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Material processing method and application thereof

A material processing and pretreatment technology, applied in the field of material processing, can solve the problems of low efficiency and high price, and achieve the effects of uniform particle size, wide applicability and good performance stability.

Inactive Publication Date: 2020-01-03
深圳市华原量子生物有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0004] The purpose of the invention is to solve the technical problems that the existing material processing method is expensive and inefficient

Method used

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  • Material processing method and application thereof
  • Material processing method and application thereof
  • Material processing method and application thereof

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0043] Treatment of Plant Material

[0044] The first step of pretreatment: use Dendrobium as the main raw material and add sword bean, cumin, yam, hawthorn, purslane, black snake, black plum, papaya, hemp seed, Daidaihua, Polygonatum odoratum, licorice, Angelica dahurica, Ginkgo, white lentils, longan (longan), cassia, lily, nutmeg, cinnamon, emblica, bergamot, almonds (sweet, seabuckthorn, oyster, gorgon, red bean, donkey-hide gelatin, gallinaceous gold, malt, kelp, jujube (big Jujube, wild jujube, black date), Luo Han Guo, Yu Liren, honeysuckle, green fruit, Houttuynia cordata, ginger (ginger, dried ginger), Hovenia dulcis, medlar, gardenia, amomum, fat sea, Poria, citron, citron, Peach kernel, mulberry leaf, mulberry, orange red, platycodon grandiflorum, yizhi kernel, lotus leaf, radish seed, lotus seed, galangal, light bamboo leaf, light tempeh, chrysanthemum, chicory, yellow mustard seed, sealwort, perilla, perilla seed, kudzu root , black sesame, black pepper, Sophora ...

Embodiment 2

[0049] Multilayers are the treatment for graphene

[0050] The first step is to pulverize the graphite to 150-200μm;

[0051] In the second step, the treated graphite is added to water with a mass concentration of 15-30%, and 0.5% polyethylene glycol is added, and maleic anhydride is selectively added according to whether the prepared graphene is conductive;

[0052] In the third step, the dispersion liquid is added to the ultra-high pressure nanometerization equipment, mixed at 100Mpa, then sprayed at 200Mpa, collected in a container to obtain the dispersion liquid; the filter aperture can be selected according to different requirements of customers, so as to obtain Ideal for nano products.

[0053] as attached figure 1 , 2 Shown in , 3 are scanning electron microscope images of different multiples of multilayer graphene, and the formed multilayer graphene has a clear structure and uniform particle size.

[0054] as attached Figure 4 The shown D50 data measured by the M...

Embodiment 3

[0056] Coating treatment method

[0057] The first step is to pretreat the pigment (such as titanium dioxide) to 150-200μm;

[0058] In the second step, 1-5% polyvinyl alcohol, 10% additives, 0.5% polyethylene glycol, 10%-20% and treated pigments (such as titanium dioxide) are dispersed in water;

[0059] In the third step, the dispersion liquid is added to the ultra-high pressure nanometerization equipment, mixed at 100Mpa, sprayed at 200Mpa, collected in a container, and a dispersion liquid of 30-50nm is obtained.

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Abstract

The invention provides a material processing method. The material processing method includes the following steps that a material is smashed and pretreated until the particle size is 150[mu]m to 200[mu]m, pretreated material powder is dispersed in a solvent to form a dispersion system, and the dispersion system is treated until the particle size is 1nm to 100nm by ultra-high pressure nanometer equipment. Compared with the prior art, the material processing method has wide applicability to the material, the efficiency is high, safety is achieved, and the processing cost is low; in addition, a prepared nanomaterial has uniform particle size, the dispersion system is uniform, and good performance stability is achieved; and finally, the equipment can retain the original components and properties of the material to the greatest extent during material processing through regulation control of the temperature and the pressure, and processed products also tend to produce a great deal of unexpected performance due to the large change of the particle size scale.

Description

technical field [0001] The invention belongs to the field of material processing, and in particular relates to a material processing method and its application. Background technique [0002] The particle size processing of materials is a very common processing method with a wide range of applications. There are many materials that have a large particle size in order to save costs at the beginning of production, or some materials themselves have a large particle size. After being processed into small particle size materials, it can adapt to many application scenarios on the one hand, and on the other hand, it will have many properties that are not available in the macro scale. The current processing methods generally adopt mechanical processing methods, but mechanical processing methods often cannot achieve the desired target particle size, and the uniformity cannot meet the requirements. [0003] Therefore, it is necessary to find a new processing method to meet the curren...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): A23L2/38A23L2/52A23L33/105B02C19/00B01J13/04
CPCA23L2/38A23L2/52A23L33/105B02C19/00B01J13/04
Inventor 刘立祥
Owner 深圳市华原量子生物有限公司