Cable-stayed line warning light

CN224718733UActive Publication Date: 2026-09-04SHENZHEN HUAYI INTELLIGENT EQUIPMENT CO LTD
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Patent Information

Application Number
CN202521806982.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-08-25
Publication Date
2026-09-04
Estimated Expiration
2035-08-25

AI Technical Summary

Technical Problem

但是现有的警示灯的能耗较高,长期使用会产生较大的电力成本,部分产品需要外接电源才能正常工作,这在斜拉线所处的户外复杂环境下,外接电源的铺设往往面临诸多困难

Benefits of technology

[0015] Based on the above embodiments, by setting up luminous elements, the guy wires can be effectively warned of, making it easier for pedestrians and vehicles to notice them at night or in low-light environments, reducing the occurrence of tripping, collisions, and other safety accidents. By electrically connecting the solar panel to the luminous elements, solar energy can be used to power the luminous elements, eliminating the need for an external power source, reducing electricity costs, and avoiding the difficulties of laying external power supplies in complex outdoor environments. Through the cooperation of the elastic element and the two clamping shells in the mounting assembly, the elastic element can use its own elastic force to keep the free ends of the two clamping shells close to each other, thus firmly clamping the guy wires. When installation or disassembly is required, simply moving the clamping shells overcomes the elastic force of the elastic element, separating the free ends without additional tools, making operation convenient. At the same time, this structure can adapt to guy wires of different diameters, improving installation adaptability and fixing reliability in complex outdoor environments.

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Abstract

The application discloses a cable warning lamp, which comprises a light-emitting part, a solar panel and a mounting assembly. The solar panel is electrically connected with the light-emitting part. The mounting assembly comprises an elastic part and two clamping housings. The light-emitting part is fixedly connected with one of the clamping housings. The elastic part is connected between the two clamping housings. The free ends of the two clamping housings are free ends. The elastic part makes the free ends of the two clamping housings close to each other by the elastic force of the elastic part to keep a clamping state. The two clamping housings are used for jointly clamping a cable in the clamping state. The solar panel is connected to the outer side of one of the clamping housings. The outer side is the surface of the clamping housing which is away from the region between the two clamping housings. The technical scheme of the application can utilize solar energy to supply power, does not need an external power supply, does not consume traditional energy, reduces carbon emission, and can adjust the angle of the solar panel according to the position of the sun in different time periods, so that the solar panel can better receive sunlight and the solar energy conversion efficiency is improved.
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Description

Technical Field

[0001] This application relates to the field of warning light technology, and in particular to a drawbar warning light. Background Technology

[0002] In urban environments and various infrastructure structures, light poles, utility poles, and towers play a vital role. These structures are generally characterized by their small footprint and large height. To ensure their stability and effectively prevent collapse, guy wires are typically installed for support. However, due to their slender nature, guy wires pose significant safety hazards. Especially at night or in areas with low light conditions, guy wires are extremely difficult to spot. In past cases, pedestrians have frequently tripped and been injured because they failed to notice guy wires in time. Furthermore, traffic accidents caused by vehicles colliding with guy wires are also common, threatening people's lives and property.

[0003] In related technologies, some warning light products have been developed to address such safety hazards. However, existing warning lights consume a lot of energy, and long-term use will result in significant electricity costs. Some products require an external power supply to function properly, which often presents numerous difficulties in laying external power supplies in the complex outdoor environments where guy wires are located. Utility Model Content

[0004] This application provides a guyed warning light that can be powered by solar energy, eliminating the need for an external power source and reducing carbon emissions by not consuming traditional energy. It can also adjust the angle of the solar panel according to the sun's position at different times, allowing the solar panel to better receive sunlight and improve solar energy conversion efficiency.

[0005] This application provides a guy wire warning light, which includes: Light-emitting components; A solar panel, electrically connected to the light-emitting element, for supplying power to the light-emitting element; and The mounting assembly includes an elastic element and two clamping housings. The light-emitting element is fixedly connected to one of the clamping housings. The elastic element is connected between the two clamping housings. The ends of the two clamping housings away from the elastic element are free ends. The elastic element uses its own elastic force to bring the free ends of the two clamping housings closer to each other to maintain the clamping state. In the clamping state, the two clamping housings are used to jointly clamp the guy wire. The solar panel is connected to the outside of one of the clamping housings, the outside being the surface of the clamping housing facing away from the area between the two clamping housings.

[0006] In some embodiments, each clamping housing includes a plurality of clamping buckles, which are spaced apart along the length of the clamping housing and located on the side of the clamping housing facing the other clamping housing. The clamping buckles on the two clamping housings are arranged in a one-to-one correspondence. One side of the clamping buckle is recessed to form a card interface, and the card interfaces of the corresponding two clamping buckles cooperate with each other to jointly clamp the diagonal cable.

[0007] In some embodiments, the clamping clip forms ribs on the inner wall of the card interface.

[0008] In some embodiments, the number of solar panels is at least two, each of the clamping housings is connected to one of the solar panels, and the two solar panels are respectively located on the outside of the corresponding clamping housing.

[0009] In some embodiments, the elastic element is a torsion spring, and the two ends of the torsion spring are fixedly connected to the two clamping housings respectively. The torsion spring drives the two clamping housings to maintain the clamping state through its own torsional elastic force.

[0010] In some embodiments, each of the clamping housings includes a bottom cover and a top cover, the bottom cover and the top cover being fitted together, and the two ends of the torsion spring being clamped and fixed by the bottom cover and the top cover of the two clamping housings respectively; the solar panel is connected to the surface of the top cover opposite to the bottom cover.

[0011] In some embodiments, a battery and a control board are also included, both of which are electrically connected to the solar panel and the light-emitting element. The battery is used to store electrical energy, and the control board is used to control the operating state of the light-emitting element. The battery is housed between the bottom cover and the top cover of one of the clamping housings, and the control board is housed between the bottom cover and the top cover of the other clamping housing.

[0012] In some embodiments, the faceplate has a recessed groove on the side facing away from the bottom cover, and the solar panel is embedded in the groove.

[0013] In some embodiments, a transparent cover plate is also included, which covers the opening of the groove and is connected to the face cover to encapsulate the solar panel within the groove, wherein the transparent cover plate and the face cover are in a sealed fit.

[0014] In some embodiments, the bottom cover has a connecting post on the side opposite to the top cover, and the connecting post has a connecting through hole; The guy wire warning light also includes a strapping component, which passes through the connecting hole and is used to securely connect with the guy wire.

[0015] Based on the above embodiments, by setting up luminous elements, the guy wires can be effectively warned of, making it easier for pedestrians and vehicles to notice them at night or in low-light environments, reducing the occurrence of tripping, collisions, and other safety accidents. By electrically connecting the solar panel to the luminous elements, solar energy can be used to power the luminous elements, eliminating the need for an external power source, reducing electricity costs, and avoiding the difficulties of laying external power supplies in complex outdoor environments. Through the cooperation of the elastic element and the two clamping shells in the mounting assembly, the elastic element can use its own elastic force to keep the free ends of the two clamping shells close to each other, thus firmly clamping the guy wires. When installation or disassembly is required, simply moving the clamping shells overcomes the elastic force of the elastic element, separating the free ends without additional tools, making operation convenient. At the same time, this structure can adapt to guy wires of different diameters, improving installation adaptability and fixing reliability in complex outdoor environments. Attached Figure Description

[0016] To more clearly illustrate the technical solutions in the embodiments of this application or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this application. For those skilled in the art, other drawings can be obtained based on the structures shown in these drawings without creative effort.

[0017] Figure 1 This is a structural schematic diagram of an embodiment of the inclined wire warning light of this application; Figure 2 This is a structural schematic diagram of the angled-stayed warning light from another perspective; Figure 3 This is a schematic diagram of the structure of the angled-stayed warning light of this application; Figure 4 This is a structural schematic diagram of the mounting assembly for the guy wire warning light of this application.

[0018] Explanation of icon numbers: 100. Diagonal guy wire warning light; 10. Light-emitting component; 20. Solar panel; 30. Mounting assembly; 31. Elastic component; 32. Clamping housing; 32A. Free end; 321. Bottom cover; 3211. Clamping buckle; 32111. Clamping opening; 32112. Rib; 3212. Connecting post; 32121. Connecting through hole; 322. Face cover; 3221. Groove; 40. Battery; 50. Control board; 60. Transparent cover; 70. Bundling component; 80. Waterproof plug; 200. Diagonal guy wire.

[0019] The realization of the purpose, functional features and advantages of this application will be further explained in conjunction with the embodiments and with reference to the accompanying drawings. Detailed Implementation

[0020] To make the objectives, technical solutions, and advantages of this application clearer, the embodiments of this application will be described in further detail below with reference to the accompanying drawings.

[0021] Where the following description relates to the accompanying drawings, unless otherwise indicated, the same numbers in different drawings denote the same or similar elements. The embodiments described in the following exemplary embodiments do not represent all embodiments consistent with this application. Rather, they are merely examples of apparatuses and methods consistent with some aspects of this application as detailed in the appended claims.

[0022] In the description of this application, it should be understood that the terms "first," "second," etc., are used for descriptive purposes only and should not be construed as indicating or implying relative importance. Those skilled in the art can understand the specific meaning of the above terms in this application based on the specific circumstances. Furthermore, in the description of this application, unless otherwise stated, "multiple" refers to two or more. "And / or" describes the relationship between related objects, indicating that three relationships can exist. For example, A and / or B can represent: A existing alone, A and B existing simultaneously, or B existing alone. The character " / " generally indicates that the preceding and following related objects are in an "or" relationship.

[0023] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this application belongs. The terminology used herein is for the purpose of describing particular embodiments only and is not intended to be limiting of this application. The term "and / or" as used herein includes any and all combinations of one or more of the associated listed items.

[0024] In urban environments and various infrastructure settings, structures such as light poles, utility poles, and towers play a vital role. These structures are generally characterized by their small footprint and large height. To ensure their stability and effectively prevent collapse, they are typically supported by guy wires.

[0025] In the power industry, the installation of guy wires on transmission line towers and reinforcement guy wires on utility poles can effectively warn pedestrians and vehicles, preventing serious accidents such as pole collapse and power line interruption caused by accidental collisions with guy wires, thus ensuring the safe and stable transmission of electricity.

[0026] In the telecommunications industry, guy wires are used for antenna support in communication base stations and on communication poles to prevent collisions caused by the guy wires being difficult to detect at night or in bad weather, thus protecting the safety of communication facilities and ensuring the normal operation of the communication network.

[0027] In the construction industry, installing this warning light on the guy wires of tower cranes and the guy wires used to stabilize scaffolding during the construction of high-rise buildings can alert construction workers and vehicles on site, reduce safety risks at the construction site, and ensure the smooth progress of construction.

[0028] In road traffic facilities, roadside traffic signs, cable stays, and bridge stay cables provide clear warnings to passing vehicles, especially on curves, slopes, and other sections with poor visibility, effectively preventing traffic accidents and ensuring road traffic safety.

[0029] However, due to their slender shape, guy wires pose significant safety hazards. Especially at night or in areas with low light conditions, they are extremely difficult to spot. In past incidents, pedestrians have frequently tripped and been injured because they failed to notice guy wires in time. At the same time, traffic accidents caused by vehicles hitting guy wires are also common, threatening people's lives and property.

[0030] In related technologies, some warning light products have been developed to address such safety hazards. However, existing warning lights consume a lot of energy, and long-term use will result in significant electricity costs. Some products require an external power supply to function properly, which often presents numerous difficulties in laying external power supplies in the complex outdoor environments where guy wires are located.

[0031] To resolve the above issues, please refer to [link / reference]. Figures 1 to 4 This application proposes a drawbar warning light 100. In the embodiments of this application, the drawbar warning light 100 includes a light-emitting element 10, a solar panel 20, and a mounting assembly 30.

[0032] The solar panel 20 is electrically connected to the light-emitting element 10 to power the light-emitting element 10. The solar panel 20 is made of monocrystalline silicon, which, due to its high conversion efficiency, can generate more electricity than a regular solar panel 20 when receiving the same amount of sunlight. At the same time, the monocrystalline silicon solar panel 20 has stable performance and can adapt to the complex and variable outdoor environment. By electrically connecting it to the light-emitting element 10, it provides a stable power supply, which solves the problem of high energy consumption of traditional warning lights and avoids the inconvenience of external power supply.

[0033] The light-emitting element 10 may include a transparent sleeve and several LED beads, with the LED beads housed within the transparent sleeve. The transparent sleeve can be made of PVC (Polyvinyl Chloride), a material with excellent light transmittance that minimizes light loss during propagation, allowing the light emitted by the LED beads to scatter more brightly outwards, enhancing the warning effect. Simultaneously, the good flexibility of PVC allows the transparent sleeve to be flexibly bent according to actual installation needs, adapting to different installation positions and improving the installation convenience and applicability of the light-emitting element 10. The LED beads are selected from LED (Light Emitting Diode) beads, which have advantages such as high luminous efficiency, low energy consumption, and long lifespan. High luminous efficiency means that LED beads can emit brighter light with the same power consumption, further enhancing the warning effect; low energy consumption effectively reduces the power consumption of the battery 40, extending its usage time; and long lifespan reduces the frequency of LED bead replacement, lowering maintenance costs, thereby ensuring the long-term stable operation of the entire light-emitting element 10 and providing strong support for the normal operation of the diagonal warning light 100.

[0034] Reference Figure 4 The mounting assembly 30 includes an elastic element 31 and two clamping housings 32. Both clamping housings 32 are rectangular boxes, and their material can be ABS (Acrylonitrile Butadiene Styrene). This material has the characteristics of high strength, good toughness, and impact resistance, and can withstand collisions and compression in outdoor environments, ensuring the structural stability of the clamping housings 32. At the same time, ABS material has good weather resistance and is not easily affected by factors such as temperature changes and ultraviolet radiation, making it suitable for long-term outdoor use. The light-emitting element 10 is fixedly connected to one of the clamping housings 32. It should be noted that the light-emitting element 10 can be directly or indirectly connected to the clamping housing 32.

[0035] An elastic element 31 is connected between two clamping housings 32. The ends of the two clamping housings 32 away from the elastic element 31 are free ends 32A. The elastic element 31 uses its own elastic force to bring the free ends 32A of the two clamping housings 32 closer together to maintain the clamping state. In the clamping state, the two clamping housings 32 are used to jointly clamp the guy wire. The solar panel 20 is connected to the outside of one of the clamping housings 32, and the outside is the surface of the clamping housing 32 facing away from the area between the two clamping housings 32.

[0036] Based on the above embodiments, by setting the light-emitting element 10, the guy wire can be effectively warned, making it easier for pedestrians and vehicles to notice the guy wire at night or in low-light environments, reducing the occurrence of safety accidents such as tripping and collisions. Through the electrical connection between the solar panel 20 and the light-emitting element 10, solar energy can be used to power the light-emitting element 10, eliminating the need for an external power source, reducing electricity costs, and avoiding the difficulties of laying external power sources in complex outdoor environments. Through the cooperation of the elastic element 31 and the two clamping housings 32 in the mounting assembly 30, the elastic element 31 can use its own elastic force to keep the free ends 32A of the two clamping housings 32 close to each other to securely clamp the guy wire. When installation or disassembly is required, simply moving the clamping housings 32 overcomes the elastic force of the elastic element 31 to separate the free ends 32A, requiring no additional tools and making operation convenient. At the same time, this structure can adapt to guy wires of different diameters, improving installation adaptability and fixing reliability in complex outdoor environments.

[0037] Reference Figure 1 , Figure 2 as well as Figure 4 In some embodiments, each clamping housing 32 includes a plurality of clamping buckles 3211. These clamping buckles 3211 are spaced apart along the length of the clamping housing 32 and located on the side of the clamping housing 32 facing the other clamping housing 32. The clamping buckles 3211 on the two clamping housings 32 are correspondingly arranged. A locking interface is recessed on one side of each clamping buckle 3211. The locking interfaces of corresponding pairs of clamping buckles 3211 cooperate to jointly clamp the guy wire. This structure of multiple spaced-apart clamping buckles 3211 and their corresponding locking interfaces further enhances the clamping performance: the uniformly distributed clamping buckles 3211 along the length disperse the clamping force on the guy wire across multiple contact points, preventing localized force concentration that could lead to wear on the outer sheath or damage to the internal structure of the guy wire, effectively protecting the original strength of the guy wire. The one-to-one card interfaces interlock to form multiple sets of stable clamping points, which greatly improves the tightness of the connection between the warning light and the guy wire. Even when affected by external forces such as strong winds or vibrations from passing vehicles, it can be firmly fixed to the guy wire to prevent loosening or falling off, ensuring that the warning function remains effective.

[0038] Furthermore, the clamping buckle 3211 forms ribs 32112 on the inner wall of the clamping interface. These ribs 32112 are distributed at intervals or extend in a continuous strip along the inner wall of the clamping interface. When the clamping interfaces of the two clamping housings 32 are engaged to clamp the diagonal cable, the ribs 32112 can form a tight engagement with the surface of the diagonal cable. On the one hand, the ribs 32112 can increase the friction between the clamping interface and the diagonal cable, effectively preventing the warning light from sliding or rotating on the diagonal cable. Especially when there is moisture or dust on the surface of the diagonal cable that can easily cause slippage, it can still maintain a stable clamping state. On the other hand, through point contact or line contact with the surface of the diagonal cable, the ribs 32112 can enhance the clamping tightness without damaging the diagonal cable, making the clamping force more concentrated and more reasonably distributed. Even when encountering external interference such as strong winds and vibrations outdoors, it can further improve the reliability of the connection between the warning light and the diagonal cable, ensuring the continuous and stable operation of the warning function.

[0039] Reference Figure 3 Optionally, the number of solar panels 20 is at least two, with one solar panel 20 connected to each clamping housing 32, and the two solar panels 20 are located on the outer side of their respective clamping housings 32. This design allows the solar panels 20 to face different directions, thereby capturing sunlight at different times of day more fully. Whether it is morning, noon, or evening, they can receive solar energy to the maximum extent and improve energy collection efficiency. Especially in outdoor environments with varying light angles, the arrangement of multiple solar panels 20 can reduce the problem of insufficient light reception caused by a single orientation, ensuring that even under less than ideal lighting conditions, sufficient power support can be provided to the light-emitting element 10, extending its battery life. At the same time, the two solar panels 20 are connected to their respective clamping housings 32, resulting in a more balanced distribution. This does not increase the load-bearing burden on a single clamping housing 32, and it coordinates with the structure of the clamping housing 32, making the overall layout more reasonable and further enhancing the stability and reliability of the warning light for long-term outdoor use.

[0040] Reference Figure 3 and Figure 4In some embodiments, the elastic element 31 is a torsion spring, with its two ends fixedly connected to two clamping housings 32 respectively. The torsion spring drives the two clamping housings 32 to maintain the clamping state through its own torsional elastic force. Due to its unique torsional deformation characteristics, the torsion spring can provide continuous and stable elastic force. When the free ends 32A of the two clamping housings 32 are pried open, the torsion spring undergoes torsional deformation to store elastic potential energy. After being released, it releases the potential energy and converts it into torsional elastic force, quickly driving the free ends 32A to reset, ensuring the reliable maintenance of the clamping state of the two clamping housings 32. Compared to other elastic structures, the torsion spring's elastic force output is more balanced, making the force on the two clamping housings 32 more symmetrical, avoiding clamping offset caused by excessive force on one side, keeping the diagonal cable always in the center position of the two clamping housings 32, and reducing the shaking of the warning light caused by uneven force. At the same time, the torsion spring has a compact structure, occupies little space, and can flexibly adapt to the internal layout of the clamping housings 32 without increasing the volume of the mounting assembly 30, making the overall structure simpler. Furthermore, the torsion spring exhibits excellent fatigue resistance. Its elastic force does not easily decay during repeated opening and resetting operations, maintaining a stable clamping effect over a long period. This significantly extends the service life of the mounting assembly 30, reduces the maintenance frequency due to the failure of the elastic element 31, and ensures that the warning light remains securely clamped to the guy wire during long-term use. In addition to the torsion spring, the elastic element 31 can also be a tension spring. The tension spring generates elastic force through axial tensile deformation. When the free ends 32A of the two clamping housings 32 are opened, the tension spring is stretched and stores elastic potential energy. After release, it contracts and resets, causing the free ends 32A to move closer together to maintain the clamping state. The tension spring is characterized by its simple structure and low cost. Its elastic force can be flexibly adjusted through selection, adapting to the clamping force requirements of different diameter guy wires. Where installation space permits, it can also provide stable clamping power to the clamping housings 32, ensuring a reliable connection between the warning light and the guy wire.

[0041] Furthermore, each clamping housing 32 includes a bottom cover 321 and a top cover 322, with the bottom cover 321 and the top cover 322 fitting together. The two ends of the torsion spring are respectively clamped and fixed by the bottom cover 321 and the top cover 322 of the two clamping housings 32. The solar panel 20 is connected to the surface of the top cover 322 facing away from the bottom cover 321. This separate structure design of the bottom cover 321 and the top cover 322 provides a convenient and stable solution for the installation and fixation of the torsion spring. The end of the torsion spring can be firmly clamped between the two by the fitting action, and then connected with screws. No additional fastening parts are needed, which simplifies the assembly process, further enhances the stability of the connection, and prevents the torsion spring from loosening or shifting during long-term stress, ensuring that its elastic force can stably act on the two clamping housings 32. The enclosed space formed by the screw connection between the bottom cover 321 and the top cover 322 not only provides physical protection for internal components such as the torsion spring, isolating them from outdoor dust, rain, moisture, and other corrosive factors, thus slowing down component aging and extending their service life, but also allows for a more orderly layout of components and reduces mutual interference through reasonable internal space planning. The latch, located on the side of the bottom cover 321 opposite to the top cover 322, facilitates the connection or fixation of the housing 32 to other structures without affecting the closing of the bottom cover 321 and the top cover 322 or the installation of internal components, enhancing the overall structural adaptability and connection versatility. The solar panel 20 is connected to the surface of the face cover 322 away from the bottom cover 321, allowing the solar panel 20 to be directly exposed to the external environment, maximizing the absorption of sunlight and improving energy conversion efficiency. At the same time, the face cover 322, as a connecting carrier, provides a solid support foundation for the solar panel 20. The stability provided by the screw connection ensures that the solar panel 20 is not easily detached when it encounters external impact or vibration. Combined with the overall structural strength of the bottom cover 321 and the face cover 322, the installation stability of the solar panel 20 is further guaranteed, thereby continuously and efficiently supplying power to the warning light.

[0042] Furthermore, it also includes a battery 40 and a control board 50, both of which are electrically connected to the solar panel 20 and the light-emitting element 10. The battery 40 is used to store electrical energy, and the control board 50 is used to control the operating status of the light-emitting element 10. As the core of electrical energy storage, the battery 40 can store excess electrical energy generated by the solar panel 20 receiving sunlight during the day, ensuring continuous power supply to the light-emitting element 10 and the control board 50 during periods of insufficient sunlight, such as at night or in cloudy or rainy weather. This breaks the dependence on real-time lighting and ensures the warning light operates 24 hours a day without interruption. At the same time, the battery 40 can stably output voltage and current, avoiding power instability caused by fluctuations in the solar panel 20's power supply due to light intensity, providing stable power support to the light-emitting element 10 and the control board 50, and reducing the damage to electronic components caused by voltage fluctuations. The control board 50 performs intelligent regulation. Through its built-in program, it senses ambient light intensity and automatically controls the light-emitting element 10 to turn on in dim light and off in bright light, achieving "on-demand illumination" and reducing unnecessary energy consumption. It can also adjust the flashing frequency of the light-emitting element 10 (e.g., fast flash, slow flash) or switch to a constant-on mode, adapting to more easily noticeable warning methods in different scenarios (e.g., beside roads, within factory areas) to enhance the targeted nature of the warnings. Furthermore, the control board 50 has overcharge and over-discharge protection functions, preventing damage to the battery 40 due to overcharging or discharging, extending the battery 40's lifespan. It also monitors the circuit's operating status, reducing the risk of short circuits, overloads, and other faults, thus improving the overall circuit safety.

[0043] The battery 40 is housed between the bottom cover 321 and the top cover 322 of one of the clamping housings 32, while the control board 50 is housed between the bottom cover 321 and the top cover 322 of the other clamping housing 32. This design, which separates the battery 40 and the control board 50 within the two clamping housings 32, achieves a balanced weight distribution, preventing the overall center of gravity of the warning light from shifting due to excessive load on a single housing. This reduces tilting or wobbling caused by instability after installation, ensuring stable clamping. Simultaneously, the enclosed space formed by the bottom cover 321 and the top cover 322 provides excellent protection for the battery 40 and the control board 50, isolating them from outdoor dust, moisture, and other corrosive elements, reducing the impact of environmental factors on electronic components and extending their lifespan. Furthermore, the separate arrangement ensures that heat dissipation does not interfere with each other, preventing localized overheating that could affect performance. The independent installation space also facilitates later inspection and replacement, improving maintenance convenience. The battery 40 works with the solar panel 20 to store and supply electrical energy, while the control board 50 can flexibly adjust the on / off mode or brightness of the light-emitting element 10, so that the inclined wire warning light 100 can play a warning role in a suitable way in different environments, further improving the practicality of the product.

[0044] In addition, the electrical connection between the light-emitting element 10 and the control board 50 is achieved by a waterproof plug 80. That is, the waterproof plug 80 is electrically connected to the light-emitting element 10 and the control board 50 respectively. The waterproof plug 80 is also clamped and fixed by the bottom cover 321 and the top cover 322 of the corresponding clamping housing 32. That is, the light-emitting element 10 and the clamping housing 32 are indirectly connected by the waterproof plug 80. This waterproof plug 80 design effectively prevents moisture from entering the circuit connection points, avoiding short circuits caused by dampness or water ingress. It is especially suitable for outdoor rainy and humid environments, further improving the reliability of electronic component connections. The waterproof plug 80 is secured by the clamping action of the bottom cover 321 and the top cover 322, eliminating the need for additional fixing structures, simplifying the assembly process, and ensuring that the connector does not loosen or fall off during long-term use, guaranteeing the stability of the circuit connection. Simultaneously, the cooperation between the bottom cover 321 and the top cover 322 enhances the overall sealing of the connector area, forming a double guarantee with the waterproof performance of the waterproof plug 80 itself. More importantly, the indirect connection between the light-emitting element 10 and the clamping housing 32 via a waterproof plug 80 makes the installation and replacement of the light-emitting element 10 much more convenient. When the light-emitting element 10 malfunctions and needs repair or replacement, it is not necessary to disassemble the entire clamping housing 32; simply unplugging the waterproof plug 80 allows the light-emitting element 10 to be separated from the control board 50, greatly shortening maintenance time and reducing maintenance difficulty. At the same time, this detachable connection structure also facilitates the replacement of different models of the light-emitting element 10, allowing for the replacement of light-emitting elements 10 with different brightness and light emission modes according to actual warning needs, enhancing the product's flexibility and adaptability.

[0045] Reference Figure 3 Optionally, the faceplate 322 has a recessed groove 3221 on the side facing away from the bottom cover 321, and the solar panel 20 is embedded in the groove 3221. The groove 3221 provides precise installation positioning for the solar panel 20, ensuring that it can stably fit against the surface of the faceplate 322, avoiding displacement due to vibration or collision during transportation or use, and improving the consistency and stability of assembly. At the same time, after the solar panel 20 is embedded, its outer surface can remain flush with or slightly lower than the surface of the faceplate 322, reducing the portion of the solar panel 20 protruding outward, thereby reducing the risk of damage from scratches or impacts in the outdoor environment, and providing effective physical protection for the solar panel 20. In addition, the groove 3221 can also guide rainwater flow to a certain extent, reducing the soaking of the surface of the solar panel 20 by accumulated water. Combined with the structural characteristics of the faceplate 322, this indirectly improves the weather resistance of the solar panel 20 and ensures its long-term and efficient energy conversion function.

[0046] Furthermore, it also includes a transparent cover plate 60, which covers the groove opening of the recess 3221 and connects to the face cover 322 to encapsulate the solar panel 20 within the recess 3221. The transparent cover plate 60 and the face cover 322 are sealed together. The transparent cover plate 60, without obstructing the solar panel 20 from receiving sunlight, adds a physical barrier, effectively preventing outdoor dust, sand, and other impurities from adhering to the surface of the solar panel 20. This avoids these contaminants affecting light transmission and absorption, thus ensuring the solar panel 20 continuously and efficiently converts energy. Simultaneously, the sealed fit between the transparent cover plate 60 and the face cover 322 isolates rainwater, dew, and other moisture from the outside of the recess 3221, preventing moisture from seeping into the connection gap between the solar panel 20 and the face cover 322. This avoids short circuits or performance degradation caused by moisture, significantly improving the moisture-proof and waterproof performance of the solar panel 20, enabling it to operate stably in complex outdoor environments such as rainy and high-humidity conditions. In addition, the sealing structure can reduce the entry of insects and small debris into the groove 3221, keep the surface of the solar panel 20 clean, reduce the risk of failure caused by foreign object interference, further extend the service life of the solar panel 20, and ensure that it provides stable power support for the warning light for a long time. Reference Figure 1 and Figure 2 Optionally, the bottom cover 321 has a connecting post 3212 on the side opposite to the front cover 322, and the connecting post 3212 has a connecting through hole 32121. The diagonal cable warning light 100 also includes a strapping member 70, which passes through the connecting through hole 32121 and is used to securely connect with the diagonal cable. The connecting post 3212 provides a stable connection fulcrum for the strapping member 70, while the connecting through hole 32121 can limit the strapping member 70, preventing it from shifting during the fastening process and ensuring the accuracy of the strapping operation. The binding element 70 can be made of nylon cable ties, stainless steel cable ties, or metal wire. Nylon cable ties are low-cost, tough, and corrosion-resistant, and feature a self-locking structure. After passing through the connecting hole 32121, they can quickly and easily secure to the guy wire. Stainless steel cable ties are high-strength and weather-resistant, and are not prone to aging or breakage in high-temperature, low-temperature, or humid environments, making them suitable for long-term outdoor use. Metal wire has good plasticity, allowing for flexible adjustment of the binding strength according to the diameter of the guy wire, offering strong adaptability. These binding elements 70, after passing through the connecting hole 32121 and securing to the guy wire, form a double fixation with the clamping force of the clamping housing 32, further enhancing the firmness of the connection between the warning light and the guy wire. Even under the influence of strong winds, vibrations, or other external forces, it effectively prevents the warning light from falling off the guy wire, ensuring its continued warning function. Furthermore, the tightness of the binding elements 70 can be flexibly adjusted according to actual needs, adapting to guy wires of different diameters, enhancing the product's versatility. In addition, the connecting post 3212 is located on the side of the bottom cover 321 away from the front cover 322, which will not affect the layout of the internal components of the clamping housing 32. Moreover, this structural design is simple, easy to process and manufacture, and will not increase the production cost of the product too much. At the same time, it is convenient for later installation and disassembly, which improves the ease of operation.

[0047] In the accompanying drawings of this embodiment, the same or similar reference numerals correspond to the same or similar components. In the description of this application, it should be understood that if terms such as "upper," "lower," "left," and "right" indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings, they are only for the convenience of describing this application and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, the terms used to describe positional relationships in the accompanying drawings are only for illustrative purposes and should not be construed as limiting this patent. For those skilled in the art, the specific meaning of the above terms can be understood according to the specific circumstances.

[0048] The above are merely preferred embodiments of this application and are not intended to limit this application. Any modifications, equivalent substitutions, and improvements made within the spirit and principles of this application should be included within the protection scope of this application.

Claims

1. A diagonal-wire warning light, characterized in that, include: Light-emitting components; A solar panel, which is electrically connected to the light-emitting element to supply power to the light-emitting element; as well as The mounting assembly includes an elastic element and two clamping housings. The light-emitting element is fixedly connected to one of the clamping housings. The elastic element is connected between the two clamping housings. The ends of the two clamping housings away from the elastic element are free ends. The elastic element uses its own elastic force to bring the free ends of the two clamping housings closer to each other to maintain the clamping state. In the clamping state, the two clamping housings are used to jointly clamp the guy wire. The solar panel is connected to the outside of one of the clamping housings, the outside being the surface of the clamping housing facing away from the area between the two clamping housings.

2. The inclined wire warning light as described in claim 1, characterized in that, Each clamping housing includes multiple clamping buckles, which are spaced apart along the length of the clamping housing and located on the side of the clamping housing facing the other clamping housing. The clamping buckles on the two clamping housings are arranged in a one-to-one correspondence. One side of the clamping buckle is recessed to form a card interface, and the card interfaces of the corresponding two clamping buckles cooperate with each other to jointly clamp the diagonal cable.

3. The inclined wire warning light as described in claim 2, characterized in that, The clamping buckle forms ribs on the inner wall of the card interface.

4. The inclined wire warning light as described in claim 1, characterized in that, The number of solar panels is at least two, and each clamping housing is connected to one of the solar panels, with the two solar panels located on the outside of the corresponding clamping housing.

5. The inclined wire warning light as described in any one of claims 1 to 4, characterized in that, The elastic element is a torsion spring, and the two ends of the torsion spring are fixedly connected to the two clamping shells respectively. The torsion spring drives the two clamping shells to maintain the clamping state through its own torsional elastic force.

6. The inclined wire warning light as described in claim 5, characterized in that, Each of the clamping housings includes a bottom cover and a top cover, the bottom cover and the top cover being fitted together, and the two ends of the torsion spring being clamped and fixed by the bottom cover and the top cover of the two clamping housings respectively; the solar panel is connected to the surface of the top cover opposite to the bottom cover.

7. The inclined wire warning light as described in claim 6, characterized in that, It also includes a battery and a control board, both of which are electrically connected to the solar panel and the light-emitting element. The battery is used to store electrical energy, and the control board is used to control the working state of the light-emitting element. The battery is housed between the bottom cover and the top cover of one of the clamping housings, and the control board is housed between the bottom cover and the top cover of the other clamping housing.

8. The inclined wire warning light as described in claim 6, characterized in that, The faceplate has a recessed groove on the side facing away from the bottom cover, and the solar panel is embedded in the groove.

9. The inclined wire warning light as described in claim 8, characterized in that, It also includes a transparent cover plate, which covers the opening of the groove and is connected to the face cover to encapsulate the solar panel in the groove, and the transparent cover plate and the face cover are sealed together.

10. The inclined wire warning light as described in claim 6, characterized in that, The bottom cover has a connecting post on the side opposite to the top cover, and the connecting post has a connecting through hole; The guy wire warning light also includes a strapping component, which passes through the connecting hole and is used to securely connect with the guy wire.