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Anti-bacterial radiation-proof dye for toys

A technology of radiation protection and dyes, applied in the field of dyes, can solve the problems of poor antibacterial ability of toys and the impact on children's growth and development, and achieve the effect of improving radiation protection performance, good market promotion and application value, and long-lasting antibacterial effect

Inactive Publication Date: 2019-04-26
安徽沛隆智能机械科技有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

During the operation of the motor, a small amount of electromagnetic radiation will be generated. When children use toys, electromagnetic wave radiation may have a certain impact on the growth and development of children, which will bring two big troubles to people. In addition, during the use of toys Can breed a large amount of bacteria, cause certain threat to the health of the child, now mostly toy is sterilized by later period, but toy itself antibacterial ability is relatively poor, therefore urgently needs to prepare a kind of antibacterial and anti-radiation dye that is used for toy, improves Safety Performance of Toys

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0027] A kind of antibacterial and anti-radiation dye suitable for toys consists of the following components by weight:

[0028] 3 parts of fungicide, 40 parts of pigment yellow 109, 30 parts of pigment yellow 180, 6 parts of zinc stearate, 4 parts of calcium stearate, 7 parts of magnesium stearate, 5 parts of dibutyl hydroxytoluene, 6 parts of calcium silicate parts, 12 parts of composite filler, and 80 parts of sterile water.

[0029] Further, the ingredients and corresponding parts by weight in the fungicide are: 27 parts of 75% ethanol, 6 parts of eugenol, 7 parts of artemisinin, 4 parts of decanoyl acetaldehyde, 5 parts of lauryl aldehyde, and 90 parts of sterile water .

[0030] Further, the preparation of the composite filler includes the following steps:

[0031] 1) Stir and mix the barite and loess according to the weight ratio of 1.4:3.6 and put them into the calciner for calcining. The temperature in the calciner is controlled at 650°C, and the mixed powder is obt...

Embodiment 2

[0044] A kind of antibacterial and anti-radiation dye suitable for toys consists of the following components by weight:

[0045] 4.5 parts of fungicide, 45 parts of pigment yellow 109, 35 parts of pigment yellow 180, 7 parts of zinc stearate, 5 parts of calcium stearate, 8 parts of magnesium stearate, 7 parts of dibutyl hydroxytoluene, 8 parts of calcium silicate parts, 13 parts of composite filler, and 85 parts of sterile water.

[0046]Further, the ingredients and corresponding parts by weight in the fungicide are: 29 parts of 75% ethanol, 7.5 parts of eugenol, 7.5 parts of artemisinin, 5 parts of decanoyl acetaldehyde, 6 parts of lauryl aldehyde, and 95 parts of sterile water .

[0047] Further, the preparation of the composite filler includes the following steps:

[0048] 1) Stir and mix the barite and loess according to the weight ratio of 1.7.0:3.7 and put them into a calciner for calcination. The temperature in the calciner is controlled at 750°C, and the mixed powder...

Embodiment 3

[0061] A kind of antibacterial and anti-radiation dye suitable for toys consists of the following components by weight:

[0062] 6 parts of fungicide, 50 parts of pigment yellow 109, 40 parts of pigment yellow 180, 8 parts of zinc stearate, 6 parts of calcium stearate, 9 parts of magnesium stearate, 9 parts of dibutyl hydroxytoluene, 10 parts of calcium silicate parts, 14 parts of composite filler, and 90 parts of sterile water.

[0063] Further, the components and corresponding parts by weight in the fungicide are: 31 parts of 75% ethanol, 9 parts of eugenol, 8 parts of artemisinin, 6 parts of decanoyl acetaldehyde, 7 parts of lauric aldehyde, and 100 parts of sterile water .

[0064] Further, the preparation of the composite filler includes the following steps:

[0065] 1) Stir and mix the barite and loess according to the weight ratio of 2.0:3.8 and put them into the calciner for calcining. The temperature in the calciner is controlled at 850°C, and the mixed powder is ob...

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PUM

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Abstract

The invention discloses an anti-bacterial radiation-proof dye for toys. The anti-bacterial radiation-proof dye is prepared from the following components: a fungicide, pigment yellow 109, pigment yellow 180, zinc stearate, calcium stearate, magnesium stearate, butylated hydroxytoluene, calcium silicate, composite filler and sterile water. The prepared anti-bacterial radiation-proof dye has reasonable matching of raw materials, the finally prepared dye has long-lasting anti-bacterial, sterilization and inhibition effects, the added composite filler greatly improves the radiation-proof performance of the dye, the use performance of electric toys is improved, and good market promotion and application value is achieved.

Description

technical field [0001] The invention belongs to the field of dyes, in particular to an antibacterial and anti-radiation dye suitable for toys. Background technique [0002] An electric toy is a motorized toy driven by a miniature motor. Most of them use batteries as energy sources, also known as battery toys. Electric toys came out with the birth of electric motors. During the operation of the motor, a small amount of electromagnetic radiation will be generated. When children use toys, electromagnetic wave radiation may have a certain impact on the growth and development of children, which will bring two big troubles to people. In addition, during the use of toys Can breed a large amount of bacteria, cause certain threat to the health of the child, now mostly toy is sterilized by later period, but toy itself antibacterial ability is relatively poor, therefore urgently needs to prepare a kind of antibacterial and anti-radiation dye that is used for toy, improves Safety per...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): C09B67/22
CPCC09B67/0041
Inventor 张爱龙
Owner 安徽沛隆智能机械科技有限公司
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