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Process for manufacturing infrared ceramic tile

A production process and technology of ceramic tiles, applied in the direction of ceramic products, applications, household appliances, etc., can solve the problems of reducing yield, increasing production cost, demoulding, etc., and achieve the goal of improving production efficiency, facilitating production and processing, and high yield Effect

Inactive Publication Date: 2016-11-30
佛山市顺德区昇煌节能材料有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

In the prior art, it is difficult for brick embryos to be demoulded in the mold of the forming machine, which not only reduces the yield of finished products, but also increases the production cost

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment Construction

[0020] A kind of manufacturing process of infrared ceramic brick provided by the present embodiment comprises the following steps:

[0021] Step 1, weigh raw materials according to mass ratio, among them, cordierite 60%-80%, black mud 5%-15%, cellulose 1%-3%, release agent 1%-5%, pore-forming agent 10% -20%, mix the above raw materials uniformly at room temperature; the best implementation, cordierite 71%, black mud 11%, cellulose 2%, release agent 3%, pore-forming agent 13%; here, The cordierite includes two specifications, one is 325 mesh cordierite, the other is 150 mesh cordierite, the ratio of 325 mesh cordierite to 150 mesh cordierite is 4-5:6-4; The specification of black mud is 300-400 mesh;

[0022] Step 2, mixing and stirring the above-mentioned mixed raw materials and water, the ratio of the mixed raw materials and water is 80%-90%: 20%-10%, and the mixing and stirring process is completed in the mixer; the optimal implementation mode , the ratio of raw material t...

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PUM

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Abstract

The invention discloses a manufacturing process of infrared ceramic tiles, comprising the following steps: step 1, weighing raw materials according to the mass ratio, including cordierite, black mud, cellulose, release agent, pore-forming agent, and mixing the above raw materials evenly Step 2, mixing and stirring the above-mentioned mixed raw materials with water; Step 3, sending the above-mentioned materials mixed with water into a vacuum mud mill for stirring and extruding to obtain clay; Step 4, placing the above-mentioned clay in Press molding on a molding machine to obtain brick embryos; step 5, after drying the brick embryos, put them into a kiln for firing, and then cool them naturally to room temperature to obtain finished products. The present invention uses cordierite and black stone as raw materials, and adds cellulose, so that the mixed clay has good fluidity, which is convenient for the long needle insertion of the molding machine, and has the viscosity that can be molded but not stick to the mold, which is convenient for production and processing. The yield is high and the production efficiency is improved.

Description

technical field [0001] The invention relates to a manufacturing process of infrared ceramic tiles. Background technique [0002] Far-infrared ceramic tiles are mainly characterized by the ability to radiate more far-infrared rays (higher infrared radiation rate) than normal objects. Using this special performance, honeycomb, mesh or tubular elements made of far-infrared ceramic tiles, Used in fuel vehicles, ships, and stoves, the energy saving effect can reach more than 5%, which is of certain significance for reducing fuel pollution. [0003] The production process of far-infrared ceramic tiles is to mix the raw materials to form clay first, then send them to the molding machine for compression molding, and then send the pressed brick embryos to the kiln for drying, and then naturally cool to room temperature, after grinding Finished product after edge and packaging. When pressing the brick embryo with a honeycomb structure, it is necessary to insert the long needles arra...

Claims

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Application Information

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IPC IPC(8): C04B35/195C04B35/636C04B38/06
CPCC04B35/195C04B35/6365C04B38/0675C04B2235/349C04B2235/602C04B38/0006
Inventor 聂喜庆张之洪
Owner 佛山市顺德区昇煌节能材料有限公司
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