A multipurpose triangular warning sign device integrated with emergency functions

CN224796879UActive Publication Date: 2026-09-25HANGZHOU BORONG SCIENCE & TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202522699967.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-12-19
Publication Date
2026-09-25
Estimated Expiration
2035-12-19

AI Technical Summary

Technical Problem

然而,传统三角警示牌功能单一,仅有被动反光警示作用,且在强风或车辆高速通过时易倾倒,导致警示失效

Benefits of technology

[0011]1)本实用新型的机器人腔体采用分层布局,上层集成充气模块,中层设减震缓冲结构,下层集成控制部件和下层元件供电电池,兼作配重,这种分层布局既实现了元件防护提升抗振性能,又降低重心增强了三角架的放置稳定性。

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to a multipurpose triangular warning stand device of integrated emergency function, include: tripod and robot cavity. The utility model has the beneficial effect that: robot cavity adopts the layered layout, the upper layer integrates the inflation module, the middle layer is equipped with damping buffer structure, the lower layer integrates control part and lower layer element power supply battery, and it is used as counterweight, and this layered layout realizes element protection and enhances anti -vibration performance, and reduces gravity and enhances the placing stability of triangular stand, simultaneously, the inflation pump containing air pressure monitoring unit, LED stroboscopic lamp, loudspeaker, these emergency components make the emergency rescue ability more perfect, the triangular stand is formed by three connecting rods and bolt articulation, is connected with the bottom of tripod through tripod fixed buckle, the tripod can be outwardly unfolded and present triangular support state or be inwardly gathered and present folding state, the tripod can be disassembled through buckle design, and the folding and use are convenient through buckle and foldable triangular stand.
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Description

Technical Field

[0001] This utility model relates to the field of automotive safety equipment technology, and in particular to a multi-purpose triangular warning bracket device with integrated emergency functions. Background Technology

[0002] When a vehicle breaks down or is involved in an accident on the road, regulations require that a warning triangle be placed at a specific distance behind the vehicle to warn oncoming traffic. However, traditional warning triangles have a limited function, providing only passive reflective warnings, and are prone to tipping over in strong winds or when vehicles pass at high speeds, rendering them ineffective.

[0003] Drivers often face multiple challenges in emergency situations: they need to place warning signs, check vehicle conditions, and operate in hazardous environments. This entire process exposes drivers to risks. While some improved warning triangles with added LED lights exist, they fail to fundamentally address the issues of limited functionality, insufficient stability, and high personnel safety risks. Therefore, there is an urgent need for a highly integrated, stable, and remotely operable multifunctional emergency device to maximize personnel safety. Utility Model Content

[0004] The purpose of this invention is to overcome the shortcomings of the existing technology and provide a multi-purpose triangular warning frame device that integrates emergency functions.

[0005] This multi-purpose triangular warning device with integrated emergency functions includes: a tripod and a robot cavity; the top of the robot cavity is equipped with a tripod fixing buckle, and the tripod is secured to the top of the robot cavity by the tripod fixing buckle; the robot cavity consists of an outer shell base plate and a robot shell, and the inside of the robot cavity is divided into three layers: upper, middle and lower, by a structural layer partition plate; the upper robot cavity is equipped with an air pump and an air pump power supply battery, and the air pump is connected to an air inflation tube, which extends out of the robot cavity and is secured to the outside of the robot cavity; the middle robot cavity is equipped with a shock absorption and buffer device; the outer shell base plate is located at the bottom of the lower robot cavity, and the outer shell base plate is equipped with a motor, a lower-layer component power supply battery for powering the lower-layer components, and a robot control board for controlling the robot, and the motor is connected to a walking wheel; the bottom of the outer shell base plate is equipped with casters.

[0006] As a preferred option, the tripod consists of three connecting rods hinged together with bolts, with reflective strips attached to the side walls of the connecting rods, and an LED strobe light fixed to the top of the tripod.

[0007] Preferably, a waterproof display screen and a tweeter are fixed to the top of the robot shell, and the upper surface of the waterproof display screen is equipped with screen buttons; the robot shell is affixed with reflective strips.

[0008] Preferably, the robot shell is fixed with an air pump tube fixing nozzle, and the inflation tube is secured to the outside of the robot shell through the air pump tube fixing nozzle. The robot shell located outside the upper robot cavity is provided with an air pump battery charging port; the inflation pump contains an air pressure monitoring unit for monitoring the inflation air pressure.

[0009] Preferably, the robot shell located around the lower robot cavity is fitted with and fixed with a camera, an LCD screen and an ultrasonic module; a neon light is fixed to the bottom of the shell's base plate.

[0010] The beneficial effects of this utility model are:

[0011] 1) The robot cavity of this utility model adopts a layered layout. The upper layer integrates an inflation module, the middle layer is equipped with a shock-absorbing and buffering structure, and the lower layer integrates control components and a power supply battery for the lower layer components, which also serves as a counterweight. This layered layout not only achieves component protection and improves vibration resistance, but also lowers the center of gravity and enhances the placement stability of the tripod.

[0012] 2) The tripod length and reflector of this utility model are designed to meet national standards, and the core warning function complies with the specifications; at the same time, it is equipped with an air pump with an air pressure monitoring unit, LED strobe light and horn, and these emergency components make the emergency rescue capability more complete.

[0013] 3) The tripod of this utility model is made of three connecting rods and bolts. It is connected to the bottom of the tripod by tripod fixing buckle. The tripod can be unfolded outward to a triangular support state or folded inward to a folded state. The buckle design makes the tripod detachable. The buckle and the foldable tripod realize the convenience of quick disassembly and carrying, making storage and use convenient. Attached Figure Description

[0014] Figure 1 This is a schematic diagram of the overall structure;

[0015] Figure 2 This is a schematic diagram of the middle and lower layers of the robot cavity;

[0016] Figure 3 This is a schematic diagram of the upper structure of the robot cavity;

[0017] Figure 4 This is a schematic diagram of the lower layer of the robot cavity from top view.

[0018] Figure 5 This is a schematic diagram of an air pump.

[0019] Explanation of reference numerals in the attached diagram: 1. LED strobe light; 2. Tripod; 3. Reflective strip; 4. Waterproof display screen; 5. Screen buttons; 6. High-frequency speaker; 7. Air pump hose fixing nozzle; 8. Inflation hose; 9. Camera; 10. LCD screen; 11. Ultrasonic module; 12. Casters; 13. Robot shell; 14. Tripod fixing buckle; 15. Shock absorption and buffer device; 16. Walking wheels; 17. Lower layer component power supply battery; 18. Motor; 19. Air pump; 20. Air pump power supply battery; 21. Air pump battery charging port; 22. Air pump hose external interface; 23. Neon light; 24. Structural layer partition plate; 25. Shell bottom plate; 26. Robot control board. Detailed Implementation

[0020] The present invention will be further described below with reference to embodiments. The description of the embodiments below is only for the purpose of helping to understand the present invention. It should be noted that, for those skilled in the art, several modifications can be made to the present invention without departing from the principle of the present invention, and these improvements and modifications also fall within the protection scope of the claims of the present invention.

[0021] As one embodiment, a multi-purpose triangular warning bracket device integrating emergency functions is proposed, such as... Figure 1-5 As shown, it includes: a tripod 2 and a robot cavity; the top of the robot cavity is equipped with a tripod fixing buckle 14, and the tripod 2 is fixed to the top of the robot cavity through the tripod fixing buckle 14. This quick-release structure allows the tripod 2 to be disassembled for easy carrying; the robot cavity is composed of an outer shell base plate 25 and a robot shell 13. The inside of the robot cavity is divided into three layers: upper, middle and lower, by a structural layer partition plate 24; the upper robot cavity is equipped with an air pump 19 and an air pump power supply battery 20 for powering the air pump 19. The air pump 19 is connected to an air inflation tube 8, which extends out of the robot cavity and is fixed to the outside of the robot cavity; the middle robot cavity is equipped with a shock absorption and buffer device 15 for buffering and dissipating external vibrations. The impact energy is effectively protected, fundamentally protecting all components inside the robot cavity from damage and improving overall vibration resistance. The outer shell base plate 25 is located at the bottom of the lower robot cavity. The outer shell base plate 25 is fixed with a motor 18, a lower component power supply battery 17 for powering the lower component, and a robot control board 26 for controlling the robot. The motor 18 is connected to a walking wheel 16. The bottom of the outer shell base plate 25 is equipped with a universal wheel 12. Specifically, the robot cavity adopts a layered layout. The upper layer integrates an inflation module, the middle layer is equipped with a shock absorption and buffer device 15, and the lower layer integrates control components and the lower component power supply battery 17, which also serves as a counterweight. This layered layout not only achieves component protection and improves vibration resistance, but also lowers the center of gravity and enhances the placement stability of the tripod 2.

[0022] like Figure 1 and Figure 2As shown, tripod 2 consists of three 43cm long connecting rods connected by bolts. Reflective strips 3 are attached to the side walls of the connecting rods. An LED strobe light 1 is fixed to the top of tripod 2. The LED strobe light 1 has multiple flashing modes. When using tripod 2, lift the connecting rods upwards until it unfolds, forming a stable triangular support. When storing, unfasten the tripod fixing buckle 14 and rotate the connecting rods inward to complete the folding, making it easy to take out and put away.

[0023] A waterproof display screen 4 and a loudspeaker 6 are fixed to the top of the robot shell 13. The loudspeaker 6 is used to sound a horn or play pre-stored voice messages. The upper surface of the waterproof display screen 4 is equipped with screen buttons 5, which are used to control the air pump 19, the LED strobe light 1, the loudspeaker 6, and the robot's power-on and power-off status. The robot shell 13 is affixed with reflective strips 3. The robot shell 13 located around the lower robot cavity is fitted with and fixed with a camera 9, an LCD screen 10, and an ultrasonic module 11. The camera 9 is used to capture the environmental image in front of the vehicle, and the ultrasonic module 11 is used for obstacle avoidance and following. A neon light 23 is fixed to the bottom of the shell base plate 25 to make the robot more visible at night. The robot control board 26 integrates a wireless communication unit. The LED strobe light 1 and the loudspeaker 6 together form a warning module.

[0024] like Figure 2-5 As shown, the robot shell 13 has an external air pump pipe interface 22, through which the inflation pipe 8 passes. The robot shell 13 is fixed with an air pump pipe fixing nozzle 7. The inflation pipe 8 is secured to the outside of the robot shell 13 via the air pump pipe fixing nozzle 7. When inflating the tires, the user simply pulls the inflation pipe 8 out from the air pump pipe fixing nozzle 7; no additional equipment is required. The robot shell 13, located outside the upper robot cavity, has an air pump battery charging port 21; the air pump 19... The tire inflation pump 19 includes a pressure monitoring unit for monitoring inflation pressure. The pump includes a pump motor, an eccentric wheel mechanism, and an inflation / deflation chamber. After the pump motor is powered by the power supply battery 20, it drives the eccentric wheel mechanism to reciprocate, drawing in and deflating air from the inflation / deflation chamber. This allows the pump to continuously draw in air and continuously deflate the inflation tube 8, thus inflating the tire. When the pressure monitoring unit detects that the pressure has reached the preset target value, it controls the motor to stop, causing the pump to stop working.

Claims

1. A multi-purpose triangular warning frame device integrating emergency functions, characterized in that, include: Tripod and robot cavity; the top of the robot cavity is equipped with a tripod fixing buckle, and the tripod is secured to the top of the robot cavity by the tripod fixing buckle; the robot cavity consists of an outer shell base plate and a robot shell, and the inside of the robot cavity is divided into three layers: upper, middle and lower, by a structural layer partition plate; the upper robot cavity is equipped with an air pump and an air pump power supply battery, and the air pump is connected to an air inflation tube, which extends out of the robot cavity and is secured to the outside of the robot cavity; the middle robot cavity is equipped with a shock absorption and buffer device; the outer shell base plate is located at the bottom of the lower robot cavity, and the outer shell base plate is equipped with a motor, a lower-layer component power supply battery for powering the lower-layer components, and a robot control board for controlling the robot, and the motor is connected to a walking wheel; the bottom of the outer shell base plate is equipped with casters.

2. The multi-purpose triangular warning frame device with integrated emergency function according to claim 1, characterized in that, The tripod consists of three connecting rods hinged together with bolts. Reflective strips are attached to the side walls of the connecting rods, and an LED strobe light is fixed to the top of the tripod.

3. The multi-purpose triangular warning frame device with integrated emergency functions according to claim 1, characterized in that, A waterproof display screen and a tweeter are fixed to the top of the robot's shell, and the upper surface of the waterproof display screen has screen buttons; the robot's shell is covered with reflective strips.

4. The multi-purpose triangular warning frame device with integrated emergency function according to claim 1, characterized in that, The robot shell is fixed with an air pump tube fixing nozzle. The inflation tube is secured to the outside of the robot shell through the air pump tube fixing nozzle. The robot shell located on the outer periphery of the upper robot cavity is equipped with an air pump battery charging port. The inflation pump contains an air pressure monitoring unit for monitoring inflation air pressure.

5. The multi-purpose triangular warning frame device with integrated emergency function according to claim 1, characterized in that, The robot shell, located around the lower robot cavity, is fitted with and fixed with a camera, LCD screen, and ultrasonic module; a neon light is fixed to the bottom of the shell's base plate.