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Radioactive nuclear waste metal smelting and feeding assembly

A radioactive nuclear waste and metal technology, applied in radioactive purification, nuclear engineering, lighting and heating equipment, etc., can solve the problems of unsuitable radioactive decontamination process, high labor intensity, respiratory system damage and other problems in the smelting system, so as to avoid nuclear pollution Effects of radiation, increased automation, and high automation

Pending Publication Date: 2022-02-25
NANHUA UNIV
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  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0006] However, the existing smelting system is not suitable for the radioactive decontamination process of nuclear waste metal. The reasons are mainly reflected in the following points: 1. The feeding process is manual feeding, and the metal to be smelted is the premise of nuclear waste metal 2. During the smelting process of nuclear waste metal, radioactive aerosols will be produced, and the volatilization of aerosols will cause inhalation damage to the respiratory system of operators; 3. During the feeding process of the hot furnace, molten steel may splash out from the feeding port of the melting furnace, posing a safety hazard

Method used

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  • Radioactive nuclear waste metal smelting and feeding assembly
  • Radioactive nuclear waste metal smelting and feeding assembly
  • Radioactive nuclear waste metal smelting and feeding assembly

Examples

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Embodiment 1

[0043] Such as Figure 1-5 As shown, the radioactive nuclear waste metal smelting and feeding assembly includes a general frame, a vertical hoist 2, a smelting furnace assembly, a trolley assembly, a feeding docking mechanism, a negative pressure dust removal mechanism and a material conveying mechanism.

[0044] The general frame is successively provided with a floor 11 and a second floor 12 from bottom to top. There is a space between the first floor 11 and the second floor 12. The upper end of the second floor 12 is a second floor space. The second floor 12 is provided with A communication port 13 connecting the space on the first floor and the space on the second floor.

[0045] The vertical hoist 2 is fixedly installed on the general frame and is located between the first-floor space and the second-floor space. Its lower end is provided with a material inlet 21 connected to the first-floor space, and its upper end is provided with a material outlet 22 connected to the sec...

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Abstract

A radioactive nuclear waste metal smelting and feeding assembly comprises a total frame, a vertical elevator, a smelting furnace assembly, a trolley assembly, a feeding butt joint mechanism, a negative pressure dust removal mechanism and a material conveying mechanism. The total frame is sequentially provided with a first-layer bottom plate and a second-layer bottom plate from bottom to top. The vertical elevator is located between the first-layer space and the second-layer space. The smelting furnace assembly comprises a tipping platform, a smelting furnace and a tipping hydraulic cylinder; the trolley assembly comprises a guide rail and a trolley; the feeding butt joint mechanism comprises an outer funnel, an inner funnel and a crane; the negative pressure dust removal mechanism comprises an electric push rod A, a connecting frame, a dust collection cover and a negative-pressure dust remover; and the material conveying mechanism comprises a support, a belt conveyor A, a lower jacking component and an upper traction assembly. The assembly is applied to the radioactive decontamination process of the nuclear waste metal, the automation degree of the smelting process is improved, and operators can be prevented from nuclear radiation to a large extent.

Description

technical field [0001] The invention relates to the technical field of nuclear waste metal treatment, in particular to a radioactive nuclear waste metal smelting and feeding assembly. Background technique [0002] During the operation of nuclear power plants, a large amount of nuclear waste metals will be produced, including waste equipment, pipelines and structural components. According to statistics, a single million-kilowatt unit produces about 4t-5t of nuclear waste metal a year. As of December 2020, my country has 18 nuclear power plants in operation, with a total of 48 reactors, and the cumulative mass of nuclear waste metal produced is about 10,000 tons. The way out of these nuclear waste metals is unknown, and they are currently stored in nuclear power plants. Not only do they have radiation risks and cross-contamination risks, but they are also difficult to collect due to different sizes and specifications, resulting in increasing pressure on nuclear power plants' ...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): B65G37/00B65G35/00B65G69/18F27D3/12G21F9/30G21F9/34
CPCB65G37/00B65G35/00B65G69/186F27D3/123G21F9/308G21F9/34
Inventor 钟林招观荣黄灿裕左喆文雷洁珩雷泽勇邓健雷林
Owner NANHUA UNIV
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