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Process for producing KMg3(AlSi3O10)F2 crystal powder with wet-process synthesis

A crystal and wet process technology, applied in the direction of aluminum silicate, silicate, etc., can solve the problems of unstable quality, product diameter-thickness ratio and surface activity that cannot meet the requirements of pearlescent pigments, etc., to achieve stable product quality and low cost , The effect of simple production method

Active Publication Date: 2009-08-19
鹿寨七色珠光云母材料有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

However, in some high value-added application fields, such as cosmetics and pearlescent pigments, the synthetic fluorophlogopite powder required to be provided is wet-processed, has high whiteness, high diameter-thickness ratio, high surface activity, and moderate particle size distribution. Fluorphlogopite powder, while the existing synthetic fluorphlogopite powder cannot meet these requirements
Chinese patent 200510034878.8 discloses a preparation method of synthetic mica powder. The product prepared by this method has some improvements in performance, but the diameter-thickness ratio and surface activity of the product cannot meet the requirements of pearlescent pigments, and the quality is not stable.

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0018] Weigh 3000kg of synthetic fluorine phlogopite mica fragments with a particle size of 0.85-2.5mm, scrub and sieve them with an ore washing machine, the screen mesh is 20 mesh, and the washing water pressure is 0.15MPa. After scrubbing, the synthetic fluorophlogopite fragments enter the pulper Pulping, the water pressure of pulping is 5MPa, after pulping and screening, materials with three particle sizes larger than 0.25mm, 0.25-0.125mm, and smaller than 0.125mm are obtained, and these three kinds of materials are respectively filtered through a plate and frame filter press When the water content reaches 31wt%, they will be milled in the wheel mill respectively. The gap between the wheel mills is 10mm. The materials after the wheel mill will enter a group of grading tanks for classification after the slurry is mixed. The materials with a particle size greater than 0.25mm will be classified after wheel milling. Products with a particle size of less than 100 μm are produced,...

Embodiment 2

[0020] Weigh 5000kg of synthetic fluorphlogopite mica fragments with a particle size of 2.5-5mm, scrub them with a 20-mesh screen washing machine, and wash them with a water pressure of 0.18MPa. After scrubbing, the synthetic mica fragments enter the pulping machine for pulping. The water pressure is 6MPa. After pulping and sieving, materials with three particle sizes of greater than 0.25mm, 0.25-0.125mm, and less than 0.125mm are obtained. These three materials are respectively filtered through a plate and frame filter press until the water content is 35wt. %, respectively enter the wheel mill for grinding, the wheel mill gap is 25mm, the material after the wheel mill is mixed into a group of grading pools for classification, and the material with a particle size greater than 0.25mm is separated after the wheel mill with a particle size of less than 100μm For the products, materials with a particle size greater than 100 μm are returned to the wheel mill, and the material with ...

Embodiment 3

[0022] Weigh 5000kg of synthetic fluorophlogopite mica fragments with a particle size greater than 5mm, scrub them with a 20-mesh screen washing machine, and rinse with a water pressure of 0.20 MPa. After pulping and screening, materials with three particle sizes greater than 0.25mm, 0.25-0.125mm, and less than 0.125mm were obtained. These three materials were respectively filtered through a plate and frame filter press until the water content was 40wt%. They are respectively fed into the wheel mill for grinding, and the gap between the wheel mills is 40mm. The materials after the wheel mill are mixed into a group of grading pools for classification. The materials with a particle size greater than 0.25mm are separated into products with a particle size of less than 100μm after wheel milling , materials with a particle size greater than 100 μm are returned to the wheel mill, and the material with a particle size of 0.25-0.125 mm is wheel-milled and classified to produce powder p...

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PUM

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Abstract

The invention discloses a method for preparing synthesized KMg3(AlSi3O10)F2 crystal powder through a wet process. The method comprises the following steps: (1) crushing synthesized fluorophlogopite with the particle diameter of more than 0.85 millimeters, and using an ore washer for scrubbing and sieving so as to remove impurities, wherein the scrubbing hydraulic pressure is between 0.15 and 0.2 MPa; (2) making the scrubbed materials enter a pulper for pulping, wherein the pulping hydraulic pressure is between 5 and 7 MPa; (3) performing sieve classification on the obtained materials by pulping into three materials with three kinds of particle diameter, namely the materials with the particle diameter of more than 0.25 millimeter, the materials with the particle diameter of between 0.25 and 0.125 millimeter and the materials with the particle diameter of less than 0.125 millimeter, and performing pressure filtration on the three materials respectively, wherein the water content of the materials after pressure filtration is between 31 and 40 weight percent; (4) using a wheel mill to perform fine grinding and sizing on the three materials respectively, wherein the rolling gap is between 10 and 40 millimeters, the sizing is performed in a group of sizing pools, the materials with the particle diameter of more than 0.25 millimeter are subjected to rolling and sizing to generate powder products with the particle diameter of less than 100 mu m, the materials with the particle diameter of between 0.25 and 0.125 millimeter are subjected to rolling and sizing to generate powder products with the particle diameter of less than 250 mu m, and the materials with the particle diameter of less than 0.125 millimeter are subjected to rolling and sizing to generate powder products with the particle diameter of less than 160 mu m; and (5) using a plate-and-frame filter press to perform pressure filtration on the products after sizing, making the water content of the products be less.

Description

technical field [0001] The present invention relates to a kind of synthetic KMg 3 (AlSi 3 o 10 ) F 2 The invention discloses a preparation method of crystal powder, which belongs to the field of preparation of non-metallic artificially synthesized crystal materials. Background technique [0002] KMg 3 (AlSi 3 o 10 ) F 2 The crystal is commonly known as fluorine phlogopite, and KMg is synthesized by internal heat melting method 3 (AlSi 3 o 10 ) F 2 Crystal is already a relatively mature technology. Its advantage is that the batch output is large, each batch output can reach more than 15 tons, the production cost is low, and mass production can be realized. mica pieces. Due to processing technology, these mica fragments cannot be effectively utilized except for a small amount of mica paper and mica board, which limits the development of this industry. After 2004, China has synthetic fluoromica powder on the market, and it has been successfully applied in many fiel...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): C01B33/26
Inventor 杨伦全谭光琼
Owner 鹿寨七色珠光云母材料有限公司
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