Building air bag deicing device

The building airbag de-icing device uses cylindrical airbags to push a sliding plate to automatically clear ice, solving the safety hazards of manual ice clearing and achieving safe and efficient ice clearing.

CN224048536UActive Publication Date: 2026-03-27山西大唐国际云冈热电有限责任公司
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-06-06
Publication Date
2026-03-27

AI Technical Summary

Technical Problem

In existing technologies, clearing icicles from the roof of a power plant requires manual climbing of ladders, which poses a safety hazard.

Method used

Design a building airbag de-icing device that uses a cylindrical airbag to push a sliding plate by inflation. The front pusher plate in front of the sliding plate pushes away the ice, achieving automated cleaning.

Benefits of technology

This technology enables safe and efficient icicle removal without the need for manual ladder climbing, improving both safety and efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

Provided is a building air bag deicing device. At present, the ice skates are cleaned by climbing ladders manually and using bamboo poles, but the mode can cause safety hazards. The device comprises a shell, a sliding plate and a cylindrical air bag, an inner cavity is formed in the shell, sliding grooves are formed in the front side and the rear side of the inner cavity respectively, a plurality of sets of idler wheels are connected to the sliding plate, the idler wheels are located in the sliding grooves, a front push plate is fixed to the front end of the sliding plate, and a rear push plate is fixed to the rear end of the sliding plate. The cylindrical air bag is placed in the inner cavity and located on the rear side of the rear push plate. The deicing device is used for deicing the building air bag.
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Description

TECHNICAL FIELD

[0001] The utility model relates to building air bag deicing device. BACKGROUND

[0002] The plant building of power plant is mostly stainless steel plant building, and the roof thereof is designed as an arch shape, snow will cover the roof in winter, when the weather warms up, the snow covering the roof will melt, and the melted snow water will drip along the eaves, at this time, since the air temperature reaches the melting temperature at noon, the air temperature will gradually become cold in the afternoon and at night, so that the melted snow water will gradually form ice slides, and currently, the ice slides are cleaned by artificial climbing ladders and using bamboo poles, but this way will cause safety hazards. SUMMARY

[0003] The utility model discloses a building air bag deicing device.

[0004] The above-mentioned purpose is realized by the following technical scheme:

[0005] A building air bag deicing device, which comprises a shell, a sliding plate and a cylindrical air bag, an inner cavity is formed in the shell, sliding grooves are formed on the front and back sides of the inner cavity, a plurality of groups of rollers are connected to the sliding plate, the rollers are located in the sliding grooves, a front push plate is fixed to the front end of the sliding plate, and a rear push plate is fixed to the rear end of the sliding plate, and the cylindrical air bag is placed in the inner cavity and located at the rear side of the rear push plate.

[0006] The building air bag deicing device, and the cylindrical air bag has a center inflation pipe.

[0007] The building air bag deicing device, and the sliding grooves form an angle of 15° with the horizontal plane. Beneficial effects

[0008] 1. The utility model discloses a cylindrical air bag, which is inflated to push the sliding plate to move, so that the front push plate in front of the sliding plate pushes away the ice slides, realizing the cleaning of the ice slides without artificial climbing ladders, and ensuring safety. DRAWINGS

[0009] Figure 1 It is the front view of the utility model;

[0010] Figure 2 It is the side view of the utility model;

[0011] Figure 3 It is Figure 2 the B-B section view of the utility model;

[0012] Figure 4 It is Figure 1A-A section view of the cylinder air bag;

[0013] Figure 5 Structure schematic diagram of the cylinder air bag after deflation;

[0014] Figure 6 Front view of the utility model when not pushed;

[0015] Figure 7 Front view of the utility model when pushed;

[0016] Figure 8 Side view of the utility model when used;

[0017] In the figure: 1, front push plate; 2, sliding plate; 3, shell; 4, roller; 5, sliding slot; 6, rear push plate; 7, cylindrical air bag; 8, inflation pipe; 9, inflation pump; 10, deflation valve; 11, rubber sleeve pipe; 12, roof; 13, rib plate; 14, inner cavity; 15, ice slide. DETAILED DESCRIPTION

[0018] Referring to Figures 1-5 , a building air bag deicing device, which is composed of shell 3, sliding plate 2 and cylindrical air bag 7, the shell is internally provided with inner cavity 14, the inner cavity is provided with sliding slot 5 on the front and rear sides respectively, the sliding slot forms 15° angle with horizontal plane, the sliding plate is connected with multiple groups of rollers 4, the roller shaft is fixed with rollers at both ends, the roller shaft penetrates through the sliding plate, the sliding plate is rotatably connected with the roller shaft, the rollers are located in the sliding slot, the front end of the sliding plate is fixed with front push plate 1, and the rear end is fixed with rear push plate 6, the cylindrical air bag is placed in the inner cavity and located at the rear side of the rear push plate.

[0019] The cylindrical air bag is provided with inflation pipe 8 at the center.

[0020] Referring to Figures 6-8 , the shell is provided with rib plate on both sides, multiple devices need to be arranged when fixed, the devices are arranged along the eaves, and the devices are fixed on the wall surface through bolts, Figure 8The right side of the first end, the left end, located at the end of the cylindrical air bag only one inflation tube, located in the middle of the cylindrical air bag has two inflation tube, in the process of connecting two cylindrical air bag inflation tube through the rubber sleeve pipe 11 connection, located in the first end of the cylindrical air bag inflation tube is T-shaped, inflation pipe is installed with the air valve 10, the air valve is solenoid valve, all connection installation is completed after the power, inflation pump selection with pressure gauge, to the pressure stop inflation pump, set the inflation pressure of the inflation pump is 0.1Mpa, this inflation pump using existing technology form, after connecting the power supply through the start switch inflation, at the same time the solenoid valve is also connected to the power supply, through the switch control, when you need to clean the ice, through the start of the inflation pump, the inflation pump to the cylindrical air bag inflation, because of the multiple cylindrical air bag inflation tube through the rubber sleeve pipe connection, multiple cylindrical air bag form the form of communication, in the inflation of multiple cylindrical air bag inflation at the same time, inflation after the cylindrical air bag gradually expands, expansion will push the slide plate sliding, the front push plate will push the ice 15, realize the cleaning of the ice, inflation pump to 0.1Mpa after the stop inflation, prevent the cylindrical air bag burst, at this time the cylindrical air bag will form a fully inflated cylindrical state, clean after opening the air valve, at this time the inflation, make its cylindrical air bag gradually shrink, because the slide plate is in the inclined state, at this time the slide plate will slide under its own weight to the inner cavity, until the sliding to the original position.

Claims

1. A building air bladder de-icing device characterized by: The composition comprises a shell, a slide plate and a cylindrical air bag, the shell is internally provided with an inner cavity, the inner cavity is provided with a sliding groove at the front and back sides respectively, a plurality of groups of rollers are connected to the slide plate, the rollers are located in the sliding grooves, the front end of the slide plate is fixed with a front push plate, the rear end is fixed with a rear push plate, and the cylindrical air bag is placed in the inner cavity and located at the rear side of the rear push plate.

2. The building envelope de-icing apparatus of claim 1, wherein: The cylindrical air bag is provided with a center inflation pipe.

3. The building envelope de-icing apparatus of claim 2, wherein: The sliding groove forms an angle of 15° with the horizontal plane.