Intelligent life support device for slope and excavation construction
The intelligent life support device for slope and excavation construction, which utilizes positive pressure respirators and a real-time monitoring and positioning system, solves the problem of personnel safety during slope and ditch excavation operations, and achieves effective protection and accurate rescue in emergency situations.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-28
- Publication Date
- 2026-03-17
AI Technical Summary
During infrastructure construction, the safety of personnel is difficult to guarantee in the event of collapse or landslide accidents when slope and ditch excavation work is carried out, and timely and accurate rescue is impossible.
Design an intelligent life support device for slope and excavation construction, including a positive pressure respirator, an energy storage device, an image monitoring module, an audible and visual alarm, a GPS positioning module, and a signal amplifier. It is fixedly connected to the helmet to achieve real-time monitoring and positioning, and provide breathing support and early warning functions.
In the event of a landslide or emergency, it protects the breathing safety of workers, reduces impact injuries, and provides real-time early warning and accurate positioning to ensure rapid rescue.
Smart Images

Figure CN223995266U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of protective equipment technology, and relates to an intelligent life support device for slope and excavation construction. Background Technology
[0002] Slope protection and ditch excavation are important production activities in infrastructure construction. Mechanized operations cannot completely replace manual labor. The connection, welding, hot melting, and fastening of some pipelines all require personnel to work in the ditch. At the same time, in domestic infrastructure construction, the repair of buried pipelines and foundation excavation, apart from effective support of the slope side, lack corresponding complete sets of emergency equipment with monitoring functions to ensure the safety of personnel at the bottom of wells or pits. In the event of a collapse or slope landslide, emergency rescue operations cannot be carried out because the specific location is unknown, which can easily lead to suffocation or injury to the workers working in the ditch or pipeline well. Summary of the Invention
[0003] The technical problem to be solved by this utility model is to provide an intelligent life support device for slope and excavation construction, which protects the lives of workers in the event of landslides or emergencies when workers wear helmets.
[0004] To solve the above-mentioned technical problems, the technical solution adopted by this utility model is: an intelligent life support device for slope and excavation construction, wherein a positive pressure respirator is fixedly connected to an energy storage device and a helmet, an image monitoring module, an audible and visual alarm, and a GPS positioning module are all connected to the helmet, a signal amplifier is fixedly connected to the helmet, and the signal amplifier is electrically connected to a computer.
[0005] The helmet and external backup breathing passage are connected to the carbon dioxide removal passage.
[0006] The image monitoring module, the audible and visual alarm, and the GPS positioning module are all electrically connected.
[0007] The image monitoring module, the audible and visual alarm, and the GPS positioning module are electrically connected to the energy storage device.
[0008] The signal amplifier is electrically connected to the image monitoring module and the GPS positioning module.
[0009] The signal amplifier is electrically connected to the energy storage device.
[0010] The computer receives the image monitoring module's feed transmitted back via a signal amplifier and provides real-time early warnings.
[0011] The main beneficial effects of this utility model are as follows:
[0012] The positive pressure breathing apparatus is connected to the energy storage device and the helmet. The helmet is worn by the workers to prevent them from suffocating due to collapse or emergency. At the same time, the helmet reduces the injury to the workers caused by impact and improves life protection.
[0013] In the event of a landslide or emergency, the image monitoring module uses a signal amplifier to enable the computer to receive real-time images and provide timely warnings and rescue operations.
[0014] The signal amplifier enables the computer to receive the real-time location data from the GPS positioning module, thereby determining the location of the workers and ensuring accurate rescue of them in the event of a landslide or emergency. Attached Figure Description
[0015] The present invention will be further described below with reference to the accompanying drawings and embodiments.
[0016] Figure 1 This is a schematic diagram of the structure of this utility model.
[0017] In the diagram: 1. Helmet; 2. Energy storage device; 3. Positive pressure respirator; 4. Image monitoring module; 5. Audible and visual alarm; 6. GPS positioning module; 7. Signal amplifier; 8. External backup breathing pathway; 9. Carbon dioxide removal channel; 10. Computer. Detailed Implementation
[0018] like Figure 1 In this invention, an intelligent life support device for slope and excavation construction is disclosed. A positive-pressure respirator 3 is fixedly connected to an energy storage device 2 and a helmet 1. An image monitoring module 4, an audible and visual alarm 5, and a GPS positioning module 6 are all connected to the helmet 1. A signal amplifier 7 is fixedly connected to the helmet 1 and electrically connected to a computer 10. During use, the helmet 1 reduces impact injuries to workers caused by landslides or emergencies, while the positive-pressure respirator 3 provides breathing support, thus ensuring the safety of the workers.
[0019] Furthermore, the helmet 1 and the external backup breathing passage 8 are connected to the carbon dioxide removal passage 9. When the main breathing passage fails, the external backup breathing passage 8 provides a breathing route for the worker and promptly removes exhaled carbon dioxide, providing dual protection for the worker's breathing.
[0020] Furthermore, the image monitoring module 4 is electrically connected to the audible and visual alarm 5 and the GPS positioning module 6. This enables information exchange and collaborative operation between the image monitoring module 4, the audible and visual alarm 5, and the GPS positioning module 6, allowing for rapid response in emergencies and improving the early warning capability for dangerous situations at the work site.
[0021] Furthermore, the image monitoring module 4, the audible and visual alarm 5, and the GPS positioning module 6 are electrically connected to the energy storage device 2. The energy storage device 2 enables the image monitoring module 4, the audible and visual alarm 5, and the GPS positioning module 6 to operate normally even without an external power source, improving the overall stability and continuity of the device.
[0022] Furthermore, the signal amplifier 7 is electrically connected to the image monitoring module 4 and the GPS positioning module 6. The signal amplifier 7 enhances the transmission signal between the image monitoring module 4 and the GPS positioning module 6, reducing signal loss and ensuring stable data transmission.
[0023] Furthermore, the signal amplifier 7 is electrically connected to the energy storage device 2. This ensures a stable power supply to the signal amplifier 7, guaranteeing the stability of the signal enhancement process and the effectiveness of the entire data transmission process.
[0024] Furthermore, the computer 10 receives the image from the image monitoring module 4 transmitted via the signal amplifier 7 and provides real-time early warnings. This allows for timely detection of anomalies at the work site and the implementation of countermeasures to reduce the risk of accidents.
[0025] The above embodiments are merely preferred technical solutions of this utility model and should not be considered as limitations on this utility model. The embodiments and features described in this application can be arbitrarily combined without conflict. The protection scope of this utility model should be defined as the technical solution described in the claims, including equivalent substitutions of the technical features described in the claims. That is, equivalent substitutions and improvements within this scope are also within the protection scope of this utility model.
Claims
1. A kind of intelligent life support device for slope and excavation construction, it is characterized by: The positive pressure respirator (3) is fixedly connected with the energy storage device (2) and the helmet body (1), the image monitoring module (4), the audible and light alarm (5) and the GPS positioning module (6) are connected with the helmet body (1), the signal amplifier (7) is fixedly connected with the helmet body (1), and the signal amplifier (7) is electrically connected with the computer (10).
2. The intelligent life support system for slope and excavation construction according to claim 1, characterized in that: The helmet body (1) and the external spare breathing passage (8) are connected with the carbon dioxide removal channel (9).
3. The intelligent life support system for slope and excavation construction according to claim 1, characterized in that: The image monitoring module (4), the audible and light alarm (5) and the GPS positioning module (6) are electrically connected.
4. The intelligent life support system for slopes and excavations according to claim 1, characterized in that: The image monitoring module (4), the audible and light alarm (5) and the GPS positioning module (6) are electrically connected with the energy storage device (2).
5. The intelligent life support system for slopes and excavations according to claim 1, characterized in that: The signal amplifier (7) is electrically connected with the image monitoring module (4) and the GPS positioning module (6).
6. The intelligent life support system for slopes and excavations according to claim 1, characterized in that: The signal amplifier (7) is electrically connected with the energy storage device (2).
7. The intelligent life support system for slopes and excavations according to claim 1, characterized in that: The computer (10) receives the image monitoring module (4) picture returned through the signal amplifier (7) to carry out real-time early warning.