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Preparation method of radon-proof radiation-proof plate

A technology of anti-radiation and slurry, which is applied in the field of building materials, can solve problems such as high density, inconvenient construction, easy deformation of products, and potential safety hazards, so as to reduce the danger induced by wall deformation, reduce density, and excellent anti-radon anti-radiation performance Effect

Active Publication Date: 2013-04-17
国能朗新明环保科技有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0004] When commonly used indoor building materials are used for radiation protection, heavy materials such as barite and serpentine are generally added to increase the density of the wall, thereby improving the wall material to weaken and prevent the harm of radiation rays, but for For the wall material of the partition wall and the suspended ceiling, the density is too high to be convenient for construction, and the product is easy to deform, which poses a great safety hazard

Method used

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Examples

Experimental program
Comparison scheme
Effect test

preparation example Construction

[0025] There is no special limitation on the specific preparation method, and each component can be weighed and stirred according to a conventional method to obtain a mixed gypsum slurry.

[0026] Since zeolite is a frame-like silicate structure composed of relatively open silica and alumina tetrahedrons, the tiny channels in zeolite are uniform and fixed in size, substances smaller than its diameter can be adsorbed, and substances larger than its diameter can be adsorbed. There is no adsorption effect, which plays a screening role for molecules. In addition, the surface of zeolite has strong tolerance and strong electrostatic force, because cations are distributed in the lattice holes, and some of the lattice oxygen also have negative charges, thus forming a strong electric field around the ions , so its adsorption capacity is particularly strong, and its adsorption capacity for radon gas is relatively good. Thus, the radon-proof and radiation-proof board of the present inve...

Embodiment 1

[0041] First, the building gypsum powder prepared from natural gypsum is used as a raw material, and the anti-radiation metal mesh made of alloy is selected. According to 100 parts by weight of natural building gypsum powder, 5 parts by weight of zeolite powder, 5 parts by weight of graphite particles, and 5 parts by weight of iron oxide powder, 5 parts by weight of calcium borate, 62 parts by weight of water, 3 parts by weight of reinforcing fiber, 2 parts by weight of reinforcing agent (selecting redispersible rubber powder), and measuring each component;

[0042] Secondly, the construction gypsum powder, zeolite powder, graphite particles, iron oxide powder, calcium borate powder, reinforcing fiber and reinforcing agent are fully mixed in advance;

[0043] Next, mix the weighed water and the evenly mixed powder in the mixer, pour it into the lower mold that has been sprayed with the release agent in advance, and pour the amount of slurry into about 1 / 3-1 / 2 of the total amoun...

Embodiment 2

[0048] First, the building gypsum powder prepared by desulfurization gypsum through a fluidized calciner is used as a raw material, and a radiation-proof metal mesh made of iron is selected. 8 parts by weight of iron powder, 8 parts by weight of calcium borate, 65 parts by weight of water, 2 parts by weight of reinforcing fiber, 3 parts by weight of reinforcing agent (select polyvinyl alcohol), measure each component;

[0049] Secondly, the construction gypsum powder, zeolite powder, graphite particles, iron oxide powder, calcium borate powder, reinforcing fiber and reinforcing agent are fully mixed in advance;

[0050] Next, stir the weighed water and the uniformly mixed powder in a mixer, pour it into the lower mold that has been sprayed with a release agent in advance, and pour the slurry into about 1 / 3-1 / 2 of the total amount, Put in the anti-radiation metal mesh and fix its position;

[0051] After that, pour the rest of the formed gypsum mixed slurry again, cover the up...

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Abstract

The invention discloses a preparation method of a radon-proof radiation-proof plate. The method includes the following steps: a) preparing gypsum slurry containing gypsum powder, water and radon-proof radiation-proof mineral powder with zeolite powder; b) pouring 1 / 3-2 / 3 of total gypsum slurry into a lower mould coated with a release agent and arranging a radiation-proof metal net on the surface of the slurry; c) pouring surplus gypsum slurry into the place above the radiation-proof metal net, covering an upper mould plate coated with the release agent and compacting the slurry by vibration to conduct molding; and d) conducting demoulding to conduct natural airing to obtain the radon-proof radiation-prof plate. By means of the preparation method of the radon-proof radiation-proof plate, wall body density is reduced, and danger caused by wall body deformation is reduced. In addition, the radon-proof radiation-proof plate has excellent radon-proof radiation-proof performance due to the added radon-proof radiation-proof plate.

Description

technical field [0001] The invention belongs to the technical field of building materials, in particular to a preparation method of a radon-proof and radiation-proof board. Background technique [0002] At present, people pay more and more attention to the radiation pollution in the living environment. [0003] A large number of nuclear reactions such as α, β, γ, X-rays and neutrons can induce cancer, leukemia and multiple myeloid cancer, thyroid dysfunction, infertility and birth defects and other human terminal diseases, as well as induce plant gene mutations , Harm the growth of crops. In fact, due to the low penetrating power of α-rays and β-rays, they are easily absorbed, and even protective materials with a small thickness can completely block them, so the problem of radiation protection is mainly attributed to the protection of γ-rays and neutron flow. [0004] When commonly used indoor building materials are used for radiation protection, heavy materials such as ba...

Claims

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Application Information

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IPC IPC(8): B28B1/087
Inventor 罗小红徐立崔胜旺陈春超周智泉
Owner 国能朗新明环保科技有限公司
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