Tritium protection material and preparation method thereof

A protective material and mixing technology, applied in reactors, nuclear engineering, shielding and other directions, can solve the problems of increasing tritium permeation, increasing tritium permeation rate, unable to achieve tritium protection, etc. Improved radiation protection performance and significant effect of tritium protection

Active Publication Date: 2019-05-03
SOUTHWEAT UNIV OF SCI & TECH
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0007] (1) In the prior art, the free volume between each layer and each phase will increase the adsorption and penetration of tritium; as time goes on, the hydrogen absorbing agent reaches saturation, and at this moment the penetration rate of tritium will increase greatly, thereby Injure the operator and pollute the environment, and also cause the loss of tritium;
[0008] (2) β radiation will break the polymer chain and degrade it, which will affect the service life of the polymer material. Therefore, for tritium protective materials, the β radiation of tritium must be taken into account
[0010] Simple polymer composite materials cannot achieve protection against tritium, which is due to the inherent poor gas barrier properties of polymer materials, and the beta radiation of tritium will cause polymer chains to break and degrade, further increasing the penetration of tritium; a single The aluminum oxide anti-tritium material can delay the penetration of tritium in polymer materials, but it has no effect on the degradation of polymer chains by the beta radiation of tritium. Therefore, an excellent tritium protection material should not only slow down the penetration of tritium, but also It is also necessary to consider shielding the beta radiation of tritium

Method used

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  • Tritium protection material and preparation method thereof
  • Tritium protection material and preparation method thereof
  • Tritium protection material and preparation method thereof

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preparation example Construction

[0033] The preparation method of the tritium protection material provided by the embodiment of the present invention combines the enhanced toughening performance of micro-nano inorganic substances and the radiation protection performance of micro-nano metal compounds containing metal elements such as lead and bismuth, and then adopts the method of physical blending. It is added to rubber latex, and then molded and vulcanized by dipping, coating and other methods.

[0034] The preparation method of the tritium protection material provided by the embodiment of the present invention, the specific steps include:

[0035] S101: Mix the inorganic powder and the silane coupling agent in the ethanol solution according to the mass ratio of 10-20:1, put them into a ball mill for mixing and ball milling, and prepare the particle size d(0.5)=0.1-0.5 Micron inorganic powder; according to the mass ratio of 25-45:1, mix metal compound powder containing tungsten, bismuth and gemini quaternary...

Embodiment 1

[0045] Step 1. Mix montmorillonite and silane coupling agent in ethanol solution according to the mass ratio of 10:1, put them into a ball mill for mixing and ball milling, and prepare montmorillonite with particle size d(0.5)=0.2 microns Soil powder; mix bismuth tungstate powder and gemini quaternary ammonium salt in ethanol solution according to the mass ratio of 25:1, put them into a ball mill for mixing and ball milling, and prepare a particle size d(0.5)=0.1 Micron bismuth tungstate powder;

[0046] Step 2, the butyl rubber latex, vulcanizing agent, montmorillonite, bismuth tungstate powder and vulcanization accelerator stannous chloride are subjected to ultrasonication according to the mass ratio of 100 (dry rubber quality): 5:1:0.2:0.8 Disperse and mix evenly to obtain a glue solution with a solid content of 40% to 50%;

[0047] Step 3, adopting the glue solution described in step 2 to carry out the method of coating and forming into a diaphragm;

[0048] Step 4: Sulp...

Embodiment 2

[0050] Step 1. Mix silicon dioxide and silane coupling agent in ethanol solution according to the mass ratio of 15:1, put them into a ball mill for mixing and ball milling, and prepare a carbon dioxide with a particle size of d(0.5)=0.1 micron. Silicon powder; mix lead oxide powder and gemini quaternary ammonium salt in ethanol solution according to the mass ratio of 25:1, put them into a ball mill for mixing and ball milling, and prepare a particle size d(0.5)=0.1 micron lead oxide powder;

[0051] Step 2, bromobutyl rubber latex, vulcanizing agent, silicon dioxide, lead oxide powder and vulcanization accelerator stannous chloride are passed according to the mass ratio of 100 (dry rubber quality): 5:5:0.3:0.6 Ultrasonic dispersion to make it evenly mixed to obtain a glue with a solid content of 40% to 50%;

[0052] Step 3, adopting the method for impregnating the glue solution described in step 2 to form gloves;

[0053] Step 4: vulcanize the glove formed in Step 3 at a tem...

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Abstract

The invention belongs to the field of radiation protection materials, and discloses a tritium protection material and a preparation method thereof. By combination of reinforcing, toughening and tritium-penetration-delaying performances of a micro-nano inorganic matter and the radiation protection performance of a micro-nano metal compound containing metal elements namely lead and bismuth, and by adoption of a blending method, the micro-nano inorganic matter and the micro-nano metal compound are added into a rubber latex for molding and vulcanization to form a product through the methods of impregnation, coating and the like. According to the invention, by combination of the reinforcing, toughening and tritium-penetration-delaying performances of the micro-nano inorganic matter and the radiation protection performance of the micro-nano metal compound containing metal elements like lead and bismuth, the permeability, mechanical properties and radiation protection performance of tritium are simultaneously improved; with the rubber latex as a substrate, the micro-nano inorganic matter and the metal compound are conveniently and uniformly dispersed, and molding of the tritium protectionmaterial with various shapes is conveniently realized; meanwhile, energy consumption in the processing process of the material is reduced; etc.

Description

technical field [0001] The invention belongs to the field of radiation protection materials, in particular to a tritium protection material and a preparation method thereof. Background technique [0002] At present, the existing technologies commonly used in the industry are as follows: [0003] The current tritium protective flexible materials are generally made of multi-layer combinations of various rubber materials or by blending several types of rubber with excellent airtight performance with hydrogen absorbing agents or physical anti-tritium materials and through pressing, impregnating, coating and other methods. Preparation of tritium shielding material. [0004] In the tritium-related process, polymer-based tritium protective materials are essential, such as tritium protective gloves, tritium protective clothing, and some sealing rings. These will be directly related to the safety of operators. Therefore, the development of tritium protective materials generally ne...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): G21F1/10G21F1/12
Inventor 李迎军周元林李银涛
Owner SOUTHWEAT UNIV OF SCI & TECH
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