Preparation method of storage material based on inorganic nonmetal

An inorganic non-metal and storage material technology, which is applied in the field of inorganic non-metal-based storage material preparation, can solve the problems of lack of insect repellency and article erosion, and achieves good bonding effect, improved quality, and good wear resistance.

Inactive Publication Date: 2019-12-20
韦杰
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0003] Existing storage materials usually pay attention to physical properties such as strength during preparation, but storage materials often do not have the function of preventing moths in the process of storing items. Moths in the environment are easy to erode storage materials, and it is easy to damage the stored items. cause erosion

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0030] The invention provides a storage material based on inorganic nonmetal, which is characterized in that: the raw materials used (by weight) include 50-70 parts of clay, 20-40 parts of quartz sand, 10-18 parts of silicon carbide, nitrogen 8-10 parts of silicon dioxide, 8-10 parts of aluminum oxide, 10-20 parts of mica, 1-5 parts of camphor wood block and 2-4 parts of bamboo fiber. The auxiliary materials include 8-16 parts of bentonite, 4-8 parts of starch and 2-6 parts of nano superhydrophobic coating.

[0031] Specifically in this embodiment: the raw materials used (by weight) include 50 parts of clay, 20 parts of quartz sand, 10 parts of silicon carbide, 8 parts of silicon nitride, 8 parts of aluminum oxide, 10 parts of mica, 1 part of camphor wood block and 2 parts of bamboo fiber, and the auxiliary materials include 8 parts of bentonite, 4 parts of starch and 2 parts of nano superhydrophobic coating in parts by weight.

[0032] The specific preparation steps of the p...

Embodiment 2

[0043] The invention provides a storage material based on inorganic nonmetal, which is characterized in that: the raw materials used (by weight) include 50-70 parts of clay, 20-40 parts of quartz sand, 10-18 parts of silicon carbide, nitrogen 8-10 parts of silicon dioxide, 8-10 parts of aluminum oxide, 10-20 parts of mica, 1-5 parts of camphor wood block and 2-4 parts of bamboo fiber. The auxiliary materials include 8-16 parts of bentonite, 4-8 parts of starch and 2-6 parts of nano superhydrophobic coating.

[0044]Specifically in this embodiment: the raw materials used (by weight) include 60 parts of clay, 30 parts of quartz sand, 14 parts of silicon carbide, 9 parts of silicon nitride, 9 parts of aluminum oxide, 15 parts of mica, 3 parts of camphor wood blocks and 3 parts of bamboo fiber, and the auxiliary materials include 12 parts of bentonite, 6 parts of starch and 4 parts of nanometer super-hydrophobic coatings by weight.

[0045] The specific preparation steps of the p...

Embodiment 3

[0056] The invention provides a storage material based on inorganic nonmetal, which is characterized in that: the raw materials used (by weight) include 50-70 parts of clay, 20-40 parts of quartz sand, 10-18 parts of silicon carbide, nitrogen 8-10 parts of silicon dioxide, 8-10 parts of aluminum oxide, 10-20 parts of mica, 1-5 parts of camphor wood block and 2-4 parts of bamboo fiber. The auxiliary materials include 8-16 parts of bentonite, 4-8 parts of starch and 2-6 parts of nano superhydrophobic coating.

[0057] Specifically in this embodiment: the raw materials used (by weight) include 70 parts of clay, 40 parts of quartz sand, 18 parts of silicon carbide, 10 parts of silicon nitride, 10 parts of aluminum oxide, 20 parts of mica, 5 parts of camphor wood block and 4 parts of bamboo fiber, described auxiliary material comprises 16 parts of bentonite, 8 parts of starch and 6 parts of nano superhydrophobic coatings by weight.

[0058] The specific preparation steps of the pr...

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PUM

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Abstract

The invention discloses a preparation method of a storage material based on inorganic nonmetal, and specifically relates to the technical field of storage material preparation, wherein the used raw materials comprise, by weight, 50-70 parts of clay, 20-40 parts of quartz sand, 10-18 parts of silicon carbide, 8-10 parts of silicon nitride, 8-10 parts of aluminum oxide, 10-20 parts of mica, 1-5 parts of camphorwood blocks, and 2-4 parts of bamboo fibers, and the auxiliary materials comprise, by weight, 8-16 parts of bentonite, 4-8 parts of starch and 2-6 parts of a nanometer super-hydrophobic coating material. According to the invention, by adding the camphorwood blocks and the bamboo fibers, the camphorwood blocks have natural fragrance and have effects of moisture absorbing, odor eliminating and outside mosquito expelling, and the added bamboo fibers have functions of bacterial inhibiting, mite removing and deodorizing, so that the good storage environment is kept in the storage material so as to easily store articles.

Description

technical field [0001] The invention relates to the technical field of storage material preparation, more specifically, the invention relates to a preparation method of an inorganic nonmetal-based storage material. Background technique [0002] Inorganic non-metallic materials are materials composed of oxides, carbides, nitrides, halogen compounds, borides, silicates, aluminates, phosphates, borates and other substances of certain elements. Inorganic non-metallic materials are one of the three major materials alongside organic polymer materials and metal materials. Traditional inorganic non-metallic materials are basic materials necessary for industry and infrastructure construction, such as cement is an important building material, refractory materials and high-temperature technology, especially closely related to the development of the steel industry, various specifications of flat glass, instruments Glass and ordinary optical glass as well as daily-use ceramics, sanitary...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): C04B38/06C04B33/13
CPCC04B33/13C04B33/1305C04B35/636C04B38/0675C04B2235/3217C04B2235/3418C04B2235/3826C04B2235/3873
Inventor 韦杰
Owner 韦杰
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