A safety warning lamp module and an aerial working truck

By using clamping or magnetic components on the safety warning light module on the aerial work platform, the problems of difficult installation and unstable positioning are solved, enabling convenient installation and accurate position adjustment of the safety warning light, and reducing safety risks.

CN224567301UActive Publication Date: 2026-07-28HUNAN SINOBOOM INTELLIGENT EQUIPMENT CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
HUNAN SINOBOOM INTELLIGENT EQUIPMENT CO LTD
Filing Date
2025-08-29
Publication Date
2026-07-28

AI Technical Summary

Technical Problem

The lack of pre-drilled mounting holes on existing aerial work platforms, or the mounting holes being located on the wheel frame, makes it difficult to install safety warning lights and their positions are unstable, posing a safety risk.

Method used

The safety warning light module uses a mounting plate with clamping or magnetic attachments to fix it to the equipment. The fastening components enable convenient installation and position adjustment of the safety warning light.

Benefits of technology

It enables convenient installation of safety warning lights without damaging the original equipment structure, and can accurately mark unsafe areas, reducing safety risks.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a kind of safety warning light module, it includes mounting plate and safety warning light component;The mounting plate is provided with clamping piece or magnetic attraction piece, the clamping piece is used to clamp the mounting of mounting plate, the magnetic attraction piece is used to the magnetic attraction installation of mounting plate;The safety warning light component is installed on the mounting plate by first fastening component, and the first fastening component has first locking state and first loosening state, when the first locking state, the first fastening component will the safety warning light component be fixed on the mounting plate;When the first loosening state, the safety warning light component can rotate relative to the mounting plate with the first fastening component as shaft.Simultaneously, a kind of aerial work platform is also provided.Compared with prior art, the safety warning light module provided by the utility model is more convenient to install, and the position angle of safety warning light can be adaptively adjusted, which can improve the safety of operation.
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Description

Technical Field

[0001] This utility model relates to the field of work safety warning technology, and in particular to a safety warning light module and an aerial work platform vehicle. Background Technology

[0002] Safety warning lights on aerial work platforms (such as articulated boom lifts, telescopic boom lifts, scissor lifts, etc.) are crucial safety devices. They are mainly used to alert surrounding personnel and vehicles to the ongoing work and the position of the vehicle / equipment, prevent collisions, and ensure the safety of workers and pedestrians.

[0003] However, some aerial work platforms lack pre-drilled mounting holes for safety warning lights, particularly older models manufactured earlier. This makes installing warning lights difficult, requiring additional drilling. Consequently, these platforms may lack warning lights to alert surrounding personnel and vehicles during operation, posing a safety risk. Furthermore, some existing aerial work platforms have mounting holes on the wheel frame, with the warning lights mounted there. However, this wheel-mounted light rotates with the tires, causing instability in the warning zone when the equipment turns, making it difficult to accurately pinpoint unsafe areas and still presenting a degree of safety risk.

[0004] Therefore, how to provide a safety warning light module that enables convenient installation of safety warning lights on equipment is an urgent problem to be solved in this field. Utility Model Content

[0005] To address the problem that existing safety warning lights rely on mounting holes on equipment for installation, leading to installation difficulties or limited installation space, this invention provides a safety warning light module. The module mounts the safety warning light onto a mounting plate equipped with clamping or magnetic components, allowing the mounting plate to be secured to the equipment via clamping or magnetic attraction, thus achieving convenient installation of the safety warning light. Furthermore, the position of the safety warning light is adjustable, allowing for customization of the illumination area according to actual needs, enabling more accurate identification of unsafe areas and better mitigation of safety risks.

[0006] A safety warning light module includes a mounting plate and a safety warning light assembly; The mounting plate is provided with clamping components or magnetic components. The clamping components are used to clamp and install the mounting plate, and the magnetic components are used to magnetically install the mounting plate. The safety warning light assembly is mounted on the mounting plate by a first fastening assembly, and the first fastening assembly has a first locked state and a first loosened state. In the first locked state, the first fastening assembly fixes the safety warning light assembly on the mounting plate; in the first loosened state, the safety warning light assembly can rotate relative to the mounting plate about the first fastening assembly as an axis.

[0007] Preferably, the safety warning light assembly includes a mounting base and a safety warning light; The mounting base is mounted on the mounting plate via the first fastening assembly; The safety warning light is mounted on the mounting base by a second fastening assembly, and the second fastening assembly has a second locked state and a second loosened state. In the second locked state, the second fastening assembly fixes the safety warning light on the mounting base; in the second loosened state, the safety warning light can rotate relative to the mounting base about the second fastening assembly as an axis. The second fastening component is positioned in a different direction than the first fastening component.

[0008] Preferably, the second fastening assembly includes a second bolt, a second nut, a first limiting member, and a second limiting member; The head of the second bolt is located outside the mounting base and abuts against the mounting base, and the shank of the second bolt passes through the mounting base; The second nut is threaded onto the shank of the second bolt and is located at the end away from the head of the second bolt; The safety warning light is rotatably mounted on the shank of the second bolt; The first limiting member is axially movable and is disposed on the shank of the second bolt, and is located between the second nut and the safety warning light, and the first limiting member is connected to the mounting base with restricted rotation; The second limiting member is fixedly mounted on the safety warning light; The second nut can compress and drive the first limiting member to move, thereby changing the state of the second fastening assembly; in the second locked state, the first limiting member is inserted into the second limiting member; in the second loosened state, the first limiting member is dislodged from the second limiting member.

[0009] Preferably, the second fastening assembly further includes an elastic pad disposed between the first limiting member and the safety warning light, so as to drive the first limiting member to move away from the second limiting member after the second nut is loosened, so as to disengage the first limiting member from the second limiting member.

[0010] Preferably, the first limiting member is a ratchet, and the second limiting member has a ratchet hole matching the ratchet on the side near the first limiting member.

[0011] Preferably, the first fastening assembly includes a first bolt and a first nut; The shank of the first bolt passes through the mounting plate and the safety warning light assembly; The first nut is threaded onto the shank of the first bolt; The first bolt and the first nut work together to lock the safety warning light assembly to the mounting plate.

[0012] Preferably, the mounting plate is provided with the clamping member, which includes a third bolt and a third nut; The third nut is threaded onto the shank of the third bolt and is used to clamp and install the mounting plate in conjunction with the third bolt.

[0013] Preferably, the mounting plate is provided with the clamping member, which includes a clamping plate, a third bolt, and a third nut. The clamping plate includes a connecting arm and a clamping arm; The connecting arm is connected to the mounting plate; The clamping arm is connected to the connecting arm and is spaced apart from the mounting plate; The shank of the third bolt passes through the mounting plate of the clamping arm; The third nut is threaded onto the shank of the third bolt; The third bolt and the third nut are used to adjust the gap between the clamping arm and the mounting plate to clamp and install the mounting plate.

[0014] Preferably, the mounting plate is provided with the magnetic suction component, the mounting plate is provided with a connecting plate, the magnetic suction component is connected to the connecting plate through a connecting component, and an adjusting pad is provided between the connecting plate and the magnetic suction component.

[0015] An aerial work platform vehicle is equipped with a safety warning light module as described in any one of the above descriptions, and the safety warning light module is installed on all four sides of the aerial work platform vehicle.

[0016] Compared with the prior art, the safety warning light module provided by this utility model includes a mounting plate and a safety warning light assembly. The mounting plate is provided with a clamping member or a magnetic member. The clamping member is used to clamp and install the mounting plate, and the magnetic member is used to magnetically install the mounting plate. The safety warning light assembly is mounted on the mounting plate via a first fastening component, which has a first locking state and a first loosening state. In the first locking state, the first fastening component fixes the safety warning light assembly to the mounting plate. In the first loosening state, the safety warning light assembly can rotate relative to the mounting plate about the first fastening component as an axis. The safety warning light module mounts the safety warning light assembly on the mounting plate, and the mounting plate is provided with the clamping member or the magnetic member, so the mounting plate can be installed and fixed by clamping or magnetic attraction, thereby realizing the installation of the safety warning light. The magnetic and clamping installation structure facilitates convenient installation without damaging or affecting the existing equipment. This allows for rapid deployment of the safety warning light assembly, regardless of whether the existing structure has pre-drilled mounting holes or whether it's an older model. Furthermore, the safety warning light assembly is secured to the mounting plate by the first fastening component. Loosening the first fastening component allows for rotation and adjustment of the safety warning light assembly's position, enabling adjustment of the illumination area according to actual needs. This allows for more accurate identification of unsafe areas and better reduction of safety risks. Attached Figure Description

[0017] 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 these drawings without creative effort.

[0018] Figure 1 A side view of a safety warning light module installed at the front end of a device, according to one embodiment; Figure 2 for Figure 1 A partial cross-sectional view of the front of the safety warning light module shown. Figure 3 for Figure 2 A magnified view of the local area shown; Figure 4 A side view of a safety warning light module installed at the rear of the device, according to another embodiment; Figure 5A side view of the safety warning light module provided in another embodiment when it is installed at the rear of the device in another state; Figure 6 A side view of the safety warning light module installed on the left (right) side of the device, according to another embodiment; Figure 7 A side view of one side of an aerial work platform provided in one embodiment; Figure 8 A side view of the aerial work platform on the other side of one embodiment (the work platform is in the supported state). Figure 9 A schematic diagram of the rear structure of an aerial work platform provided in one embodiment; Explanation of reference numerals in the attached figures: 1000 aerial work platforms; Safety warning light module 100, mounting plate 10, connecting plate 11, safety warning light assembly 20, mounting base 21, safety warning light 22, clamping component 30, third bolt 31, third nut 32, clamping plate 33, connecting arm 331, clamping arm 332, magnetic component 40, first fastening assembly 50, first bolt 51, shank of first bolt 511, head of first bolt 512, first nut 52, washer 53, second fastening assembly 60, second bolt 61, head of second bolt 611, shank of second bolt 612, second nut 62, first limiting component 63, second limiting component 64, elastic pad 65, connecting component 70, adjusting pad block 80; Ladder 210, base frame 220, base frame plate 230. Detailed Implementation

[0019] To enable those skilled in the art to better understand the technical solutions in this application, the technical solutions in the embodiments of this application will be clearly and completely described below. Obviously, the described embodiments are only a part of the embodiments of this application, and not all of the embodiments. Based on the embodiments in this application, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this application.

[0020] It should be noted that when a component is referred to as "mounted on", "fixed on", or "set on" another component, it can be directly on or indirectly set on another component; when a component is referred to as "connected to" another component, it can be directly connected to or indirectly connected to another component.

[0021] It should be noted that the structures, proportions, sizes, etc., shown in the accompanying drawings are only for the purpose of assisting those skilled in the art in understanding and reading the content disclosed in the specification, and are not intended to limit the conditions under which this application can be implemented. Therefore, they have no substantial technical significance. Any modifications to the structure, changes in the proportions, or adjustments to the size should still fall within the scope of the technical content disclosed in this application, provided that they do not affect the effects and purposes that this application can produce.

[0022] This utility model provides a safety warning light module, which includes a mounting plate and a safety warning light assembly. The mounting plate is provided with a clamping member or a magnetic member. The clamping member is used to clamp and install the mounting plate, and the magnetic member is used to magnetically install the mounting plate. The safety warning light assembly is mounted on the mounting plate via a first fastening component, which has a first locked state and a first loosened state. In the first locked state, the first fastening component fixes the safety warning light assembly to the mounting plate. In the first loosened state, the safety warning light assembly can rotate relative to the mounting plate about the first fastening component as an axis. The safety warning light module mounts the safety warning light assembly on the mounting plate, and the mounting plate is provided with the clamping member or the magnetic member, so the mounting plate can be installed and fixed by clamping or magnetic attraction, thereby realizing the installation of the safety warning light. The magnetic and clamping installation structure facilitates convenient installation without damaging or affecting the existing equipment. This allows for rapid deployment of the safety warning light assembly, regardless of whether the existing structure has pre-drilled mounting holes or whether it's an older model. Furthermore, the safety warning light assembly is secured to the mounting plate by the first fastening component. Loosening the first fastening component allows for rotation and adjustment of the safety warning light assembly's position, enabling adjustment of the illumination area according to actual needs. This allows for more accurate identification of unsafe areas and better reduction of safety risks.

[0023] Please refer to the following: Figures 1 to 6 In one embodiment, a safety warning light module 100 is provided, primarily to address the problem of inconvenient installation of existing safety warning lights. Furthermore, the position and angle of the safety warning light in the safety warning light module 100 are adjustable, allowing for adjustment of the illumination area according to actual needs. This enables more accurate identification of unsafe areas, better warning of surrounding people or equipment, and improved reduction of safety risks. Specifically, in one embodiment, the safety warning light module 100 is applied to an aerial work platform for safety warnings during aerial work platform operations.

[0024] The safety warning light module 100 includes a mounting plate 10 and a safety warning light assembly 20. The main function of the mounting plate 10 is to connect with other component structures, thereby mounting the safety warning light module 100 as a whole onto other component structures. The mounting plate 10 also serves as a supporting structure for mounting components such as the safety warning light. The mounting plate 10 is provided with clamping members 30 or magnetic suction members 40. The clamping members 30 are used to clamp the mounting plate 10 securely, and the magnetic suction members 40 are used to magnetically attach the mounting plate 10. The clamping member 30 is used to clamp the mounting plate 10, meaning that the clamping member 30 clamps the mounting plate 10 onto other component structures by clamping, thereby fixing the mounting plate 10 onto other component structures. The magnetic suction member 40 is used to magnetically install the mounting plate 10, meaning that the magnetic suction member 40 magnetically attracts the mounting plate 10 onto other component structures, thereby fixing the mounting plate 10 onto other component structures.

[0025] The safety warning light assembly 20 is mounted on the mounting plate 10 via a first fastening component 50. The first fastening component 50 has a first locked state and a first loosened state. In the first locked state, the first fastening component 50 fixes the safety warning light assembly 20 to the mounting plate 10. In the first loosened state, the safety warning light assembly 20 can rotate relative to the mounting plate 10 about the first fastening component 50 as an axis. That is, the first fastening component 50 is a fastener that can be loosened and adjusted, rather than a completely locked fastening structure that cannot be adjusted. By adjusting the locking state of the first fastening component 50, the safety warning light assembly 20 can be completely fixed or allowed to rotate freely. This ensures the positional reliability of the safety warning light assembly 20 during use, while also allowing the operator to flexibly adjust the position and angle of the safety warning light assembly 20 by loosening the first fastening component 50 when the safety illumination area needs to be adjusted.

[0026] When the position of the safety warning light assembly 20 needs to be adjusted, the operator loosens the first fastening component 50, changing it from a locked state to a loosened state. Then, the operator rotates and adjusts the position angle of the safety warning light assembly 20. Once the position angle of the safety warning light assembly 20 is properly adjusted, the operator tightens the first fastening component 50, changing it from a loosened state to a locked state, thus completely securing the safety warning light assembly 20 to the mounting plate 10.

[0027] Understandably, some existing aerial work platforms lack pre-drilled mounting holes for safety warning lights, making their installation extremely difficult. Installing warning lights on these platforms would require drilling additional holes, which not only increases installation difficulty but could also compromise the equipment's structural strength. Furthermore, some existing aerial work platforms mount warning lights on wheel frames for safety purposes. However, since these lights rotate with the tires, the warning area becomes unstable when the equipment turns, making it difficult to accurately pinpoint unsafe zones.

[0028] In this embodiment, the safety warning light module 100 is provided with a clamping member 30 or a magnetic suction member 40 on the mounting plate 10. The mounting plate 10 can be installed on the equipment by clamping or magnetic suction using the clamping member 30 or the magnetic suction member 40. Installation is no longer limited by mounting holes on the equipment, allowing for direct structural installation without damaging or affecting the original equipment state. This enables rapid deployment of the safety warning light assembly 20. The safety warning light can be installed regardless of whether mounting holes are available on the equipment, providing greater flexibility in its installation location. This allows for better illumination of the warning area, more stable warning zones, and more accurate identification of unsafe areas, thus improving equipment safety during operation. Furthermore, the safety warning light assembly 20 is installed via the first fastening assembly 50, thereby securing the safety warning light assembly 20 securely by tightening the first fastening assembly 50, ensuring the reliability of the position of the safety warning light assembly 20. Simultaneously, when it is necessary to adjust the illumination area of ​​the safety warning light assembly 20, the position and angle of the safety warning light assembly 20 can be adjusted by loosening the first fastening assembly 50, facilitating use under different working conditions. This allows the safety warning light assembly 20 to accurately identify unsafe areas, improving the effectiveness of the warning range and enhancing the safety of equipment operation.

[0029] Preferably, in one embodiment, the mounting plate 10 is a folded plate, that is, the mounting plate 10 is a folded plate structure rather than a single flat plate. By setting the mounting plate 10 as a folded plate structure, it is easier to connect and install it with the plates on the aerial work platform, allowing the safety warning light assembly 20 to face the desired direction after installation, ensuring the warning effect. The specific shape and structure of the mounting plate 10 can be selected according to the actual required installation location.

[0030] Preferably, in one embodiment, the safety warning light assembly 20 includes a mounting base 21 and a safety warning light 22. The mounting base 21 is mounted on the mounting plate 10 via a first fastening assembly 50. The safety warning light 22 is mounted on the mounting base 21 via a second fastening assembly 60, and the second fastening assembly 60 has a second locked state and a second loosened state. In the second locked state, the second fastening assembly 60 fixes the safety warning light 22 to the mounting base 21; in the second loosened state, the safety warning light 22 can rotate relative to the mounting base 21 about the second fastening assembly 60 as an axis. The setting direction of the second fastening assembly 60 is different from that of the first fastening assembly 50. Similarly, the second fastening assembly 60 is a fastener that can be loosened and adjusted, rather than a fastening structure that is completely locked and cannot be adjusted. By adjusting the locking state of the second fastening component 60, the safety warning light 22 can be completely fixed or allowed to rotate freely. This ensures the positional reliability of the safety warning light 22 during use, while allowing the operator to flexibly adjust the position angle of the safety warning light 22 after loosening the second fastening component 60 when the safety illumination area needs to be adjusted. In other words, in this embodiment, the safety warning light 22 can be adjusted in two different directions. When the first fastening component 50 is loosened, the position angle of the safety warning light 22 can be adjusted simultaneously by adjusting the position angle of the mounting base 21 relative to the mounting plate 10. Similarly, when the second fastening component 60 is loosened, the position angle of the safety warning light 22 relative to the mounting base 21 can be adjusted.

[0031] Specifically, in one embodiment, the first fastening component 50 is arranged along the plumb line, so that after the first fastening component 50 is loosened, the mounting base 21 can rotate horizontally relative to the mounting plate 10 with the first fastening component 50 as an axis, thereby allowing the illumination area of ​​the safety warning light 22 to be adjusted left and right, completing the axial rotation of the safety warning light 22 and adjusting the safety warning light 22 to project a non-rectangular warning range around the equipment. The second fastening component 60 is arranged horizontally, so that after the second fastening component 60 is loosened, the safety warning light 22 can rotate vertically relative to the mounting base 21 with the second fastening component 60 as an axis, thereby allowing the illumination area of ​​the safety warning light 22 to be adjusted up and down, completing the adjustment of the radial angle between the safety warning light 22 and the ground.

[0032] Preferably, in one embodiment, the second fastening assembly 60 includes a second bolt 61, a second nut 62, a first limiting member 63, and a second limiting member 64. The head 611 of the second bolt 61 is located outside the mounting base 21 and abuts against the mounting base 21, while the shank 612 of the second bolt 61 passes through the mounting base 21. The second nut 62 is threaded onto the shank 612 of the second bolt 61 and is located at the end away from the head 611 of the second bolt 61. The safety warning light 22 is rotatably mounted on the shank 612 of the second bolt 61. The first limiting member 63 is axially movable on the shank 612 of the second bolt 61 and is located between the second nut 62 and the safety warning light 22, and the first limiting member 63 is connected to the mounting base 21 with restricted rotation. In other words, the first limiting member 63 is fitted onto the rod portion 612 of the second bolt 61, and the first limiting member 63 is connected to the mounting base 21. Due to the structural constraints of the mounting base 21, the first limiting member 63 cannot rotate, thus restricting its circumferential rotational freedom. The second limiting member 64 is fixedly mounted on the safety warning light 22. The second nut 62 can compress and drive the first limiting member 63 to move, thereby changing the state of the second fastening assembly 60. In the second locked state, the first limiting member 63 is inserted into the second limiting member 64; in the second loosened state, the first limiting member 63 is dislodged from the second limiting member 64. That is, in this embodiment, the second locked state and the second loosened state of the second fastening assembly 60 are controlled and adjusted by the second nut 62. When the safety warning light 22 needs to be locked and fixed, the second nut 62 is turned so that it moves closer to the first limiting member 63. The second nut 62 pushes the first limiting member 63, causing the first limiting member 63 to move axially. When the first limiting member 63 is inserted into the second limiting member 64, the circumferential rotation freedom of the first limiting member 63 is restricted, which in turn restricts the circumferential rotation freedom of the second limiting member 64, preventing the second limiting member 64 from rotating. Since the second limiting member 64 is fixed to the safety warning light 22, the circumferential rotation freedom of the safety warning light 22 is also restricted, thereby fixing the safety warning light 22 to the mounting base 21.When the position and angle of the safety warning light 22 need to be adjusted, the second nut 62 can be turned in the opposite direction, causing the second nut 62 to move away from the first limiting member 63. This removes the axial restriction of the first limiting member 63, allowing the first limiting member 63 to move axially away from the second limiting member 64. When the first limiting member 63 disengages from the second limiting member 64, the circumferential rotation of the second limiting member 64 is no longer restricted, allowing the safety warning light 22 to be adjusted by rotating around the rod 612 of the second bolt 61. After adjustment, the safety warning light 22 can be tightened by turning the second nut 62. This structure simplifies the adjustment of the safety warning light 22 and ensures a secure fastening effect.

[0033] Preferably, in one embodiment, the second fastening assembly 60 further includes an elastic pad 65, wherein the elastic pad 65 refers to an elastic gasket that can undergo elastic deformation after being subjected to force, and can return to its initial shape after the force is relieved or removed. The elastic pad 65 is disposed between the first limiting member 63 and the safety warning light 22, and is used to drive the first limiting member 63 to move away from the second limiting member 64 after the second nut 62 is loosened, so that the first limiting member 63 is disengaged from the second limiting member 64. That is to say, in this embodiment, an elastic structure is provided between the first limiting member 63 and the safety warning light 22. When the second nut 62 is loosened, it can recover through the deformation of the elastic structure itself, thereby driving the first limiting member 63 to reset, allowing the first limiting member 63 to separate from the second limiting member 64. With this structure, the overall structure of the second fastening assembly 60 can be simplified, eliminating the need for an additional complex reset and movement structure.

[0034] Preferably, in one embodiment, the first limiting member 63 is a ratchet, and the second limiting member 64 is provided with a ratchet hole matching the ratchet 63 on the side near the first limiting member 63. With this structure, the locking effect of the safety warning light 22 can be better ensured.

[0035] In one embodiment, when the second nut 62 is tightened, it pushes the first limiting member 63 forward, compressing the elastic pad 65. This reduces the thickness of the elastic pad 65 due to pressure deformation, allowing the ratchet teeth on the first limiting member 63 to engage with the ratchet holes on the second limiting member 64, thus achieving a limiting effect. When it is necessary to adjust the angle of the safety warning light 22, simply loosen the second nut 62. After the first limiting member 63 is no longer compressed, the elastic pad 65 deforms and recovers, pushing the ratchet teeth on the first limiting member 63 out of the ratchet holes on the second limiting member 64. This allows the first limiting member 63 to disengage from the second limiting member 64. Then, the safety warning light 22 can be adjusted to the required angle by directly turning it, and the second nut 62 can be tightened again to complete the adjustment of the radial angle between the safety warning light 22 and the ground.

[0036] Understandably, to prevent the first limiting member 63 from accidentally separating from the second limiting member 64 in the second locking state, the position of the end of the safety warning light 22 furthest from the second limiting member 64 should be restricted. For example, as Figure 3 As shown, the right end of the safety warning light 22 abuts against the mounting base 21, thereby preventing the safety warning light 22 from sliding to the right in the second locking state, which would cause the first limiting member 63 and the second limiting member 64 to separate unexpectedly.

[0037] Specifically, in one embodiment, the second limiting member 64 is a plate structure, and a U-shaped slot is provided on the second limiting member 64. The second limiting member 64 is fixed to the safety warning light 22 through the U-shaped slot.

[0038] Specifically, in one embodiment, the connection of the first limiting member 63 to the mounting base 21 with restricted rotation is as follows: the first limiting member 63 is connected to the mounting base 21 by a vertical key provided at the rear. The vertical key can be fixed on the mounting base 21, thereby restricting the rotation of the first limiting member 63 by the vertical key, while not hindering the axial movement of the first limiting member 63.

[0039] In one configuration, the second nut 62 can be directly connected to the first limiting member 63 in the axial direction. When the second nut 62 is tightened, its end face can directly abut against the end face of the first limiting member 63, thereby causing the first limiting member 63 to move. Alternatively, in the axial direction, the second nut 62 and the first limiting member 63 are spaced apart, with the side wall of the mounting base 21 sandwiched between them. When the second nut 62 is tightened, its end face can press against the side wall of the mounting base 21, thereby pressing against the first limiting member 63 and causing it to move.

[0040] Preferably, in one embodiment, the first fastening assembly 50 includes a first bolt 51 and a first nut 52. The shank 511 of the first bolt 51 passes through the mounting plate 10 and the safety warning light assembly 20. The first nut 52 is threaded onto the shank 511 of the first bolt 51. The first bolt 51 and the first nut 52 cooperate to lock the safety warning light assembly 20 to the mounting plate 10. That is, in this embodiment, the safety warning light assembly 20 is specifically fastened to the mounting plate 10 by bolts and nuts, which has a simple structure, low cost, good fastening effect, and is easy to loosen and adjust.

[0041] Specifically, in one embodiment, the first nut 52 is located inside the mounting base 21, and the head 512 of the first bolt 51 abuts against the surface of the mounting plate 10. In the first locked state, the head 512 of the first bolt 51 and the first nut 52 abut against the surfaces of the mounting plate 10 and the mounting base 21, respectively, thereby fastening the mounting base 21 to the mounting plate 10.

[0042] More preferably, in one embodiment, the first fastening assembly 50 further includes a washer 53 disposed between the first nut 52 and the mounting base 21. The washer 53 can better prevent wear of the components and improve the fastening effect.

[0043] In one embodiment, by loosening the first bolt 51 to reduce the compressive force on the mounting base 21, the gasket 53 can be returned to its original position, allowing the safety warning light 22 to be rotated axially to adjust the safety warning light 22 to illuminate a non-rectangular warning area around the equipment. After the axial and radial angles are adjusted, the corresponding nuts can be tightened.

[0044] Preferably, in one embodiment, the mounting plate 10 is provided with the clamping member 30, that is, in this embodiment, the mounting plate 10 is installed by clamping. The clamping member 30 includes a third bolt 31 and a third nut 32. The third nut 31 is threaded to the shank of the third bolt 32, and is used to cooperate with the third bolt 31 to clamp the mounting plate 10. That is, in this embodiment, the clamping member 30 directly uses a bolt and nut structure to achieve clamping installation. The direct use of a bolt and nut structure is mainly suitable for installation at locations where there are already openings on the equipment, for example, such as... Figure 4 As shown, the mounting plate 10 at the rear end is fixed to the ladder 210 at the rear end of the equipment by tightening the third bolt 31 and the third nut 32. The mounting holes required for installing the safety warning light module 100 can be directly utilized from the anti-slip holes on the footrest of the ladder 210, without the need for secondary drilling.

[0045] Preferably, in one embodiment, the mounting plate 10 is provided with the clamping member 30, that is, in this embodiment, the mounting plate 10 is installed by clamping. The clamping member 30 includes a clamping plate 33, a third bolt 31, and a third nut 32. The clamping plate 33 includes a connecting arm 331 and a clamping arm 332. The connecting arm 331 is connected to the mounting plate 10. The clamping arm 332 is connected to the connecting arm 331, and the clamping arm 332 is spaced apart from the mounting plate 10. The shank of the third bolt 31 passes through the mounting plate 10 via the clamping arm 332, and the third nut 32 is threaded onto the shank of the third bolt 31. The third bolt 31 and the third nut 32 are used to adjust the gap between the clamping arm 332 and the mounting plate 10 to clamp the mounting plate 10. In this embodiment, the mounting plate 10 is also clamped using a bolt and nut structure, but it is not clamped directly by the bolt and nut. Instead, the gap between the clamping arm 332 and the mounting plate 10 is adjusted by the bolt and nut. By clamping the clamping arm 332 and the mounting plate 10 on both sides of the plate, the mounting plate 10 is clamped and installed. The structure provided in this embodiment is primarily adapted for installing the safety warning light module 100 in locations on the equipment where no mounting holes are provided, for example, as... Figure 1 As shown, the mounting plate 10 and the clamping arm 332 at the front end abut against the base frame 220 at the front end of the equipment. The base frame 220 can be set vertically. By tightening the third bolt 31 and the third nut 32, the clamping plate 33 can be slightly deformed, thereby clamping the clamping arm 332 and the mounting plate 10 onto two opposing surfaces of the base frame 220.

[0046] Preferably, in one embodiment, the mounting plate 10 is provided with the magnetic suction component 40, meaning that in this embodiment, the mounting plate 10 is installed via magnetic attraction. The mounting plate 10 is provided with a connecting plate 11, and the magnetic suction component 40 is connected to the connecting plate 11 via a connector 70. An adjusting pad 80 is provided between the connecting plate 11 and the magnetic suction component 40. The adjusting pad 80 can be provided in various models, each with a different thickness. It is understood that since the base plate thickness varies for different devices, the installation gap between the safety warning light module 100 and the base plate can be adjusted using adjusting pads 80 of different thicknesses. After adjusting the gap, the magnetic suction component 40 and the adjusting pad 80 are installed using the connector 70. The lower end of the structure is a magnetic structure, allowing it to adhere to the base plate structure without the need for on-site drilling, enabling rapid deployment. This structure is primarily suitable for equipment base plates made of magnetically adsorbable materials, thereby enabling the magnetic installation of the safety warning light module 100. For example, as... Figure 6 As shown, the mounting plate 10 on the left (or right) side is fixed to the base plate 230 on the left (or right) side of the equipment by magnetic adsorption through the magnetic suction member 40 provided at the bottom. The base plate 230 can be arranged horizontally.

[0047] Specifically, in one embodiment, the connector 70 is a screw.

[0048] Specifically, in one embodiment, the magnetic attractant 40 is a magnet.

[0049] The safety warning light module 100 can be installed on the existing structure of the equipment without secondary on-site work. After connecting the light cable to the equipment circuit, it can be turned on and off synchronously with the equipment. The magnetic and clamping installation structure allows for rapid installation and deployment of the safety warning light module 100. The lamp fixing structure can rotate, and the warning range indicated around the equipment can be adjusted by changing the angle between the lamp and the ground, facilitating use under different working conditions. After installation, it operates synchronously with the main equipment, and the warning range activates simultaneously, ensuring synchronized warnings. The safety warning light has low power consumption, light weight, low power consumption, and long battery life.

[0050] Please refer to the following: Figures 7 to 9Meanwhile, in one embodiment, an aerial work platform 1000 is also provided, which is equipped with the safety warning light module 100. Specifically, in one embodiment, the safety warning light module 100 is installed on all four sides of the aerial work platform 1000, that is, the safety warning light module 100 is installed on the front, rear, left, and right sides of the aerial work platform 1000. More specifically, the safety warning light module 100 located at the front end of the aerial work platform 1000 adopts the following... Figure 1 The structure shown is installed by clamping the clamping arm 332 to the mounting plate 10 using the third bolt 31 and the third nut 32, thereby securing the mounting plate 10 to the base frame 220 at the front end of the aerial work platform 1000. The safety warning light module 100 located at the rear end of the aerial work platform 1000 adopts the following... Figure 4 The structure shown is used for installation, utilizing the anti-slip holes on the footrests of the ladder 210 at the rear end of the aerial work platform as mounting holes. The mounting plate 10 is fastened to the ladder 210 using the third bolt 31 and the third nut 32. The safety warning light modules 100 located on the left and right sides of the aerial work platform 1000 are installed as shown in the diagram. Figure 6 The structure shown is used for installation. The mounting plate 10 is magnetically secured to the base plate 230 on both sides of the aerial work platform 1000 using the magnetic suction components 40. This structure allows for more stable marking of the warning area, improving the safety of the aerial work platform 1000 during operation.

[0051] The above description is merely an embodiment of this utility model. It should be noted that those skilled in the art can make improvements without departing from the inventive concept of this utility model, but these improvements all fall within the protection scope of this utility model.

Claims

1. A safety warning light module, characterized in that, Includes mounting plate and safety warning light assembly; The mounting plate is provided with clamping components or magnetic components. The clamping components are used to clamp and install the mounting plate, and the magnetic components are used to magnetically install the mounting plate. The safety warning light assembly is mounted on the mounting plate by a first fastening assembly, and the first fastening assembly has a first locked state and a first loosened state. In the first locked state, the first fastening assembly fixes the safety warning light assembly on the mounting plate; in the first loosened state, the safety warning light assembly can rotate relative to the mounting plate about the first fastening assembly as an axis.

2. The safety warning light module according to claim 1, characterized in that, The safety warning light assembly includes a mounting base and a safety warning light; The mounting base is mounted on the mounting plate via the first fastening assembly; The safety warning light is mounted on the mounting base by a second fastening component, and the second fastening component has a second locked state and a second loosened state. In the second locked state, the second fastening component fixes the safety warning light on the mounting base. In the second loosened state, the safety warning light can rotate relative to the mounting base about the second fastening component as an axis; The second fastening component is positioned in a different direction than the first fastening component.

3. The safety warning light module according to claim 2, characterized in that, The second fastening assembly includes a second bolt, a second nut, a first limiting member, and a second limiting member; The head of the second bolt is located outside the mounting base and abuts against the mounting base, and the shank of the second bolt passes through the mounting base; The second nut is threaded onto the shank of the second bolt and is located at the end away from the head of the second bolt; The safety warning light is rotatably mounted on the shank of the second bolt; The first limiting member is axially movable and is disposed on the shank of the second bolt, and is located between the second nut and the safety warning light, and the first limiting member is connected to the mounting base with restricted rotation; The second limiting member is fixedly mounted on the safety warning light; The second nut can compress and drive the first limiting member to move, thereby changing the state of the second fastening assembly; in the second locked state, the first limiting member is inserted into the second limiting member; in the second loosened state, the first limiting member is dislodged from the second limiting member.

4. The safety warning light module according to claim 3, characterized in that, The second fastening assembly further includes an elastic pad disposed between the first limiting member and the safety warning light, which is used to move the first limiting member away from the second limiting member after the second nut is loosened, so that the first limiting member is dislodged from the second limiting member.

5. The safety warning light module according to claim 3, characterized in that, The first limiting member is a ratchet, and the second limiting member has a ratchet hole that matches the ratchet on the side near the first limiting member.

6. The safety warning light module according to claim 1, characterized in that, The first fastening assembly includes a first bolt and a first nut; The shank of the first bolt passes through the mounting plate and the safety warning light assembly; The first nut is threaded onto the shank of the first bolt; The first bolt and the first nut work together to lock the safety warning light assembly to the mounting plate.

7. The safety warning light module according to claim 1, characterized in that, The mounting plate is provided with the clamping member, which includes a third bolt and a third nut; The third nut is threaded onto the shank of the third bolt and is used to clamp and install the mounting plate in conjunction with the third bolt.

8. The safety warning light module according to claim 1, characterized in that, The mounting plate is provided with the clamping component, which includes a clamping plate, a third bolt, and a third nut. The clamping plate includes a connecting arm and a clamping arm; The connecting arm is connected to the mounting plate; The clamping arm is connected to the connecting arm and is spaced apart from the mounting plate; The shank of the third bolt passes through the mounting plate of the clamping arm; The third nut is threaded onto the shank of the third bolt; The third bolt and the third nut are used to adjust the gap between the clamping arm and the mounting plate to clamp and install the mounting plate.

9. The safety warning light module according to claim 1, characterized in that, The mounting plate is provided with the magnetic suction component, and the mounting plate is provided with a connecting plate. The magnetic suction component is connected to the connecting plate through the connecting component, and an adjustment pad is provided between the connecting plate and the magnetic suction component.

10. An aerial work platform vehicle, characterized in that, The aerial work platform is equipped with a safety warning light module as described in any one of claims 1 to 9, and the safety warning light module is installed around all four sides of the platform.