Diagonal cable warning lighting device

By designing functional and fixing components into the guy wire warning light, the problem of unstable connection in strong winds was solved, ensuring the continuous directionality and stability of the warning light and improving the warning effect.

CN121993765APending Publication Date: 2026-05-08SHENZHEN OCEAN KING POWER GRID LIGHTING TECH CO LTD +11
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
SHENZHEN OCEAN KING POWER GRID LIGHTING TECH CO LTD
Filing Date
2026-01-07
Publication Date
2026-05-08

AI Technical Summary

Technical Problem

The existing guy wire warning lights have poor stability in the connection between the warning tube and the guy wire, making them prone to swaying or rotating in strong winds, resulting in unstable warning effects.

Method used

The design employs functional and fixed components, including a warning tube, an illumination unit, and a power supply unit. These components are detachably fixed to the guy cable via a locking mechanism. The locking mechanism and adapter limit the rotational freedom of the warning components, ensuring that the light always points to the warning area.

Benefits of technology

It achieves continuous, reliable, and constant-direction warning lighting, improving the stability and effectiveness of the guy wire warning device.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses a diagonal cable warning and lighting device, and belongs to the technical field of lighting equipment, the diagonal cable warning and lighting device comprises a functional assembly and a fixing assembly, the functional assembly comprises a warning tube, a lighting part and a power supply part, and the warning tube is connected to a diagonal cable and is arranged in the extension direction of the diagonal cable; the lighting part is connected to the warning tube and used for providing a light source for the warning tube; the power supply part is connected to the lighting part and used for supplying power to the lighting part; the fixing assembly comprises a locking part and a switching part, the switching part is used for connecting the locking part and the functional assembly, and the locking part is detachably locked to the cable-stayed cable and used for fixing the functional assembly to the cable-stayed cable and limiting rotation of the functional assembly relative to the cable-stayed cable. According to the device, the function assembly can be effectively locked to the cable-stayed cable through cooperation of the locking part and the switching part in the fixing assembly, so that the connection stability of the warning device and the cable-stayed cable is improved.
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Description

Technical Field

[0001] This invention relates to the field of lighting equipment technology, and in particular to a guy wire warning lighting device. Background Technology

[0002] Guy wires, a common device used to stabilize tall structures such as towers and utility poles, are widely used in the power and telecommunications industries. Because they are typically installed near roads, areas where pedestrians or vehicles may pass, warning lights are required to provide clear warnings and ensure public safety, preventing accidents caused by accidental collisions.

[0003] A typical guy wire warning light generally consists of a warning tube and a light-emitting component. The light-emitting component illuminates the warning tube at night or in low-light conditions, thus enabling the warning tube to illuminate and warn pedestrians.

[0004] However, in existing warning lights, the warning tube is usually connected to the guy wire using simple clamps or clips. In strong winds, this is easily blown around, causing it to sway and rotate. This not only causes the warning light to shift position but may also alter its light emission direction, resulting in an unstable warning effect that fails to provide a continuous and effective warning to passing pedestrians and vehicles. Summary of the Invention

[0005] The purpose of this invention is to provide a guy wire warning lighting device to solve the technical problem of poor connection stability between the warning tube and the guy wire in existing guy wire warning lights.

[0006] To achieve this objective, the present invention adopts the following technical solution:

[0007] A guy wire warning lighting device, comprising:

[0008] The functional components include a warning tube, an illumination unit, and a power supply unit. The warning tube is connected to a guy cable and is arranged along the extension direction of the guy cable. The illumination unit is connected to the warning tube and is used to provide a light source for the warning tube. The power supply unit is connected to the illumination unit and is used to supply power to the illumination unit.

[0009] The fixing component includes a locking part and an adapter part. The adapter part is used to connect the locking part to the functional component. The locking part is detachably locked to the guy cable to fix the functional component to the guy cable and restrict the rotation of the functional component relative to the guy cable.

[0010] Preferably, the locking part includes:

[0011] A buckle is connected to the functional component via the adapter, and the buckle has a slot for accommodating part of the guy cable;

[0012] The clamp has a U-shaped segment that can be bridging the guy cable, with connecting arms extending from both sides of the U-shaped segment. The connecting arms pass through the buckle and are locked to the buckle by fasteners, so that the guy cable is clamped between the slot and the U-shaped segment.

[0013] Preferably, the buckle includes a support section and fixed sections respectively disposed on both sides of the support section and bent in the direction close to the inclined cable. The connecting arm is connected to the support section by the fastener, and the two fixed sections are respectively provided with the buckle groove.

[0014] Preferably, the U-shaped segment is located between the two fixed segments, and the U-shaped segment and the slots of the two fixed segments are on the same axis as the inclined cable.

[0015] Preferably, the inner wall of the slot is provided with a plurality of anti-rotation protrusions, which are arranged along the extension direction of the slot and can engage with the surface of the guy cable to restrict the buckle from rotating relative to the guy cable.

[0016] Preferably, the axial cross-sectional shape of the anti-rotation convex tooth is at least one of triangular, sawtooth, wavy, or hemispherical.

[0017] Preferably, at least part of the locking clamp is provided with a flexible bushing on its outer periphery, the flexible bushing being able to abut against the surface of the guy cable.

[0018] Preferably, at least a portion of the connecting arm has a threaded portion on its outer periphery, and the fastener is a fastening nut, which is threadedly connected to the threaded portion to lock the buckle.

[0019] Preferably, the adapter includes a vertical plate and a horizontal plate arranged perpendicularly to each other, the vertical plate and the horizontal plate forming an L-shaped structure, the horizontal plate being detachably connected to the functional component, and the vertical plate being fitted to and detachably connected to the locking part.

[0020] Preferably, the horizontal plate has a through-hole clearance notch, and at least one connecting bolt is provided on each side of the clearance notch. The horizontal plate is installed to the functional component by means of the connecting bolts.

[0021] The beneficial effects of this invention are:

[0022] The inclined guy cable warning lighting device proposed in this invention achieves its warning lighting function through functional components. The warning tube is positioned along the extension direction of the inclined guy cable, ensuring the warning surface aligns with the cable's trajectory. The lighting unit provides a stable light source to the warning tube, and the power supply unit provides electrical energy to the lighting unit. Crucially, the fixing component can be securely and detachably locked directly to the inclined guy cable via a locking mechanism, providing strong radial constraint and effectively preventing the functional component from sliding or significantly shifting along the cable when subjected to external forces such as lateral wind. Simultaneously, the locking mechanism, in coordination with the adapter and functional component, restricts the rotational freedom of the functional component around the cable axis, ensuring the warning tube, lighting unit, and power supply unit maintain a preset orientation. This guarantees that the emitted light always points to the area requiring warning and remains unchanged due to wind disturbances. This achieves a continuous, reliable, and directionally constant warning lighting effect, improving the reliability and effectiveness of the warning function. Attached Figure Description

[0023] Figure 1 This is a schematic diagram of the structure of the inclined wire warning lighting device provided in an embodiment of the present invention;

[0024] Figure 2 This is a cross-sectional view of the inclined wire warning lighting device provided in an embodiment of the present invention;

[0025] Figure 3 This is a schematic diagram of the structure of the fixing component provided in an embodiment of the present invention;

[0026] Figure 4 This is an exploded structural diagram of the fixing component provided in an embodiment of the present invention.

[0027] In the picture:

[0028] 100. Diagonal guy cable;

[0029] 1. Functional components; 11. Warning tube; 12. Lighting unit; 13. Power supply unit;

[0030] 2. Fixing components;

[0031] 3. Locking part; 31. Buckle; 310. Slot; 311. Support section; 312. Fixing section; 32. Locking clamp; 321. U-shaped section; 322. Connecting arm; 3221. Threaded part; 33. Fastener; 34. Anti-rotation tooth; 35. Flexible bushing;

[0032] 4. Adapter section; 41. Vertical plate; 42. Horizontal plate; 421. Avoidance gap. Detailed Implementation

[0033] Embodiments of the present invention are described in detail below. Examples of these embodiments are shown in the accompanying drawings, wherein the same or similar reference numerals denote the same or similar components or components having the same or similar functions throughout. The embodiments described below with reference to the accompanying drawings are exemplary and intended to explain the present invention, and should not be construed as limiting the present invention.

[0034] In the description of this invention, unless otherwise explicitly specified and limited, the terms "connected," "linked," and "fixed" should be interpreted broadly. For example, they can refer to a fixed connection or a detachable connection; a mechanical connection or an electrical connection; a direct connection or an indirect connection through an intermediate medium; or the internal communication of two components or the interaction between two components. Those skilled in the art can understand the specific meaning of the above terms in this invention according to the specific circumstances.

[0035] In the description of this invention, unless otherwise expressly specified and limited, "above" or "below" the second feature can include direct contact between the first and second features, or contact between the first and second features through another feature between them. Furthermore, "above," "over," and "on top" of the second feature includes the first feature being directly above or diagonally above the second feature, or simply indicates that the first feature is at a higher horizontal level than the second feature. "Below," "below," and "under" the second feature includes the first feature being directly below or diagonally below the second feature, or simply indicates that the first feature is at a lower horizontal level than the second feature.

[0036] The technical solution of the present invention will be further described below with reference to the accompanying drawings and specific embodiments.

[0037] See Figures 1 to 4 The inclined guy cable warning lighting device provided in this embodiment of the invention includes a functional component 1 and a fixing component 2. The functional component 1 includes a warning tube 11, a lighting section 12, and a power supply section 13. The warning tube 11 is connected to the inclined guy cable 100 and is arranged along the extension direction of the inclined guy cable 100. The lighting section 12 is connected to the warning tube 11 and provides a light source for the warning tube 11. The power supply section 13 is connected to the lighting section 12 and provides power to the lighting section 12. The fixing component 2 includes a locking section 3 and a connecting section 4. The connecting section 4 connects the locking section 3 to the functional component 1. The locking section 3 is detachably locked to the inclined guy cable 100, fixing the functional component 1 to the inclined guy cable 100 and restricting the rotation of the functional component 1 relative to the inclined guy cable 100.

[0038] The inclined guy cable warning lighting device proposed in this invention achieves warning lighting function through functional component 1. The warning tube 11 is arranged along the extension direction of the inclined guy cable 100, allowing the warning surface to align with the cable's direction. The lighting unit 12 provides a stable light source to the warning tube 11, and the power supply unit 13 provides power to the lighting unit 12. Crucially, the fixing component 2 can be securely and detachably locked directly to the inclined guy cable 100 via the locking part 3, providing strong radial constraint and effectively preventing the functional component 1 from sliding or significantly shifting along the inclined guy cable 100 when subjected to external forces such as lateral wind. Simultaneously, through the coordinated operation of the locking part 3, the adapter part 4, and the functional component 1, the rotational freedom of the functional component 1 around the axis of the inclined guy cable 100 is restricted, ensuring that the warning tube 11, lighting part 12, and power supply unit 13 always maintain a preset orientation, guaranteeing that the emitted light always points to the area requiring warning and does not change due to wind disturbance. This achieves a continuous, reliable, and directionally constant warning lighting effect, improving the reliability and effectiveness of the warning function.

[0039] The working principle and specific structure of the inclined wire warning lighting device will be explained in detail below.

[0040] The warning tube 11 adopts a hollow tubular structure, and its axial length direction is consistent with the extension direction of the inclined cable 100, and it can be fixedly installed on the inclined cable 100.

[0041] The warning tube 11 is usually made of light-transmitting or semi-light-transmitting materials, such as engineering plastics. The tube wall of the warning tube 11 can be designed with a frosted surface that has a light-diffusing effect or a built-in prism structure so as to scatter the internal light evenly and form a conspicuous linear or strip-shaped light-emitting band, thereby providing a clear outline and warning effect on the entire extension range or key section of the guy cable 100 at night or in low visibility conditions.

[0042] The lighting assembly includes a light source unit disposed inside or at one end of the warning tube 11. The light source unit is fixed to the end position of the warning tube 11 by fasteners 33 or mounting brackets. The light beam emitted by the light source unit illuminates the internal cavity and tube wall of the warning tube 11 along the axial direction of the tube. To ensure uniform illumination throughout the entire length of the tube, the inner wall surface of the warning tube 11 undergoes special optical treatment, such as the application of a diffuse reflection coating or the construction of continuous light guiding and scattering textures. When the light beam enters from one end, part of the light directly illuminates the tube wall and undergoes diffuse reflection, while another part of the light may undergo multiple reflections and scatterings within the tube, ultimately allowing the light to fill the entire cavity and radiate a uniform and soft warning light outward through the tube wall material.

[0043] The power supply component is designed to provide the necessary electrical energy for the operation of the entire device. The power supply component can be a direct power supply type or it can receive solar energy through solar panels and convert it into electrical energy for power supply.

[0044] To securely mount the aforementioned functional component 1 onto the guy cable 100 and ensure its directional stability, the device further includes a fixing component 2. In this embodiment, the lighting unit 12 is integrated and encapsulated within the inner cavity of the warning tube 11, thus protecting the light source. The warning tube 11 itself serves as the main structure supporting the lighting unit 12, and the power supply unit 13 serves as an independent power supply unit; both are mounted on the guy cable 100 via the fixing component 2.

[0045] Specifically, the fixing component 2 includes a locking part 3 and a connecting part 4. The connecting part 4 is used to connect the locking part 3 and the functional component 1. The locking part 3 is configured to be detachably locked to the guy cable 100, so as to firmly fix the functional component 1 to the guy cable 100 and at the same time restrict the rotation of the functional component 1 relative to the guy cable 100, thereby preventing the defects of the warning device in the prior art that is easily rotated or deviated by wind disturbance.

[0046] Furthermore, the locking part 3 includes a buckle 31 and a locking clamp 32. The buckle 31 is connected to the functional component 1 via the adapter part 4. The buckle 31 has a slot 310 for accommodating part of the guy cable 100, and the locking clamp 32 has a U-shaped segment 321 that can cross over the guy cable 100, with connecting arms 322 extending from both sides of the U-shaped segment 321.

[0047] During installation, the U-shaped segment 321 of the locking clamp 32 is straddled on the guy cable 100, allowing the two connecting arms 322 to pass through the buckle 31. Then, fasteners 33 are used to lock the connecting arms 322 to the buckle 31. During this locking process, the guy cable 100 is tightly clamped between the slot 310 of the buckle 31 and the U-shaped segment 321 of the locking clamp 32, forming a multi-point contact rigid clamping, thereby achieving a reliable detachable mechanical locking.

[0048] Furthermore, to optimize clamping stability and cable adaptability, the buckle 31 includes a plate-shaped support section 311 and two fixing sections 312 extending and bending along the direction close to the guy cable 100 on both sides of the support section 311. Fasteners 33 act on the support section 311 to tighten the connecting arm 322 of the locking clamp 32. The two fixing sections 312 are each provided with a slot 310.

[0049] After installation, the guy cable 100 is simultaneously embedded in both slots 310, while the U-shaped section 321 of the locking clamp 32 embraces the guy cable 100 from the other side. When the fastener 33 is tightened, the two fixing sections 312 are pulled toward the U-shaped section 321 through the connecting arm 322, so that the groove walls of the two slots 310 and the inner wall of the U-shaped section 321 together apply pressure to the guy cable 100.

[0050] Since the buckle 31 is fixed to the functional component 1 via the adapter 4, and the circumferential position of the buckle 31 and its slot 310 relative to the guy cable 100 is completely fixed after locking, any tendency of the entire functional component 1 to rotate around the guy cable 100 will be prevented by the static friction between the buckle 31 and the guy cable 100 and the mechanical interlock, thereby ensuring that the warning tube 11 and its lighting part 12 can maintain their preset orientation and provide continuous, constant-direction warning light regardless of the wind or other disturbances from any direction.

[0051] Regarding the locking method of the buckle 31, to achieve reliable detachable locking, a threaded portion 3221 is provided on the outer periphery of at least part of the connecting arm 322. Correspondingly, the fastener 33 is a fastening nut. During installation, after the connecting arm 322 is passed through the corresponding hole of the buckle 31, the fastening nut is screwed onto the threaded portion 3221. By tightening the fastening nut, the connecting arm 322 can be pulled, causing the U-shaped section 321 of the locking clamp 32 and the fixed section 312 of the buckle 31 to come closer together, thereby tightly clamping the guy cable 100. The threaded locking method allows for continuous and precise adjustment of the locking force, ensuring a stable and consistent clamping effect on guy cables 100 of different diameters or tensions, and facilitating on-site installation and subsequent maintenance and disassembly.

[0052] In other feasible embodiments, the fastener 33 is not limited to the aforementioned fit between the fastening nut and the threaded portion 3221. Those skilled in the art can employ other common mechanical fastening structures based on requirements such as ease of installation and locking reliability. For example, the fastener 33 can be configured as a combination of a pin and a locking hole, with spaced-apart locking holes on the connecting arm 322 and corresponding insertable pins on the latch 31. When the connecting arm 322 passes through the latch 31, quick locking and unlocking can be achieved by inserting the pin into the aligned locking holes. Alternatively, the fastener 33 can employ an eccentric cam locking mechanism, with a handle bearing an eccentric cam at the end of the connecting arm 322 and a corresponding groove on the latch 31. Rotating the handle allows the cam to press or release the latch 31, thereby achieving quick manual locking and releasing without tools. These alternative fastening methods can also reliably clamp the guy cable 100 between the slot 310 and the U-shaped segment 321 while maintaining its detachable nature to meet the installation and maintenance needs of different application scenarios.

[0053] To optimize the centering of the clamp, ensure the reliability of anti-rotation, and protect the guy cable 100, in the assembled state, the U-shaped section 321 of the locking clamp 32 is located between the two fixed sections 312 of the buckle 31. Furthermore, the arc-shaped concave surface of the U-shaped section 321 and the slots 310 on the two fixed sections 312 are all on the same axis as the guy cable 100, thereby ensuring that the clamping force is evenly distributed, avoiding device tilting caused by uneven force, and making the fixation more stable and reliable.

[0054] To further enhance the anti-rotation function and prevent slight relative rotation between the buckle 31 and the guy cable 100, multiple anti-rotation protrusions 34 are provided on the inner wall of the slot 310, arranged along the extension direction of the slot 310. When the locking part 3 is locked, the anti-rotation protrusions 34 can embed and engage with the surface of the guy cable 100, increasing the circumferential resistance between the buckle 31 and the guy cable 100 through mechanical interlocking, thereby effectively limiting the rotation of the buckle 31 relative to the guy cable 100.

[0055] Optionally, the anti-rotation protrusion 34 is designed in a V-shape, meaning that the axial cross-section of the anti-rotation protrusion 34 is triangular or approximately triangular. Along the direction away from the inner wall of the slot 310, the axial cross-sectional area of ​​the anti-rotation protrusion 34 gradually decreases, forming a sharp, blade-like structure. This V-shaped design makes it easier for the anti-rotation protrusion 34 to penetrate or engage with the surface texture of the guy cable 100 under locking pressure, providing strong anti-rotation resistance.

[0056] In other embodiments, the specific shape of the anti-rotation protrusion 34 can be adapted to the actual anti-rotation requirements and cable protection requirements, and is not limited to the aforementioned V-shaped structure.

[0057] For example, the anti-rotation protrusion 34 can be designed as a continuous sawtooth or wave-shaped protrusion, which is arranged along the extension direction of the slot 310, and forms an engagement with the cable surface through multiple continuous crests to provide a more uniform anti-rotation resistance.

[0058] For example, the anti-rotation protrusion 34 can be set as discrete hemispherical protrusions, with multiple protrusions distributed in an array on the inner wall of the slot 310. This increases the number of discrete contact points with the cable surface, thereby enhancing the anti-slip and anti-rotation effect. At the same time, the pressure on the cable surface may be more dispersed due to the point contact.

[0059] For example, the anti-rotation protrusion 34 can also adopt a helical tooth structure with a specific tilt angle, with its tooth surface tilted in one direction, so that when the buckle 31 has a tendency to rotate relative to the cable, the tooth edge can be embedded more deeply into the cable surface, generating a self-locking effect, thereby providing unidirectional or bidirectional enhanced anti-rotation capability.

[0060] Considering that the guy cable 100 is usually made of metal, in order to avoid the metal part of the clamp 32 directly rubbing or squeezing and damaging the surface plating or sheath of the guy cable 100, a flexible bushing 35 can be provided on the outer periphery of at least part of the clamp 32, especially the U-shaped section 321. The flexible bushing 35 can be a rubber sleeve or an engineering plastic sleeve.

[0061] When the locking part 3 is locked, the flexible bushing 35 can directly and flexibly abut against the surface of the guy cable 100, playing a role in buffering, anti-slip and protection. The flexible bushing 35 not only increases the static friction between the bushing and the cable, assisting in anti-slip and anti-rotation, but also effectively absorbs vibration and prevents abnormal noise or wear caused by hard friction between metals.

[0062] The adapter 4 is used to achieve a stable, adjustable, and easy-to-assemble connection between the functional component 1 and the locking part 3. In this embodiment, the adapter 4 includes a vertical plate 41 and a horizontal plate 42 arranged perpendicularly to each other. The vertical plate 41 and the horizontal plate 42 are integrally formed or fixedly connected to form an L-shaped structure. The L-shaped structure provides a precise positioning basis for the connection at both ends. The horizontal plate 42 is used to achieve a detachable connection with the functional component 1; while the vertical plate 41 is used to fit against the locking part 3, that is, the support section 311 is on the side away from the locking clamp 32, and achieves a detachable connection with the locking part 3. This design allows the mounting surface of the functional component 1 to be connected through the horizontal plate 42, while the clamping force of the locking part 3 is transmitted through the vertical plate 41. The structural division of labor is clear, and the force path is clear.

[0063] Furthermore, to facilitate installation and accommodate any protrusions or cable routing that may exist on functional component 1, a clearance notch 421 is provided through the horizontal plate 42. The clearance notch 421 provides the necessary assembly space, allowing, for example, the oblique guy cable 100 or structural components on functional component 1 to pass through without interference. Simultaneously, on both sides of the clearance notch 421, the horizontal plate 42 is provided with at least one bolt hole and corresponding connecting bolts. During installation, the horizontal plate 42 is fitted against the pre-set mounting surface of functional component 1, aligning the clearance notch 421 with the area requiring clearance, and then the horizontal plate 42 is installed on functional component 1 by tightening the connecting bolts.

[0064] Based on the aforementioned design of the locking part 3, when the U-shaped segment 321 is located between the two fixed segments 312, and the U-shaped segment 321 is coaxially arranged with the slots 310 of the two fixed segments 312, the entire locking part 3 clamps the guy cable 100 symmetrically and centrally. At this time, the vertical plate 41 can be flatly attached to the back of the support segment 311 of the buckle 31 and fixed with bolts through the L-shaped adapter 4. This connection method is not only firm, but also, due to the rigidity of the L-shaped adapter 4 itself, it can effectively transfer the weight of the functional component 1 and the wind load to the clamping point of the locking part 3, while ensuring that the extension direction of the warning tube 11 and the clamping axis of the locking part 3, i.e., the guy cable 100, maintain a stable spatial relative relationship.

[0065] In other words, the L-shaped design of the adapter 4, together with the locking part 3 which has a centering function, ensures that after final installation, the warning tube 11 can be stably set along the extension direction of the guy cable 100, and will not cause unnecessary shaking or directional deviation due to the flexibility of the connection structure, so as to achieve the effect of limiting the rotation of the functional component 1 relative to the guy cable 100.

[0066] Obviously, the above embodiments of the present invention are merely examples for clearly illustrating the present invention, and are not intended to limit the implementation of the present invention. Those skilled in the art can make other variations or modifications based on the above description. It is neither necessary nor possible to exhaustively describe all embodiments here. Any modifications, equivalent substitutions, and improvements made within the spirit and principles of the present invention should be included within the scope of protection of the claims of the present invention.

Claims

1. A guy wire warning lighting device, characterized in that, include: The functional component (1) includes a warning tube (11), an illumination unit (12), and a power supply unit (13). The warning tube (11) is connected to a guy cable (100) and is arranged along the extension direction of the guy cable (100). The illumination unit (12) is connected to the warning tube (11) and is used to provide a light source for the warning tube (11). The power supply unit (13) is connected to the illumination unit (12) and is used to supply power to the illumination unit (12). The fixing component (2) includes a locking part (3) and an adapter part (4). The adapter part (4) is used to connect the locking part (3) and the functional component (1). The locking part (3) is detachably locked to the guy cable (100) to fix the functional component (1) to the guy cable (100) and restrict the rotation of the functional component (1) relative to the guy cable (100).

2. The inclined wire warning lighting device according to claim 1, characterized in that, The locking part (3) includes: The buckle (31) is connected to the functional component (1) via the adapter (4), and the buckle (31) has a slot (310) for accommodating part of the inclined cable (100). The clamp (32) has a U-shaped segment (321) that can be bridging the guy cable (100), with connecting arms (322) extending from both sides of the U-shaped segment (321). The connecting arms (322) pass through the buckle (31) and are locked to the buckle (31) by fasteners (33), so that the guy cable (100) is clamped between the slot (310) and the U-shaped segment (321).

3. The inclined wire warning lighting device according to claim 2, characterized in that, The buckle (31) includes a support section (311) and a fixing section (312) respectively disposed on both sides of the support section (311) and bent in the direction close to the inclined cable (100). The connecting arm (322) is connected to the support section (311) by the fastener (33). The two fixing sections (312) are respectively provided with the buckle groove (310).

4. The inclined wire warning lighting device according to claim 3, characterized in that, The U-shaped segment (321) is located between the two fixed segments (312), and the slots (310) of the U-shaped segment (321) and the two fixed segments (312) are on the same axis as the inclined cable (100).

5. The inclined wire warning lighting device according to claim 2, characterized in that, The inner wall of the slot (310) is provided with a plurality of anti-rotation protrusions (34). The anti-rotation protrusions (34) are arranged along the extension direction of the slot (310). The anti-rotation protrusions (34) can engage with the surface of the inclined cable (100) to restrict the buckle (31) from rotating relative to the inclined cable (100).

6. The inclined wire warning lighting device according to claim 5, characterized in that, The axial cross-sectional shape of the anti-rotation convex tooth (34) is at least one of the following: triangular, sawtooth, wavy, or hemispherical.

7. The inclined wire warning lighting device according to claim 2, characterized in that, At least part of the locking clamp (32) is fitted with a flexible bushing (35) on its outer periphery, the flexible bushing (35) being able to abut against the surface of the guy cable (100).

8. The inclined wire warning lighting device according to claim 2, characterized in that, At least a portion of the connecting arm (322) has a threaded portion (3221) on its outer periphery, and the fastener (33) is a fastening nut, which is threadedly connected to the threaded portion (3221) to lock the buckle (31).

9. The inclined wire warning lighting device according to claim 1, characterized in that, The adapter (4) includes a vertical plate (41) and a horizontal plate (42) arranged perpendicularly to each other. The vertical plate (41) and the horizontal plate (42) form an L-shaped structure. The horizontal plate (42) is used to be detachably connected to the functional component (1). The vertical plate (41) is attached to the locking part (3) and is detachably connected to the locking part (3).

10. The inclined wire warning lighting device according to claim 9, characterized in that, The horizontal plate (42) has a through-hole clearance notch (421), and at least one connecting bolt is provided on each side of the clearance notch (421). The horizontal plate (42) is installed on the functional component (1) by the connecting bolt.