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GF-3 anti-radiation coating

A technology of anti-radiation coating, GF-3, applied in the direction of sustainable waste treatment, solid waste management, climate sustainability, etc., can solve the problems of low viscosity, low radiation absorption rate and low radiation absorption rate of anti-radiation coatings, etc. Achieve the effects of low cost, good radiation protection effect and improved radiation absorption rate

Inactive Publication Date: 2016-07-06
ZHEJIANG KAICHENG ENVIRONMENT ENG CO LTD
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0005] The purpose of the present invention is to provide a kind of GF-3 anti-radiation coating, which solves the defects of poor viscosity (affecting the construction process) and low radiation absorption rate of the existing GF-3 anti-radiation coating
The present invention improves the ratio of each component by increasing the diatom mud, improves the viscosity of the anti-radiation coating, makes its construction more convenient, and improves the radiation absorption rate of the anti-radiation coating, so that its anti-radiation effect is better, and solves the problem of Existing anti-radiation coatings have the defects of low viscosity and low radiation absorption rate

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0035] This embodiment discloses a kind of GF-3 anti-radiation coating, comprises: iron oxide, wolframite powder, rectorite ore, barium sulfate, ferric sulfate five kinds of metal compounds, by described five kinds of metal compounds and cement, borax , diatom mud, in which iron oxide accounts for 15wt%, particle size 0.1mm-1.3mm; wolframite powder 4wt%, particle size 0.1mm-1.3mm; rectorite ore accounts for 5wt%, particle size 100 mesh-200 mesh , rectorite content 41%; barium sulfate accounts for 40wt%, particle size 0.1mm-2.0mm; iron sulfate accounts for 0.8wt%, iron sulfate particle size is 1.0mm-1.5mm; cement accounts for 16wt%, borax accounts for 1.2wt%; Diatom mud 18wt%, diatom mud specific surface area is 17m 2 / g, the porosity is 80%.

[0036] For the paint prepared from the above formula, make a small sample of 138mm*101mm*31mm, and measure the shielding performance of X-ray protective materials. Serial number: NE2550 Secondary Standard Dosimeter J-067; DCI8500 Preci...

Embodiment 2

[0040] This embodiment discloses a GF-3 anti-radiation coating, comprising: iron oxide, tungsten ore powder, rectorite ore, barium sulfate, iron sulfate five kinds of metal compounds, by the five kinds of metal compounds and cement, borax, It is made by mixing diatom mud, of which iron oxide accounts for 17.8wt%, particle size 0.1mm-1.3mm; wolframite powder 5wt%, particle size 0.1mm-1.3mm; rectorite ore accounts for 8wt%, particle size 100 mesh-200 mesh , rectorite content 41%; barium sulfate accounts for 35wt%, particle size 0.1mm-2.0mm; iron sulfate accounts for 1.2wt%, iron sulfate particle size is 1.0mm-1.5mm; cement accounts for 18wt%, borax accounts for 1.0wt%; Diatom mud 14wt%, diatom mud specific surface area is 17m 2 / g, the porosity is 80%.

[0041] For the paint prepared from the above formula, make a small sample of 138mm*101mm*31mm, and measure the shielding performance of X-ray protective materials. Serial number: NE2550 Secondary Standard Dosimeter J-067; DCI8...

Embodiment 3

[0045] This embodiment discloses a kind of GF-3 anti-radiation coating, comprises: iron oxide, wolframite powder, rectorite ore, barium sulfate, ferric sulfate five kinds of metal compounds, by described five kinds of metal compounds and cement, borax , diatom mud, in which iron oxide accounts for 18wt%, particle size 0.1mm-1.3mm; wolframite powder 5wt%, particle size 0.1mm-1.3mm; rectorite ore accounts for 8wt%, particle size 100 mesh-200 mesh , rectorite content 41%; barium sulfate accounts for 35wt%, particle size 0.1mm-2.0mm; iron sulfate accounts for 1.0wt%, the particle size of iron sulfate is 1.0mm-1.5mm; cement accounts for 18wt%, borax accounts for 1.0wt%; Diatom mud 14wt%, diatom mud specific surface area is 17m 2 / g, the porosity is 80%.

[0046] For the paint prepared from the above formula, make a small sample of 138mm*101mm*31mm, and measure the shielding performance of X-ray protective materials. Serial number: NE2550 Secondary Standard Dosimeter J-067; DCI850...

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Abstract

The invention provides a GF-3 anti-radiation coating which comprises five types of metal compounds including ferric oxide, tungsten powder, rectorite ore, barium sulfate and ferric sulfate, and the GF-3 anti-radiation coating is prepared by mixing the five types of metal compounds with cement, borax and diatom ooze, wherein the ferric oxide accounts for 14 wt%-22 wt%, and the granularity is 0.1 mm-1.3 mm; the tungsten powder accounts for 3 wt%-6 wt%, and the granularity is 0.1 mm-1.3 mm; the rectorite ore accounts for 4 wt%-10 wt%, and the granularity is 100 meshes-200 meshes; the barium sulfate accounts for 30 wt%-40 wt%, and the granularity is 0.1 mm-2.0 mm; the ferric sulfate accounts for 0.5 wt%-1.5 wt%; the cement accounts for 15 wt%-18 wt%, the borax accounts for 1.0 wt%-1.5 wt%, and the diatom ooze accounts for 10 wt%-20 wt%.According to the GF-3 anti-radiation coating, the diatom ooze is added, the proportion of all components is improved, viscosity of the anti-radiation coating is improved, construction can be more convenient, radiation absorptivity of the anti-radiation coating is improved, the anti-radiation effect is better, and the defect that existing anti-radiation coating is low in viscosity and low in radiation absorptivity is overcome.

Description

technical field [0001] The invention relates to the field of radiation-proof inorganic metal materials, in particular to a GF-3 radiation-proof paint. Background technique [0002] With the rapid development of modern science and technology, people are often exposed to radiation radiation in hospitals, schools, nuclear industry, and industrial production; and when radiation radiates to the human body, it will cause various harms to the human body. In particular, X-ray photographers who work as doctors or operate radiation equipment in medical institutions, staff in schools, research institutions, and former power plants may be exposed to radiation for a long time due to their work needs. [0003] In response to this threat, various anti-radiation materials have been invented, and anti-radiation coatings are the application of anti-radiation methods strongly recommended by the national environmental protection department. Anti-radiation coating is a kind of environmental pro...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): C04B28/02C04B14/08C04B14/30C04B14/36C04B18/12C04B20/00
CPCC04B28/02C04B2111/00482C04B2111/00862C04B14/08C04B14/308C04B18/12C04B14/36C04B20/0076Y02W30/91
Inventor 刘文
Owner ZHEJIANG KAICHENG ENVIRONMENT ENG CO LTD
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