Fireproof heat insulation system of intelligent rescue equipment

By coating the nanofire-resistant coating and carbon fiber board splicing sides of the rescue cabin, wire rope and cable of the fire rescue equipment, the problem of insufficient fire protection and thermal insulation performance of the fire rescue equipment in the fire environment is solved, and the normal operation of the equipment and personnel safety are achieved.

CN223150015UActive Publication Date: 2025-07-25GUANGZHOU YATU NEW ENERGY TECH CO LTD
View PDF 1 Cites 0 Cited by

Patent Information

Application Number
CN202422447051.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-10
Publication Date
2025-07-25
Estimated Expiration
2034-10-10

AI Technical Summary

Technical Problem

Existing fire rescue equipment has insufficient fire protection and thermal insulation performance in fire environments, resulting in safety hazards.

Method used

The surface of the rescue cabin, lifting wire rope, guide wire rope and accompanying cable are coated with nanofire-resistant coating, and the cable is wrapped with high-temperature anti-temperature belt, and stainless steel plates and carbon fiber boards are used to splice the sides of the rescue cabin to improve fire and thermal insulation performance.

Benefits of technology

It improves the fire protection and thermal insulation performance of rescue equipment in fire environments to ensure the normal operation of the equipment and the safety of personnel.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223150015U_ABST
    Figure CN223150015U_ABST
Patent Text Reader

Abstract

A fireproof heat insulation system of intelligent rescue equipment comprises a rescue cabin, a lifting steel wire rope used for lifting the rescue cabin, a guiding steel wire rope used for guiding the rescue cabin and a traveling cable connected into the rescue cabin. The side face of the rescue cabin is spliced through fireproof side plates, a first fireproof coating is arranged on the outer surface of the lifting steel wire rope, a second fireproof coating is arranged on the outer surface of the guiding steel wire rope, and a third fireproof coating is arranged on the outer surface of the traveling cable. The principle of the utility model is as follows: when the intelligent rescue equipment performs a rescue task in case of fire, the ambient temperature of the periphery of a fire source is very high, and even open fire occurs, which has higher requirements on the fire prevention and heat insulation performance of the rescue equipment, and fire prevention and heat insulation measures are taken for a rescue cabin, a lifting steel wire rope, a guide steel wire rope and a traveling cable; therefore, normal operation of rescue equipment and safety of personnel in the rescue cabin are guaranteed.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The utility model relates to the technical field of fire fighting, in particular to a fireproof and heat-insulating system for intelligent rescue equipment. Background Art

[0002] To improve the efficiency of fire fighting and rescue, a fire fighting and rescue system is provided on the roof of a building. For example, a rescue cabin for the safe transfer of people during a high-rise building fire with the Chinese patent publication number CN116236712A includes a rescue cabin, a lifting component, and a control system. The rescue cabin is used to transfer people; the lifting component is installed on the outer wall of the building and is used to tow the rescue cabin to lift and lower along the outer wall of the building. The rescue cabin, the lifting component, and the control system are communicatively connected. In order to prevent the rescue cabin from being affected by the spread of fire to the outer wall of the building during the descent process, during the process of the rescue cabin carrying trapped people and descending, the high temperature generated by the fire can cause high-temperature burns to the people inside the rescue cabin. A layer structure for protection is sequentially arranged from the outside to the inside on the inner wall of the cabin body of the rescue cabin, including a fireproof coating on the outermost layer. The fireproof coating is a steel structure fireproof coating brushed on the outer wall of the cabin to improve the fire resistance of the rescue cabin. The rescue cabin of the above rescue system operates outside the building. When escaping from a fire, the rescue cabin, the steel wire rope, and the accompanying cable may all be affected by the fire. If no fireproof treatment is carried out on them, there are relatively large potential safety hazards. Summary of the Invention

[0003] The technical problem to be solved by the utility model is to provide a fireproof and heat-insulating system for intelligent rescue equipment, which can improve the fireproof ability of the equipment and reduce potential safety hazards.

[0004] To solve the above technical problem, the technical solution of the utility model is: a fireproof and heat-insulating system for intelligent rescue equipment, including a rescue cabin, a lifting steel wire rope for lifting the rescue cabin, a guiding steel wire rope for guiding the rescue cabin, and an accompanying cable connected to the inside of the rescue cabin; the side of the rescue cabin is spliced with fireproof side plates, the outer surface of the lifting steel wire rope is provided with a first fireproof coating, the outer surface of the guiding steel wire rope is provided with a second fireproof coating, and the outer surface of the accompanying cable is provided with a third fireproof coating. The principle of the utility model: When the intelligent rescue equipment performs a rescue task in case of a fire, the ambient temperature around the fire source is very high, and even open flames may appear. This places high requirements on the fireproof and heat-insulating performance of the rescue equipment. Fireproof and heat-insulating measures are taken for the rescue cabin, the lifting steel wire rope, the guiding steel wire rope, and the accompanying cable to ensure the normal operation of the rescue equipment and the safety of the people inside the rescue cabin.

[0005] As an improvement, the rescue cabin is arranged outside the outer wall of the building. There is a main machine base on the top of the building. One end of the main machine base is fixed on the building, and the other end of the main machine base extends outside the building. An elevating motor for winding and unwinding the elevating steel wire rope is arranged on the main machine base. One end of the guiding steel wire rope is fixed on the main machine base, and the other end of the guiding steel wire rope passes through the rescue cabin and is connected to the ground. One end of the trailing cable is connected to the electrical cabinet arranged on the main machine base.

[0006] As an improvement, the fireproof side plate includes a stainless steel plate arranged on the inner wall and a carbon fiber plate arranged on the outer wall. A nano fireproof coating is arranged on the outer side and / or the inner side of the carbon fiber plate.

[0007] As an improvement, the first fireproof coating, the second fireproof coating and the third fireproof coating are all nano fireproof coatings.

[0008] As an improvement, a layer of high-temperature resistant tape is wrapped around the third fireproof coating.

[0009] The beneficial effects brought by the present utility model compared with the prior art are as follows:

[0010] When the intelligent rescue equipment performs rescue tasks in case of a fire, the ambient temperature around the fire source is very high, and even open flames may appear. This poses high requirements for the fireproof and heat insulation performance of the rescue equipment. Fireproof and heat insulation measures are taken for the rescue cabin, the elevating steel wire rope, the guiding steel wire rope and the trailing cable to ensure the normal operation of the rescue equipment and the safety of the personnel in the rescue cabin. BRIEF DESCRIPTION OF THE DRAWINGS

[0011] Figure 1 It is a schematic diagram of an intelligent rescue system.

[0012] Figure 2 is Figure 1 An enlarged view of part A of DETAILED DESCRIPTION OF THE EMBODIMENTS

[0013] The present utility model will be further described below in conjunction with the drawings in the specification.

[0014] As shown in Figure 1 , an intelligent rescue equipment fireproof and heat insulation system includes a rescue cabin 8, an elevating steel wire rope 7 for lifting the rescue cabin 8, a guiding steel wire rope 6 for guiding the rescue cabin 8, and a trailing cable 5 connected to the inside of the rescue cabin 8. The rescue cabin 8 is arranged outside the outer wall of the building 1. There is a main machine base 2 on the top of the building 1. One end of the main machine base 2 is fixed on the building 1, and the other end of the main machine base 2 extends outside the building 1. An elevating motor 4 for winding and unwinding the elevating steel wire rope 7 is arranged on the main machine base 2. One end of the guiding steel wire rope 6 is fixed on the main machine base 2, and the other end of the guiding steel wire rope 6 passes through the rescue cabin 8 and is connected to the ground. One end of the trailing cable 5 is connected to the electrical cabinet 3 arranged on the main machine base 2.

[0015] like Figure 2 As shown, the sides of the rescue cabin 8 are spliced with fireproof side panels 81, and the fireproof side panels 81 include a stainless steel plate 812 arranged on the inner wall and a carbon fiber plate 811 arranged on the outer wall. The outer side and / or inner side of the carbon fiber plate 811 is provided with a nano fireproof coating to prevent the temperature of the metal plate on the inner wall of the rescue cabin 8 from rising and causing the temperature inside the cabin to be too high.

[0016] The lifting wire rope 7 is provided with a first fireproof coating on its surface, the guide wire rope 6 is provided with a second fireproof coating on its surface, and the accompanying cable 5 is provided with a third fireproof coating on its surface. The first fireproof coating, the second fireproof coating and the third fireproof coating are all nano fireproof coatings. The third fireproof coating is wrapped with a layer of high temperature protection tape to protect the accompanying cable 5.

[0017] Principle of the utility model: When the intelligent rescue equipment is performing rescue tasks in the event of a fire, the ambient temperature outside the fire source is very high, and even open flames may appear. This places high demands on the fire prevention and heat insulation performance of the rescue equipment. Fire prevention and heat insulation measures are taken for the rescue cabin 8, lifting wire rope 7, guide wire rope 6 and accompanying cable 5 to ensure the normal operation of the rescue equipment and the safety of the personnel in the rescue cabin 8.

Claims

1. An intelligent rescue equipment fireproof and heat insulation system, comprising a rescue cabin, a lifting steel wire rope for lifting the rescue cabin, a guiding steel wire rope for guiding the rescue cabin, and a trailing cable connected to the inside of the rescue cabin; characterized in that: The side of the rescue cabin is spliced with fireproof side plates. The outer surface of the lifting wire rope is provided with a first fireproof coating, the outer surface of the guiding wire rope is provided with a second fireproof coating, and the outer surface of the trailing cable is provided with a third fireproof coating.

2. The fireproof and heat-insulating system of an intelligent rescue device according to claim 1, characterized in that: The rescue cabin is arranged outside the outer wall of the building. There is a main machine base on the roof of the building. One end of the main machine base is fixed to the building, and the other end of the main machine base extends outside the building. An elevating motor for winding and unwinding the lifting wire rope is arranged on the main machine base. One end of the guiding wire rope is fixed to the main machine base, and the other end of the guiding wire rope passes through the rescue cabin and is connected to the ground. One end of the trailing cable is connected to an electrical cabinet arranged on the main machine base.

3. The fireproof and heat-insulating system of an intelligent rescue device according to claim 1, wherein: The fireproof side plate includes a stainless steel plate arranged on the inner wall and a carbon fiber plate arranged on the outer wall. A nano fireproof coating is provided on the outer side and / or the inner side of the carbon fiber plate.

4. An intelligent rescue equipment fireproof and heat insulation system according to claim 1, characterized in that: The first fireproof coating, the second fireproof coating and the third fireproof coating are all nano fireproof coatings.

5. The fireproof and heat-insulating system of an intelligent rescue device according to claim 1, wherein: The third fireproof coating is externally wrapped with a layer of high temperature resistant tape.

Citation Information

Patent Citations

  • Rescue cabin for safely transferring personnel during fire alarm of high-rise building

    CN116236712A