Production process of 3D (three-dimensional) digital inkjet ceramic tile

A technology of digital inkjet and production technology, which is applied in the field of architectural ceramics, can solve the problems of product upgrade difficulty and unrealizable color, and achieve the effect of three-dimensional mirror effect and beautiful mirror effect

Inactive Publication Date: 2012-06-20
GUANGDONG NEW ZHONGYUAN CERAMICS
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0005] But at present, inkjet ink only has four colors, and some colors are still unavailable, a

Method used

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Embodiment Construction

[0036] In order for those skilled in the art to better understand the technical solutions provided by the present invention, the following will be described in conjunction with specific embodiments.

[0037] The production process of the 3D digital inkjet ceramic tile provided by the invention comprises the following steps:

[0038] (1) Prepare blank, surface glaze and flower glaze;

[0039] (2) The blank is formed in the mold brick to form an adobe brick, and the forming pressure of the blank is 2800Mpa / cm 2 -3400Mpa / cm 2 ;

[0040] (3) The shaped bricks are sintered and dried, and the sintering temperature is 1150°C-1800°C;

[0041] (4) Glaze the dry body, the fluidity of the glaze slurry is 30S / 100M1-40S / 100M1, the fluctuation is 0S-5S, and the specific gravity of the glaze slurry is 175g / cm 2 -190g / cm 2 , the amount of glaze is 0.05g / cm 2 -0.15g / cm 2 ;

[0042] (5) Inkjet printing, the inkjet printing speed matches the rotation speed of the brick feeding belt, and ...

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PUM

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Abstract

The invention discloses a production process of a 3D (three-dimensional) digital inkjet ceramic tile. The process comprises the following steps of: (1) preparing a blank, overglaze and fancy glaze; (2) molding the blank in a mold tile to form a blank tile, wherein the blank molding pressure is 2,800-3,400 MPa/cm<2>; (3) sintering and drying the molded blank tile at the sintering temperature of 1,150-1,800 DEG C; (4) sprinkling glaze onto a dry blank, wherein the flowability of glaze slip is 30S/100M1-40S/100M1, the fluctuation is 0S-5S, the specific weight of the glaze slip is 175-190 g/cm<2>, and glaze amount is 0.05-0.15 g/cm<2>; (5) performing inkjet printing, wherein an inkjet printing speed is matched with the rotating speed of a tile feeding belt, and is set as 20-25 m/min; (6) feeding into a kiln for baking at the baking temperature of 1,080-1,125 DEG C; and (7) edging. Due to the adoption of the production process of the 3D digital inkjet ceramic tile, a produced product has high definition, stereo perception and a good mirror face effect, can contribute to making the cleanliness and brightness of an entire space stand out, and has the characteristics of durability, slip prevention, dust prevention, easiness in cleaning, and the like.

Description

technical field [0001] The invention relates to the field of architectural ceramics, in particular to a production process for 3D digital inkjet tiles. Background technique [0002] With the general trend of the country building a conservation-oriented society and taking the road of sustainable development, under the background of the industrial transfer of the ceramic industry, ceramic production technology has become a road of low energy consumption, high concentration, automation, concise process and outstanding product effect. kind of necessity. [0003] With the development of society and the improvement of living standards, people have higher and higher requirements for various home decorations. First of all, with the country's promotion and support of environmental protection, people are becoming more and more environmentally friendly for decorative materials. They all hope to use environmentally friendly products to reduce pollution to nature, and to reduce the curr...

Claims

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Application Information

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IPC IPC(8): C04B35/14C04B35/622C04B41/86
Inventor 王火生
Owner GUANGDONG NEW ZHONGYUAN CERAMICS
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