High-strength ceramic tile

A high-strength ceramic tile technology, applied in the field of building decoration materials, can solve the problems of limited mold shrinkage, low green body sintering degree, limited green body strength, etc., and achieve good product quality, improved pressure bearing capacity, and low production cost. Effect

Inactive Publication Date: 2007-10-31
霍镰泉
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

In the prior art, ceramic products have become the object of choice for customers due to their high density, small shrinkage deformation, good wear resistance, and good decorative effect, and have a broad market. However, due to the strict requirements for material selection in the prior art, Some raw materials have high cost, limited mold shrinkage, low body sintering degree, and limited strength of the green body, resulting in a certain damage rate of ceramic tiles in the process of production, packaging and transportation, high cost, and limited scope of application; people There is a need for a high-strength ceramic tile with wide selection of materials, high body strength, low breakage rate, wide application range and low cost

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment Construction

[0018] components

[0019] Blank forming pressure

[0020] The above-mentioned examples are made into finished products according to the following process flow: raw material batching → ball milling → process inspection → blank batching → sieving → iron removal → slurry mixing → sieving → iron removal → slurry storage → spraying → material storage → process inspection → stale →forming→process inspection→drying→process inspection→bisque firing→process inspection→glazing→process inspection→printing→glaze firing→process inspection→edging→grading→packing→warehousing.

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PUM

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Abstract

The invention discloses a high strength ceramic tile, which comprises the following steps: allocating mass percent of each component as 60-68% SiO2, 16-19% ALO3, 0. 5-2% Fe2O3, 0. 5-3% TiO2, 1-3% CaO, 1-3% MgO, 2-5% K2O, 1-3% NaO2 and 4-8% IL; setting the balling slip glaze fineness at 9-13% of 250 order sieve residue; setting the specific gravity of serous at 1. 68-1. 82g/cm3; setting the current rate of the slurry at about 15-50S; choosing the warehousing moisture mass percent at 7-8% of the powder and the deliver from godown moisture percent at 6. 8-7. 85; setting the particle size of the powder at 50-60% of 40 order sieve residue and 30-40% of 60 order sieve residue. This invention can increase bearing force by about 40% of glazed tile, which decreases damage ratio and cost.

Description

technical field [0001] The invention relates to a building decoration material, in particular to a high-strength floor tile. Background technique [0002] With the development of society, building decoration materials with environmental protection, high quality and low cost have become a new field of research and development in today's construction industry. In the prior art, ceramic products have become the object of choice for customers due to their high density, small shrinkage deformation, good wear resistance, and good decorative effect, and have a broad market. However, due to the strict requirements for material selection in the prior art, Some raw materials have high cost, limited mold shrinkage, low body sintering degree, and limited strength of the green body, resulting in a certain damage rate of ceramic tiles in the process of production, packaging and transportation, high cost, and limited scope of application; people There is a need for a high-strength ceramic...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): C04B35/14
Inventor 张义平
Owner 霍镰泉
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