Multi-scene portable mobile signal lamp

By designing a portable mobile traffic light for multiple scenarios, and using a positioning plate and locking bolts to adjust the angle and style of the traffic light, the problem of existing traffic lights being unable to be adjusted is solved, achieving efficient and low-cost applicability to multiple scenarios.

CN223963856UActive Publication Date: 2026-03-03FOSHAN GUANGMING EXPRESSWAY CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-31
Publication Date
2026-03-03

AI Technical Summary

Technical Problem

Existing traffic lights cannot be adjusted in angle, cannot meet the needs of multiple scenarios, are difficult to manufacture and costly, and are difficult to effectively guide traffic in extreme weather or construction scenarios.

Method used

Design a portable mobile signal light for multiple scenarios. It adopts a positioning plate, a main light strip assembly and a side light strip assembly. The angle and style of the arrow structure can be adjusted by locking bolts. The structure is simple and reliable and can be locked quickly and stably.

Benefits of technology

It enables convenient adjustment of the angle and style of traffic lights, improves the stability and applicability of traffic lights, reduces manufacturing difficulty and cost, and is suitable for various environments.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223963856U_ABST
Patent Text Reader

Abstract

The utility model relates to the field of traffic signal products, in particular to a multi-scene portable mobile signal lamp, which is characterized by comprising a positioning plate, a main lamp strip component and two side lamp strip components, and the two side lamp strip components are respectively connected onto the positioning plate in a sliding manner through locking bolts. The main light bar assembly and the two side light bar assemblies can jointly form an arrow structure on the positioning plate. According to the utility model, the arrow structure capable of adjusting the angle and the style is formed, and the formed arrow structure is very simple and reliable, so that not only can the requirement of adjusting the angle and the style of the arrow be met, but also the arrow structure is very convenient to adjust, and the adjusted arrow structure has high stability; according to the invention, the multi-scene use requirements can be conveniently met, great troubles can be solved for users, and the device has the advantages of simple structure, low manufacturing difficulty, high manufacturing efficiency, low manufacturing cost, high reliability, convenience in adjustment, multiple applicable scenes and the like.
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Description

Technical Field

[0001] This utility model relates to the field of traffic signal products, and in particular to a mobile signal light. Background Technology

[0002] With the acceleration of highways and the continuous increase in traffic volume, traffic safety issues are becoming increasingly serious. Given the unique characteristics and limitations of highways, their traffic management faces numerous challenges: For example, in road construction scenarios, the original road layout and traffic flow often change due to construction needs. Construction areas may occupy some lanes, causing narrowing of roads or requiring lane changes. In such situations, relying solely on on-site personnel or signs to direct traffic is insufficient to meet the on-site traffic demands. Vehicles passing through construction areas are highly likely to cause traffic congestion and even traffic accidents. In temporary traffic control and accident handling scenarios, the on-site response cannot quickly meet control requirements, and vehicles cannot be effectively guided and restricted in advance. Passengers and passengers may find it difficult to react in time, which is detrimental to ensuring traffic order and the safety of road workers during on-site handling. At highway curves and steep slopes, relying solely on existing highway signs can lead to obstructed visibility during extreme weather conditions such as heavy rain, strong winds, and dense fog. Drivers may find it difficult to accurately judge road conditions and traffic signals, increasing the risk of misjudgment and easily causing traffic accidents. In addition, during peak traffic periods such as holidays, the existing traffic signal facilities are no longer able to cope with sudden traffic changes, resulting in low traffic management efficiency.

[0003] As a result, arrow-shaped or angled traffic lights have emerged. In existing traffic lights of this type, the components forming the arrow or angle are fixedly connected, so the angle of the arrow or angle is fixed and cannot be adjusted. This makes it difficult for users to change the angle or style of the traffic light according to actual needs, thus failing to meet the requirements of various scenarios and causing significant inconvenience to users. Although a small number of traffic lights now offer angle adjustment, the structures for angle adjustment on existing traffic lights are quite complex, leading to problems such as high manufacturing difficulty, low manufacturing efficiency, and high manufacturing costs.

[0004] Therefore, it is essential to design portable mobile traffic lights for multiple scenarios to solve the aforementioned technical problems. Utility Model Content

[0005] The purpose of this utility model is to solve the above-mentioned problems and shortcomings, and to provide a multi-scenario portable mobile signal light. This multi-scenario portable mobile signal light is equipped with an arrow structure that can adjust the angle and style. The arrow structure is very simple and reliable. This not only meets the needs of adjusting the arrow angle and style, but also makes the adjustment of the arrow structure very convenient. Furthermore, it enables the adjusted arrow structure to have high stability, which can easily meet the needs of use in multiple scenarios. This can solve a lot of troubles for users. It has the advantages of simple structure, low manufacturing difficulty, high manufacturing efficiency, low manufacturing cost, high reliability, convenient adjustment, and multiple applicable scenarios.

[0006] The technical solution of this utility model is implemented as follows:

[0007] A multi-scenario portable mobile signal light is characterized by comprising a positioning plate, a main light strip assembly, and two side light strip assemblies. At least one locking bolt that can slide along its length is slidably embedded on each of the two side light strip assemblies. The main light strip assembly is located in the middle of the positioning plate. The locking bolts on the two side light strip assemblies are slidably and rotatably inserted through the positioning plate, and the side light strip assemblies are locked to the positioning plate by the locking bolts. The two side light strip assemblies are located on both sides of the ends of the main light strip assembly, and the main light strip assembly and the two side light strip assemblies together form an arrow structure.

[0008] Preferably, the main light strip assembly and the two side light strip assemblies are both located on the front of the positioning plate, and a large suction cup is provided on the back of the positioning plate.

[0009] Preferably, one end of the main light strip assembly is attached to the positioning plate, and a small suction cup is provided on the back of the other end of the main light strip assembly.

[0010] Preferably, the positioning plate has a through arc-shaped hole, and the locking bolt is slidably and rotatably inserted through the arc-shaped hole.

[0011] Preferably, two locking bolts that can slide along their length are slidably embedded on the side light strip assembly, and the positioning plate has arc-shaped holes with the same arc bending direction for each of the two locking bolts on a single side light strip assembly; the two locking bolts are respectively inserted into the two arc-shaped holes.

[0012] Preferably, the positioning plate is fan-shaped, one end of the main light strip assembly overlaps the middle of the positioning plate, and the other end of the main light strip assembly is located outside the outer arc edge of the positioning plate; the two side light strip assemblies are located at both ends of the positioning plate, and the inner arc hole walls of each arc hole are close to the inner arc edge of the positioning plate.

[0013] Preferably, the side light strip assembly has a first T-shaped groove extending along its length, and one end of the locking bolt is slidably embedded in the first T-shaped groove.

[0014] Preferably, the two side light strip assemblies are respectively connected to the main light strip assembly via wires, and the main light strip assembly is provided with a button assembly for switching the main light strip assembly and the two side light strip assemblies on and off.

[0015] Preferably, the main light strip assembly is a rechargeable light strip assembly, and a charging port is provided on the side wall of the main light strip assembly, with a soft rubber cover on the charging port.

[0016] Preferably, the main light strip assembly has a second T-shaped groove extending along its length, at least one positioning bolt is slidably embedded in the second T-shaped groove, and the positioning bolt passes through the positioning plate, so that the main light strip assembly can be locked on the positioning plate by the positioning bolt.

[0017] The beneficial effects of this utility model are as follows: This multi-scenario portable mobile signal light uses a positioning plate, a main light strip assembly, and two side light strip assemblies. Locking bolts are used to position the side light strip assemblies on the positioning plate, and these bolts can slide on both the side light strip assemblies and the positioning plate before locking. Furthermore, the main light strip assembly and the two side light strip assemblies together form an arrow structure. This not only simplifies the overall structure but also allows for quick adjustment of the position and angle of the side light strip assemblies by loosening the locking bolts, thus enabling rapid adjustment of the arrow structure's angle and style. Locking the bolts securely locks the side light strip assemblies to the positioning plate, ensuring high reliability of the arrow structure. Therefore, this multi-scenario portable mobile signal light not only meets the need to adjust the arrow's angle and style but also makes arrow structure adjustment very convenient and ensures high stability after adjustment. It easily meets the needs of various scenarios, solving considerable user problems. Therefore, this multi-scenario portable mobile signal light has advantages such as simple structure, low manufacturing difficulty, high manufacturing efficiency, low manufacturing cost, high reliability, convenient adjustment, and wide applicability. Attached Figure Description

[0018] Figure 1 This is one of the structural schematic diagrams of the multi-scenario portable mobile signal light of this utility model.

[0019] Figure 2 This is the second structural schematic diagram of the multi-scenario portable mobile signal light of this utility model. Detailed Implementation

[0020] like Figure 1 and Figure 2As shown, the present invention provides a multi-scene portable mobile signal light, comprising a positioning plate 1, a main light strip assembly 2, and two side light strip assemblies 3. At least one locking bolt 4, capable of sliding along its length, is slidably embedded in each of the two side light strip assemblies 3. The main light strip assembly 2 is positioned in the middle of the positioning plate 1. The locking bolts 4 on the two side light strip assemblies 3 are slidably and rotatably inserted into the positioning plate 1, locking the side light strip assemblies 3 to the positioning plate 1. The two side light strip assemblies 3 are located on opposite ends of the main light strip assembly 2, and the main light strip assembly 2 and the two side light strip assemblies 3 together form an arrowhead structure 5. Both the main light strip assembly 2 and the two side light strip assemblies 3 emit strip-shaped light, and the strip-shaped light emitted by the main light strip assembly 2 and the two side light strip assemblies 3 together form an arrowhead shape.

[0021] This multi-scenario portable mobile signal light uses a positioning plate 1, a main light strip assembly 2, and two side light strip assemblies 3. Locking bolts 4 position the side light strip assemblies 3 on the positioning plate 1, and the locking bolts 4 can slide on both the side light strip assemblies 3 and the positioning plate 1 before locking. The main light strip assembly 2 and the two side light strip assemblies 3 together form an arrow structure 5. This not only simplifies the overall structure but also allows for quick adjustment of the position and angle of the side light strip assemblies 3 by loosening the locking bolts 4, thus enabling rapid adjustment of the angle and style of the arrow structure 5. Locking the locking bolts 4 stably locks the side light strip assemblies 3 onto the positioning plate 1, ensuring high reliability of the arrow structure 5. Therefore, this multi-scenario portable mobile signal light not only meets the needs of adjusting the arrow angle and style but also makes arrow structure adjustment very convenient and ensures high stability after adjustment, easily meeting the needs of various scenarios and solving considerable user problems. Therefore, this multi-scenario portable mobile signal light has the advantages of simple structure, low manufacturing difficulty, high manufacturing efficiency, low manufacturing cost, high reliability, convenient adjustment, and multiple applicable scenarios.

[0022] like Figure 1 As shown, both the main light strip assembly 2 and the two side light strip assemblies 3 are LED light strip assemblies with protective shells (waterproof and dustproof). The light-transmitting parts of the protective shell are made of high-transmittance PC material, while the rest is made of aluminum alloy, thus achieving flame-retardant, waterproof, and dustproof effects. The LEDs use high-brightness LED beads, with a visibility distance of over 500 meters. The main light strip assembly 2 and the two side light strip assemblies 3 can use strong light strobe for enhanced visibility. This results in extremely stable and reliable performance, better meeting the needs of outdoor use and significantly improving road traffic safety.

[0023] like Figure 1 and Figure 2As shown, the main light strip assembly 2 and the two side light strip assemblies 3 are all located on the front of the positioning plate 1, and a large suction cup 6 is provided on the back of the positioning plate 1. This not only makes the distribution of the main light strip assembly 2 and the two side light strip assemblies 3 more reasonable, but also allows for quick installation and positioning using the large suction cup 6, and is also relatively convenient to install and remove. This helps to further improve the convenience of using this multi-scenario portable mobile signal light.

[0024] like Figure 2 As shown, a pull tab 61 is provided on the outer side of the large suction cup 6. This allows the large suction cup 6 to be quickly detached from the suction position by pulling the pull tab 61, thereby further improving the convenience of disassembly.

[0025] like Figure 1 and Figure 2 As shown, one end of the main light strip assembly 2 is attached to the positioning plate 1, and a small suction cup 7 is provided on the back of the other end of the main light strip assembly 2. This not only simplifies the overall structure but also achieves more effective installation and positioning, thereby further improving the stability and reliability of installation and positioning.

[0026] Both the small suction cup 7 and the large suction cup 6 are made of rubber, which improves durability and ensures stable adhesion.

[0027] like Figure 1 and Figure 2 As shown, the positioning plate 1 has a through arc-shaped hole 11, and the locking bolt 4 is slidably and rotatably inserted through the arc-shaped hole 11. The arc-shaped hole 11 not only helps to accurately and stably limit the locking bolt 4, but also meets the adjustment requirements, thereby helping to further improve the applicability of this multi-scenario portable mobile signal light.

[0028] like Figure 2 As shown, two locking bolts 4 are slidably fitted onto the side light strip assembly 3, allowing them to slide along its length. The positioning plate 1 has arc-shaped holes 11 with the same bending direction for each of the two locking bolts 4 on a single side light strip assembly 3. The two locking bolts 4 pass through the two arc-shaped holes 11. This ensures a stable and reliable installation and positioning of the side light strip assembly 3 while maintaining a simple overall structure, thereby contributing to further improving the reliability of this multi-scenario portable mobile signal light.

[0029] like Figure 1 and Figure 2As shown, the positioning plate 1 is fan-shaped, with one end of the main light strip assembly 2 overlapping the middle of the positioning plate 1, and the other end of the main light strip assembly 2 located outside the outer arc edge of the positioning plate 1; two side light strip assemblies 3 are located at both ends of the positioning plate 1, and the inner arc-shaped hole walls of each arc-shaped hole 11 are close to the inner arc edge of the positioning plate 1. This not only gives the multi-scene portable mobile signal light a very coordinated structure, but also enhances the indicating effect of the arrow structure 5, thereby helping to further improve the applicability of the multi-scene portable mobile signal light.

[0030] like Figure 2 As shown, the positioning plate 1 has a total of four arc-shaped holes 11 with the same arc-shaped bending direction on the locking bolts 4 corresponding to the two side light strip assemblies 3. Two of the arc-shaped holes 11 are arranged side by side along the length of the main light strip assembly 2 on the positioning plate 1 on one side of the main light strip assembly 2; the other two arc-shaped holes 11 are arranged side by side along the length of the main light strip assembly 2 on the positioning plate 1 on the other side of the main light strip assembly 2. This makes the adjustment of the arrow structure 5 more convenient, accurate and stable, thereby helping to further improve the applicability of this multi-scenario portable mobile signal light.

[0031] like Figure 2 As shown, the side light strip assembly 3 has a first T-shaped groove 31 extending along its length, and one end of the locking bolt 4 is slidably fitted into the first T-shaped groove 31. This not only makes the assembly of the locking bolt 4 and the side light strip assembly 3 more stable and reliable, but also makes adjustment very convenient and stable, thereby helping to further improve the applicability of this multi-scenario portable mobile signal light.

[0032] like Figure 2 As shown, the nut end of the locking bolt 4 is slidably embedded in the inner groove of the first T-slot 31, and the inner groove wall of the first T-slot 31 restricts the rotation of the nut end of the locking bolt 4 (the width of the inner groove of the first T-slot 31 just meets the sliding requirement of the nut end, but cannot meet the rotation requirement of the nut end). The screw 41 of the locking bolt 4 is slidably and relatively rotatably inserted into the arc-shaped hole 11, and the nut 42 of the locking bolt 4 is located on the back of the positioning plate 1. This not only allows for quick adjustment by loosening the nut 42, but also makes locking the locking bolt 4 very convenient and stable, thus perfectly meeting the needs of practical use.

[0033] like Figure 2 As shown, the two side light strip assemblies 3 are respectively connected to the main light strip assembly 2 via wires 8. The main light strip assembly 2 is provided with a button assembly 9 for switching the main light strip assembly 2 and the two side light strip assemblies 3 on and off. This facilitates quick switching, thereby further improving ease of use. The button assembly 9 can also be made into a button assembly with a mode selection function, which can better meet a wider range of usage needs.

[0034] like Figure 2 As shown, the main light strip assembly 2 is a rechargeable light strip assembly. A charging port 10 is provided on the side wall of the main light strip assembly 2, and a soft rubber cover 20 is placed on the charging port 10. This not only meets the charging needs, but also prevents rainwater from entering through the charging port 10 and affecting the performance of the portable mobile signal light in various scenarios when used outdoors.

[0035] The main light strip assembly 2 and the two side light strip assemblies 3 can each be equipped with a battery, or a battery can be installed only on the main light strip assembly 2. The battery capacity is 10400mAh, providing a battery life of 12 hours. The charging port 10 can be a DC 5.5mm type, and the charging voltage can be set to DC 12-24V / 220V. The length, width, and thickness of the multi-scene portable mobile signal light can be 35CM, 20CM, and 4.2CM, respectively. The lighting modes of the main light strip assembly 2 and the two side light strip assemblies 3 can be set to flowing light or strobe. The flowing light can be set to different styles as needed. This is only an introduction to several implementation methods of this utility model and is not a limitation on the implementation methods of this utility model. Other implementation methods without departing from the inventive concept of this utility model are all within the protection scope of this utility model.

[0036] like Figure 2 As shown, the soft rubber cover 20 is connected to the charging port 10 via a soft rubber strip 30. This not only meets the requirements for opening and closing the soft rubber cover 20, but also prevents the soft rubber cover 20 from being lost.

[0037] like Figure 2 As shown, the main light strip assembly 2 has a second T-shaped groove 21 extending along its length. At least one positioning bolt 22 is slidably embedded in the second T-shaped groove 21, and the positioning bolt 22 passes through the positioning plate 1, allowing the main light strip assembly 2 to be locked onto the positioning plate 1 by the positioning bolt 22. This meets the requirement of adjusting the position of the main light strip assembly 2, thereby facilitating more adjustments and meeting more usage needs. This helps to further improve the applicability of this multi-scenario portable mobile signal light.

[0038] like Figure 2As shown, the positioning plate 1 has a strip-shaped hole 12 in the same direction as the length of the second T-slot 21. The nut end of the positioning bolt 22 is slidably embedded in the inner groove of the second T-slot 21, and the inner groove wall of the second T-slot 21 restricts the rotation of the nut end of the positioning bolt 22 (the width of the inner groove of the second T-slot 21 just meets the sliding requirement of the nut end, but not the rotation requirement). The screw of the positioning bolt 22 is slidably and relatively rotatably inserted through the strip-shaped hole 12, and the nut of the positioning bolt 22 is located on the back of the positioning plate 1. This not only allows for quick adjustment by loosening the nut, but also makes locking the positioning bolt 22 very convenient and stable, thus perfectly meeting the needs of practical use.

[0039] This multi-scenario portable mobile traffic light can be directly attached to engineering rescue vehicles, garbage collection trucks, water spraying and cleaning trucks, equipment repair vehicles, road sweepers, sewage suction and purification trucks, and road administration vehicles via suction cups. It can also be applied to highway guardrails, general guardrails, construction vehicles, and traffic cones, effectively meeting the needs of various environments. As a traffic management tool, this multi-scenario portable mobile traffic light is of great significance in ensuring road traffic safety and smooth flow. The development and application of this multi-scenario portable mobile traffic light has important practical significance in order to guide traffic in a timely and effective manner, ensure the personal safety of road workers, and maintain orderly traffic flow.

[0040] The above embodiments are preferred embodiments of this utility model. All structures similar to this utility model and equivalent changes thereof should fall within the protection scope of this utility model.

Claims

1. A multi-scenario portable mobile signal light, characterized in that: The application relates to a positioning plate (1), a main light bar assembly (2) and two side light bar assemblies (3), at least one locking bolt (4) capable of sliding along the length direction is slidably embedded on the two side light bar assemblies (3), the main light bar assembly (2) is arranged on the middle part of the positioning plate (1), the locking bolt (4) on the two side light bar assemblies (3) can be slidably and rotatably arranged on the positioning plate (1), and the side light bar assembly (3) can be locked on the positioning plate (1) by the locking bolt (4); the two side light bar assemblies (3) are respectively arranged on the two sides of the end part of the main light bar assembly (2); and the main light bar assembly (2) and the two side light bar assemblies (3) can jointly form an arrow structure (5).

2. The multi-scene portable mobile signal light according to claim 1, wherein: The main light bar assembly (2) and the two side light bar assemblies (3) are arranged on the front surface of the positioning plate (1), and a large suction disc (6) is arranged on the back surface of the positioning plate (1).

3. The multi-scene portable mobile signal light according to claim 2, wherein: One end of the main light bar assembly (2) is overlapped on the positioning plate (1), and a small suction disc (7) is arranged on the back surface of the other end of the main light bar assembly (2).

4. The multi-scene portable mobile signal light according to claim 1, wherein: Arc-shaped holes (11) are formed on the positioning plate (1), and the locking bolt (4) can be slidably and rotatably arranged in the arc-shaped holes (11).

5. The multi-scene portable mobile signal light according to claim 4, wherein: Two locking bolts (4) capable of sliding along the length direction are slidably embedded on the side light bar assembly (3), and arc-shaped holes (11) with the same arc-shaped bending direction are respectively formed on the positioning plate (1) corresponding to the two locking bolts (4) on the single side light bar assembly (3); the two locking bolts (4) are respectively arranged in the two arc-shaped holes (11).

6. The multi-scene portable mobile signal light according to claim 5, wherein: The positioning plate (1) is in a fan shape, one end of the main light bar assembly (2) is overlapped on the middle part of the positioning plate (1), the other end of the main light bar assembly (2) is located outside the outer arc edge of the positioning plate (1), and the two side light bar assemblies (3) are respectively arranged on the two ends of the positioning plate (1); the inner arc-shaped hole walls of the arc-shaped holes (11) are close to the inner arc edge of the positioning plate (1).

7. The multi-scene portable mobile signal light according to claim 1, wherein: A first T-shaped groove (31) extending along the length direction is formed on the side light bar assembly (3), and one end of the locking bolt (4) is slidably embedded in the first T-shaped groove (31).

8. The multi-scene portable mobile signal light of claim 1, wherein: The two side light bar assemblies (3) are connected to the main light bar assembly (2) through wires (8), and a button assembly (9) for turning on and off the main light bar assembly (2) and the two side light bar assemblies (3) is arranged on the main light bar assembly (2).

9. The multi-scene portable mobile signal light according to claim 1 or 8, wherein: The main light bar assembly (2) is a chargeable light bar assembly, a charging port (10) is arranged on the side wall of the main light bar assembly (2), and a soft rubber cover (20) is arranged on the charging port (10).

10. The multi-scene portable mobile signal light of claim 1, wherein: A second T-shaped groove (21) extending along the length direction is formed on the main light bar assembly (2), at least one positioning bolt (22) is slidably embedded in the second T-shaped groove (21), the positioning bolt (22) is arranged in the positioning plate (1), the main light bar assembly (2) can be locked on the positioning plate (1) by the positioning bolt (22), and the main light bar assembly (2) can be locked on the positioning plate (1) by the positioning bolt (22).