Anti-inclination lightning-protection engineering lightning-receiving belt supporting frame
By incorporating reinforcing ribs, fixing components, and connecting steel cables into the support base and support frame, the problem of traditional support frames tilting or falling off in strong winds has been solved, thus ensuring the stability of the lightning protection strip and the reliability of the lightning protection system.
Patent Information
- Application Number
- CN202520135688.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-21
- Publication Date
- 2026-01-27
- Estimated Expiration
- 2035-01-21
AI Technical Summary
Traditional support frames are prone to causing the lightning protection strip to tilt or fall off in strong winds, reducing the lightning protection effect of the lightning protection system.
The design incorporates a support base and support frame. The support base is equipped with a support sleeve and multiple sets of first reinforcing ribs, while the top of the support frame is equipped with fixing and clamping components. Combined with connecting steel ropes and hot-dip galvanized steel, the design enhances stability and corrosion resistance.
It effectively prevents the lightning protection strip from tilting or falling off in strong winds, ensuring the stability and durability of the lightning protection system, extending the life of the device, and reducing maintenance costs.
Smart Images

Figure CN223843511U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of support frame technology, and more specifically, it relates to a lightning protection engineering lightning rod support frame that prevents tilting. Background Technology
[0002] Lightning strips are typically made of metal or conductive materials and installed on building rooftops or other areas susceptible to lightning strikes. During thunderstorms, they intercept lightning and guide the lightning current to the grounding device, safely discharging it to the earth and protecting buildings and people from lightning damage. Lightning strips are usually installed on rooftops using support frames that maintain a certain distance between the strip and the building surface, ensuring the installation meets lightning protection design requirements. However, traditional support frames are often simple metal rods and fasteners. When exposed to strong winds, these simple frames cannot withstand lateral wind forces, and over time, the lightning strip may tilt or detach, failing to effectively intercept lightning and reducing the effectiveness of the lightning protection system. Utility Model Content
[0003] To address the aforementioned technical problems, this utility model provides an anti-tilting lightning protection engineering lightning strip support frame, which solves the technical problem in the prior art that traditional support frames are easily affected by strong winds, which can easily cause the lightning strip to tilt or fall off over time, resulting in a reduction in the effectiveness of the lightning protection system.
[0004] The purpose and effect of this utility model of an anti-tilting lightning protection engineering lightning rod support frame are achieved by the following specific technical means:
[0005] A lightning protection strip support frame for preventing tilting includes a support base and a support frame. A support sleeve is provided on the support base, and the support frame passes through the support sleeve. Multiple sets of first reinforcing ribs are provided between adjacent inner surfaces of the support sleeve. A fixing component and multiple sets of clamping components are provided on the top of the support frame. The lightning protection strip passes through the fixing component and the multiple sets of clamping components. Multiple sets of connecting sleeves are provided on the support base, and multiple sets of connecting steel ropes are provided around the support frame. A connecting bolt is provided at one end of each connecting steel rope, and the connecting bolt passes through the connecting sleeve. Multiple sets of mounting holes are provided on the support base.
[0006] According to a preferred embodiment, the fixing component includes a lower fixing plate and an upper fixing plate. The top of the support frame is provided with two sets of connecting rods. Multiple sets of connecting holes are provided on both the lower fixing plate and the upper fixing plate, and the connecting rods pass through the connecting holes. Multiple sets of limiting grooves are also provided on the support frame. Both ends of the lower fixing plate and the upper fixing plate are locked in the limiting grooves. The flash-receiving band is located between the lower fixing plate and the upper fixing plate.
[0007] According to a preferred embodiment, the upper fixing plate and the lower fixing plate have corresponding slots, and a first steel plate is fixed in the slot. The first steel plate has a first annular groove. The lightning-absorbing strip contacts the two sets of the first steel plates and is fixed in the two sets of the first annular grooves. Multiple sets of fixing members are arranged above the upper fixing plate. The fixing members are sleeved on the connecting rod. A connecting nut is also sleeved on one end of the connecting rod. The fixing members are located between the upper fixing plate and the connecting nut. One end of the fixing member abuts against the upper fixing plate, and the other end contacts the connecting nut.
[0008] According to a preferred embodiment, the clamping assembly includes multiple sets of locking plates, and multiple sets of locking sleeves are provided on both sides of the support frame. One end of each locking plate passes through the locking sleeve. A limit hole is formed on the locking plate, and a limit groove is formed on the locking sleeve corresponding to the limit hole. A limit bolt passes through the limit hole and the limit groove. The locking plate and the locking sleeve are slidably connected. A spring is provided inside the locking sleeve, and the spring is located between the locking sleeve and the locking plate.
[0009] According to a preferred embodiment, a second steel plate is provided on one side of each of the two sets of locking plates. A second annular groove is provided on the second steel plate. The lightning protection band is positioned between the two sets of second steel plates and is positioned within the second annular groove. Locking plates are provided on both sides of the second steel plate, and locking bolts are inserted into the locking plates on the two sets of opposing second steel plates.
[0010] According to a preferred embodiment, the support sleeve has multiple sets of positioning through holes arranged side by side, and the support frame has multiple sets of positioning holes corresponding to the positioning through holes. A positioning bolt passes through the positioning through holes and is engaged in one of the positioning holes. Positioning sliders are arranged opposite each other inside the support sleeve, and the support frame has a positioning groove corresponding to the positioning sliders. The positioning sliders are engaged in the positioning grooves.
[0011] According to a preferred embodiment, the support sleeve is provided with multiple sets of second reinforcing ribs on its periphery, and the multiple sets of second reinforcing ribs are distributed opposite to each other, wherein two sets of opposite second reinforcing ribs are higher than the other two sets of opposite second reinforcing ribs.
[0012] According to a preferred embodiment, a buffer pad is provided below the support base, and the buffer pad is connected to the bottom of the support base.
[0013] According to a preferred embodiment, both the support base and the support frame are made of hot-dip galvanized steel.
[0014] Compared with the prior art, the present invention has the following beneficial effects:
[0015] The support sleeve on the support base is equipped with multiple sets of primary reinforcing ribs, significantly improving its resistance to deformation and preventing the support frame installed within it from easily swaying or tilting during strong winds. Simultaneously, the fixing components at the top of the support frame work in concert with multiple clamping components. The lower and upper fixing plates in the fixing components are positioned by connecting rods and further secured by limiting grooves, clamping the lightning protection strip and preventing it from shifting vertically. The multiple locking plates of the clamping components, under the action of spring force, maintain a moderate clamping force on the lightning protection strip. Combined with the second annular groove on the second steel plate, this achieves comprehensive and multi-angle stable constraint on the lightning protection strip, preventing the risk of it falling off due to shaking. Furthermore, a connecting steel rope is added between the support base and the support frame. One end of the steel rope is threaded through the connecting sleeve, adding several safety rope structures to the entire device, further dispersing external impacts. From all dimensions, this ensures that the support frame system maintains a stable structural form even under severe weather conditions, guaranteeing the continued effectiveness of lightning protection.
[0016] The support base is wide at the bottom and secured to the building via multiple sets of mounting holes, enhancing the stability of the connection with the mounting surface and effectively resisting displacement caused by external forces such as wind and earthquakes. Both the support base and the support frame are made of hot-dip galvanized steel, effectively resisting the corrosion of rainwater, humid air, and potentially corrosive gases, extending the service life of the entire device and reducing the cost and manpower consumption caused by frequent replacements. The buffer pad under the support base not only cushions the impact force during installation, protecting the building surface, but also reduces potential damage to the lightning protection support frame caused by vibration during long-term use, further ensuring the reliability and durability of the entire lightning protection device, providing a long-term, stable, and convenient solution for building lightning protection. Attached Figure Description
[0017] Figure 1 This is a schematic diagram of the assembled structure of this utility model;
[0018] Figure 2 This is a schematic diagram of the disassembled structure of this utility model;
[0019] Figure 3 yes Figure 2 A magnified view of a portion of region a;
[0020] Figure 4 yes Figure 2 A magnified view of a portion of region b.
[0021] Figure 5 yes Figure 2 A magnified view of a portion of region c.
[0022] In the diagram, the correspondence between component names and their corresponding reference numerals is as follows:
[0023] 11. Support base; 12. Support sleeve; 13. First reinforcing rib; 14. Connecting sleeve; 15. Mounting hole; 16. Positioning through hole; 17. Positioning slider; 18. Second reinforcing rib; 21. Support frame; 22. Connecting steel rope; 23. Connecting bolt; 24. Limiting groove; 25. Positioning hole; 26. Positioning bolt; 27. Positioning slide groove; 31. Flash stop belt; 32. Buffer pad; 41. Lower fixing plate; 42. Upper fixing plate; 43. Connecting rod; 44. First steel plate; 45. First annular groove; 46. Fixing component; 51. Locking plate; 52. Locking sleeve; 53. Limiting hole; 54. Limiting slide groove; 55. Limiting bolt; 56. Second steel plate; 57. Second annular groove; 58. Locking plate. Detailed Implementation
[0024] The embodiments of this utility model will be described in further detail below with reference to the accompanying drawings and examples. The following examples are used to illustrate the technical solution of this utility model, but should not be used to limit the scope of protection of this utility model. Example
[0025] like Figures 1 to 5 As shown, this utility model provides a lightning protection engineering lightning conductor support frame that prevents tilting. It includes a support base 11 and a support frame 21. The main support base 11 serves as the foundation of the entire device, with a support sleeve 12 on it providing stability. Multiple sets of first reinforcing ribs 13 are arranged between adjacent inner surfaces of the support sleeve 12, increasing its strength and preventing the support frame 21 from swaying or tilting even under strong winds. A fixing component and multiple clamping components are arranged at the top of the support frame 21 to work together to ensure the lightning conductor 31 is stably positioned. The lightning conductor 31 passes between the two components. Multiple sets of connecting sleeves 14 are evenly distributed on the support base 11. Correspondingly, the same number of connecting steel ropes 22 are arranged around the support frame 21. Connecting bolts 23 at one end of each connecting steel rope 22 pass through the connecting sleeve 14, adding multiple layers of stability to the entire device and effectively dispersing external forces. In addition, the multiple sets of mounting holes 15 on the support base 11 facilitate the use of bolts and other connectors to securely install it onto the building, laying the foundation for the reliable operation of the lightning protection system.
[0026] like Figure 2 , Figure 3As shown, the fixing assembly includes a lower fixing plate 41 and an upper fixing plate 42. Two sets of connecting rods 43 are provided on the top of the support frame 21, providing important support for the connection of subsequent components. Multiple sets of connecting holes are evenly provided on the lower fixing plate 41 and the upper fixing plate 42, allowing the connecting rods 43 to pass through, thus achieving the connection and positioning of the lower fixing plate 41 and the upper fixing plate 42 and establishing the basic framework for the overall structure. Simultaneously, multiple sets of limiting grooves 24 are also provided on the support frame 21. The ends of the lower fixing plate 41 and the upper fixing plate 42 are engaged within the limiting grooves 24, restricting the displacement of the lower fixing plate 41 and the upper fixing plate 42. This ensures that the lightning-absorbing strip 31 between them is firmly fixed in a predetermined position, effectively preventing it from moving up and down and ensuring the longitudinal stability of the lightning-absorbing strip 31.
[0027] The upper fixing plate 42 and the lower fixing plate 41 have corresponding slots, and the first steel plate 44 is fixed in the slots. The first steel plate 44 has a first annular groove 45, which provides a space for the lightning-catching band 31. The lightning-catching band 31 is attached to the two sets of first steel plates 44 and is fixed in the two sets of first annular grooves 45, locking the lightning-catching band 31 in the horizontal direction.
[0028] Multiple sets of fixing members 46 are also provided above the upper fixing plate 42. The fixing members 46 are sleeved on the connecting rod 43. One end of the connecting rod 43 is also sleeved with a connecting nut. The fixing members 46 are located between the upper fixing plate 42 and the connecting nut. One end is firmly against the upper fixing plate 42, and the other end is in contact with the connecting nut. Through this synergistic effect, the connection stability between the upper fixing plate 42 and the lower fixing plate 41 is further strengthened, ensuring that the lightning protection strip 31 is stable and does not loosen in all aspects, thus laying a solid foundation for the reliability of the lightning protection project.
[0029] like Figure 2 , Figure 4 As shown, the clamping assembly includes multiple sets of locking plates 51, and multiple sets of locking sleeves 52 are provided on both sides of the support frame 21. One end of the locking plate 51 passes through the corresponding locking sleeve 52. A limit hole 53 is provided on the locking plate 51, and a limit groove 54 is provided at the corresponding position on the locking sleeve 52. A limit bolt 55 passes through the limit hole 53 and the limit groove 54, so that the locking plate 51 and the locking sleeve 52 can be slidably connected, thereby allowing the clamping force to be adjusted according to actual needs. At the same time, a spring is installed inside the locking sleeve 52, and the spring is located between the locking sleeve 52 and the locking plate 51, so that the multiple sets of locking plates 51 can maintain a moderate and stable clamping force on the flashing belt 31 at all times, effectively preventing the flashing belt 31 from loosening.
[0030] Two sets of corresponding locking plates 51 are provided with a second steel plate 56 on the inner side. The second steel plate 56 has a second annular groove 57, which provides a limiting space for the lightning-absorbing band 31. The lightning-absorbing band 31 is locked between the two sets of second steel plates 56 and embedded in the second annular groove 57, which further locks the lightning-absorbing band 31 from the side and prevents it from shaking. In addition, locking plates 58 are symmetrically arranged on both sides of the second steel plate 56. The locking bolts pass through the locking plates 58 on the two sets of opposing second steel plates 56, which enhances the integrity and stability of the second steel plates 56 and ensures that their clamping effect on the lightning-absorbing band 31 is continuous and reliable.
[0031] like Figure 2 , Figure 5 As shown, the support sleeve 12 serves as a key connecting and supporting component of the lightning protection strip support frame in the entire lightning protection project. Multiple sets of positioning through holes 16 are neatly arranged side by side on the support sleeve 12. Multiple sets of positioning holes 25 are opened at corresponding positions on the support frame 21. Positioning bolts 26 pass through the positioning through holes 16 and are engaged in one of the positioning holes 25. This ensures that the support frame 21 can be accurately positioned when inserted into the support sleeve 12, avoiding deviation. Through the interaction of the positioning through holes 16, positioning holes 25, and positioning bolts 26, the height of the support frame 21 can be adjusted according to usage requirements. Simultaneously, positioning sliders 17 are also oppositely arranged inside the support sleeve 12, and the support frame 21 is correspondingly provided with positioning grooves 27. The positioning sliders 17 can be engaged in the positioning grooves 27, further assisting in the positioning of the support frame 21 and enhancing its stability within the support sleeve 12. Even when subjected to external impact, it is not easily shaken or displaced.
[0032] The support sleeve 12 is provided with multiple sets of second reinforcing ribs 18 around its perimeter, arranged in an opposing manner. Two sets of opposing second reinforcing ribs 18 are higher than the other two sets of opposing second reinforcing ribs 18, which comprehensively improves the deformation resistance of the support sleeve 12.
[0033] The buffer pad 32 below the support base 11 is connected to the bottom of the support base 11. During installation, it can buffer the impact force generated when the device comes into contact with the building, protecting the building surface from damage. In the long-term use, it can also reduce the potential hazards caused by vibration and ensure the durability of the lightning protection device.
[0034] The support base 11 and support frame 21 are made of hot-dip galvanized steel, which has good corrosion resistance and can resist the erosion of rainwater, humid air and corrosive gases, thus extending the life of the device and reducing maintenance costs.
[0035] The specific usage and function of this embodiment are as follows:
[0036] In use, the lightning-catching belt 31 is fixed between the fixing component and the clamping component. The lower fixing plate 41 and the upper fixing plate 42 of the fixing component clamp the lightning-catching belt 31 under the synergistic action of the connecting rod 43 and the limiting groove 24, preventing it from moving up and down. The first steel plate 44 and the first annular groove 45 in the slot horizontally clamp the lightning-catching belt 31, preventing its horizontal displacement. The fixing member 46 above the upper fixing plate 42 further tightens the connection, ensuring the stability of the lightning-catching belt 31 in all directions. The multiple locking plates 51 of the clamping component rely on the spring force to continuously provide appropriate clamping force to the lightning-catching belt 31. Together with the second steel plate 56 and the second annular groove 57 on it, the lightning-catching belt 31 is locked from the side, so that it does not move under the vibration of the daily environment. At the same time, the combination of the connecting steel rope 22, connecting bolt 23 and connecting sleeve 14 between the support base 11 and the support frame 21 is like a safety net, dispersing possible accidental external force impacts and adding another layer of insurance for the stability of the entire device.
[0037] The foregoing has shown and described the basic principles, main features, and advantages of this utility model. It is obvious to those skilled in the art that this utility model is not limited to the details of the above exemplary embodiments.
Claims
1. A lightning protection strip support frame for anti-tilting engineering, comprising a support base (11) and a support frame (21), characterized in that: The support base (11) is provided with a support sleeve (12), the support frame (21) is inserted into the support sleeve (12), and multiple sets of first reinforcing ribs (13) are provided between adjacent inner sides of the support sleeve (12); the top of the support frame (21) is provided with a fixing component and multiple sets of clamping components, and the lightning protection belt (31) is inserted into the fixing component and multiple sets of clamping components. The support base (11) is provided with multiple sets of connecting sleeves (14), and multiple sets of connecting steel ropes (22) are provided around the support frame (21). One end of the connecting steel rope (22) is provided with a connecting bolt (23), and the connecting bolt (23) is inserted into the connecting sleeve (14). The support base (11) is provided with multiple sets of mounting holes (15).
2. The anti-tilting lightning protection engineering lightning rod support frame according to claim 1, characterized in that: The fixing assembly includes a lower fixing plate (41) and an upper fixing plate (42). The top of the support frame (21) is provided with two sets of connecting rods (43). Both the lower fixing plate (41) and the upper fixing plate (42) have multiple sets of connecting holes, and the connecting rods (43) are in the connecting holes. The support frame (21) also has multiple sets of limiting grooves (24). Both ends of the lower fixing plate (41) and the upper fixing plate (42) are locked in the limiting grooves (24). The flashing band (31) is located between the lower fixing plate (41) and the upper fixing plate (42).
3. The anti-tilting lightning protection engineering lightning rod support frame according to claim 2, characterized in that: The upper fixing plate (42) and the lower fixing plate (41) have corresponding slots. A first steel plate (44) is inserted into the slot. A first annular groove (45) is inserted into the first steel plate (44). The lightning strip (31) contacts the two sets of the first steel plates (44) and is inserted into the two sets of the first annular grooves (45). Multiple sets of fixing members (46) are provided above the upper fixing plate (42). The fixing members (46) are sleeved on the connecting rod (43). A connecting nut is also sleeved on one end of the connecting rod (43). The fixing members (46) are located between the upper fixing plate (42) and the connecting nut. One end of the fixing members (46) abuts against the upper fixing plate (42), and the other end contacts the connecting nut.
4. The anti-tilting lightning protection engineering lightning rod support frame according to claim 1, characterized in that: The clamping assembly includes multiple sets of locking plates (51), and multiple sets of locking sleeves (52) are provided on both sides of the support frame (21). One end of the locking plate (51) passes through the locking sleeve (52). The locking plate (51) has a limit hole (53). The locking sleeve (52) has a limit groove (54) corresponding to the limit hole (53). The limit bolt (55) passes through the limit hole (53) and the limit groove (54). The locking plate (51) and the locking sleeve (52) are slidably connected. A spring is provided inside the locking sleeve (52). The spring is located between the locking sleeve (52) and the locking plate (51).
5. A lightning protection strip support frame for anti-tilting engineering according to claim 4, characterized in that: A second steel plate (56) is provided on one side of each of the two sets of locking plates (51). A second annular groove (57) is provided on the second steel plate (56). The lightning strip (31) is positioned between the two sets of second steel plates (56) and is positioned in the second annular groove (57). Locking plates (58) are provided on both sides of the second steel plate (56). Locking bolts are inserted into the locking plates (58) on the two sets of opposing second steel plates (56).
6. A lightning protection strip support frame for anti-tilting engineering according to claim 1, characterized in that: The support sleeve (12) has multiple sets of positioning through holes (16) arranged side by side. The support frame (21) has multiple sets of positioning holes (25) corresponding to the positioning through holes (16). The positioning bolt (26) passes through the positioning through holes (16) and is locked in one of the positioning holes (25). The support sleeve (12) has opposing positioning sliders (17). The support frame (21) has a positioning groove (27) corresponding to the positioning slider (17). The positioning slider (17) is locked in the positioning groove (27).
7. A lightning protection strip support frame for anti-tilting engineering according to claim 6, characterized in that: The support sleeve (12) is provided with multiple sets of second reinforcing ribs (18) around its periphery. The multiple sets of second reinforcing ribs (18) are distributed opposite to each other, and two sets of opposite second reinforcing ribs (18) are higher than the other two sets of opposite second reinforcing ribs (18).
8. A lightning protection strip support frame for anti-tilting engineering according to claim 7, characterized in that: A buffer pad (32) is provided below the support base (11), and the buffer pad (32) is connected to the bottom of the support base (11).
9. A lightning protection strip support frame for anti-tilting engineering according to claim 8, characterized in that: Both the support base (11) and the support frame (21) are made of hot-dip galvanized steel.