rotate in the direction the wind is blowing. This will cause the two second fixed plates 8 to move together, which will drive the two fixedly connected first connecting plates 6 to move. In this way, the two sliding rings 403 will rotate on the first fixed ring 401 and the second fixed ring 402.

[0039] After the two sliding rings 403 rotate, they will drive all the first connecting plates 6 to move. In this way, the two first fixed plates 7 will move the first windproof plate 201 and the second windproof plate 202, so that the first windproof plate 201 and the second windproof plate 202 will block the lifting rod 1 and the first adjusting plate 301 and the second adjusting plate 302.

[0040] When the first windproof plate 201 and the second windproof plate 202 are blown by the wind, the wind will be broken apart, and the wind will flow to both sides of the windproof plate, so that it will not directly impact the lifting rod 1, thereby minimizing the shaking of the lifting rod 1.

[0041] After the lifting rod 1 retracts downwards, the second windproof plate 202 will be inserted into the first insertion slot of the first windproof plate 201, the second adjusting plate 302 will be inserted into the insertion slot of the first adjusting plate 301, and the second support bar 5 will be inserted into the third insertion slot of the first support bar 9, thereby avoiding affecting the retraction of the lifting rod 1.

[0042] The above embodiments are merely preferred embodiments of this utility model and should not be construed as limiting the scope of protection of this utility model. Any non-substantial changes and substitutions made by those skilled in the art based on this utility model shall fall within the scope of protection claimed by this utility model.

Claims

1. A fully transparent lightning protection device with windproof function, comprising a lifting rod (1), wherein a lightning rod (10) is fixedly installed at the top of the lifting rod (1), characterized in that, The lifting rod (1) has a windproof component on one side that can reduce the wind force, and an adjustment component on the other side that allows the windproof component to face the wind. The lifting rod (1) is fitted with a moving component that allows the windproof component and the adjustment component to rotate around the lifting rod (1). The windproof component includes a first windproof plate (201) disposed on one side of the lifting rod (1) and having a first insertion slot on the top, and a second windproof plate (202) that is slidably inserted into the first insertion slot.

2. The windproof, fully transparent lightning protection device as described in claim 1, characterized in that, The first windproof plate (201) and the second windproof plate (202) are both arranged in a "V" shape.

3. A fully transparent lightning protection device with windproof function as described in claim 1, characterized in that, The moving component includes a first fixing ring (401) fixedly sleeved at the bottom of the lifting rod (1) and a second fixing ring (402) fixedly sleeved at the top of the lifting rod (1). Sliding grooves are provided on the cylindrical surfaces of the first fixing ring (401) and the second fixing ring (402), and sliding rings (403) are slidably sleeved on the two sliding grooves.

4. A fully transparent lightning protection device with windproof function as described in claim 3, characterized in that, Each sliding ring (403) has a first connecting plate (6) symmetrically fixedly installed on both sides. The openings of the first windproof plate (201) and the second windproof plate (202) are each fixedly installed with a first fixing plate (7) arranged in a "T" shape. The ends of the two first fixing plates (7) near the lifting rod (1) are fixedly installed with the adjacent first connecting plate (6).

5. A fully transparent lightning protection device with windproof function as described in claim 4, characterized in that, The adjustment assembly includes a first adjustment plate (301) disposed on one side of the lifting rod (1) and having a second insertion slot at the top, and a second adjustment plate (302) slidably inserted into the second insertion slot. The top of the first adjustment plate (301) and the bottom of the second adjustment plate (302) are both fixedly installed with second fixing plates (8). The ends of the two second fixing plates (8) near the lifting rod (1) are both fixedly installed with the adjacent first connecting plate (6).

6. A fully transparent lightning protection device with windproof function as described in claim 4, characterized in that, The lifting rod (1) has a first support bar (9) with a third insertion slot at the top on both sides. A second support bar (5) is slidably inserted into the two third insertion slots. The bottom ends of the two first support bars (9) are fixedly installed with the adjacent first connecting plate (6) at the bottom end of the lifting rod (1). The top ends of the two second support bars (5) are fixedly installed with the adjacent first connecting plate (6) at the top end of the lifting rod (1).