Javascript must be enabled to continue!
Optimization of the Process of Producing Ceramic Granite From Mineral Raw Materials and Secondary Raw Material
View through CrossRef
The development of the ceramic industry requires the creation of new innovative products with improved properties. Given the growing demand for high-quality finishing materials and the limited availability of traditional raw materials, the search for more efficient technologies for porcelain stoneware production is a relevant challenge. The aim of this study was to develop porcelain stoneware with enhanced performance characteristics. The research presents the results of a study aimed at improving the production technology of porcelain stoneware in Kazakhstan using local raw materials and microsilica. The raw materials from the Turkestan region were examined for their suitability for porcelain stoneware production. The influence of technological parameters (firing temperature, particle size) on the properties of porcelain stoneware was studied. New ceramic compositions with various microsilica contents, a byproduct of silicon production, were investigated. Different compositions with varying raw material mixtures and microsilica content were prepared and fired at temperatures of 1100, 1150, and 1200°C. The optimization of process parameters for producing porcelain stoneware in different compositions showed the degree of yield dependence on firing temperature and time, as well as the effect of microsilica content. The temperature, time, and visually determined parameters at which different yield values were achieved were highlighted in different colors. The results showed that changes in the mixture composition and sintering temperature affect the quality of ceramic tiles. The final experimental conclusions demonstrated that the production of ceramic tiles containing up to 3% microsilica at a firing temperature of 1200°C, with improved engineering characteristics that meet the minimum ISO-13006 standards, is quite feasible. The addition of microsilica increases the flexural strength of porcelain stoneware to 41 MPa (exceeding the standard), reduces water absorption to 0.023%, increases frost resistance to 107 cycles, and also enhances shrinkage. These findings open new prospects for the development of the domestic ceramic industry, the expansion of the product range, and the resolution of environmental issues.
Title: Optimization of the Process of Producing Ceramic Granite From Mineral Raw Materials and Secondary Raw Material
Description:
The development of the ceramic industry requires the creation of new innovative products with improved properties.
Given the growing demand for high-quality finishing materials and the limited availability of traditional raw materials, the search for more efficient technologies for porcelain stoneware production is a relevant challenge.
The aim of this study was to develop porcelain stoneware with enhanced performance characteristics.
The research presents the results of a study aimed at improving the production technology of porcelain stoneware in Kazakhstan using local raw materials and microsilica.
The raw materials from the Turkestan region were examined for their suitability for porcelain stoneware production.
The influence of technological parameters (firing temperature, particle size) on the properties of porcelain stoneware was studied.
New ceramic compositions with various microsilica contents, a byproduct of silicon production, were investigated.
Different compositions with varying raw material mixtures and microsilica content were prepared and fired at temperatures of 1100, 1150, and 1200°C.
The optimization of process parameters for producing porcelain stoneware in different compositions showed the degree of yield dependence on firing temperature and time, as well as the effect of microsilica content.
The temperature, time, and visually determined parameters at which different yield values were achieved were highlighted in different colors.
The results showed that changes in the mixture composition and sintering temperature affect the quality of ceramic tiles.
The final experimental conclusions demonstrated that the production of ceramic tiles containing up to 3% microsilica at a firing temperature of 1200°C, with improved engineering characteristics that meet the minimum ISO-13006 standards, is quite feasible.
The addition of microsilica increases the flexural strength of porcelain stoneware to 41 MPa (exceeding the standard), reduces water absorption to 0.
023%, increases frost resistance to 107 cycles, and also enhances shrinkage.
These findings open new prospects for the development of the domestic ceramic industry, the expansion of the product range, and the resolution of environmental issues.
Related Results
Granite Coasts
Granite Coasts
Although no estimate of the aggregate length of granite rock coasts around the world is available, they surely make up quite a significant proportion of the total, especially aroun...
Geology of Granite
Geology of Granite
The unifying theme for granite landscapes of the world is the granite itself, hence it is logical to start with a brief account of granite geology. For obvious reasons of space and...
Granite Landscapes Transformed
Granite Landscapes Transformed
An analysis of granite landscapes would not be complete if the modifying human factor were ignored (Godard, 1977). Over the millennia humans have used the resources provided by gra...
Mechanical Behavior of Concrete Containing Copper Slag and Granite Powder as Alternative Fine Aggregates
Mechanical Behavior of Concrete Containing Copper Slag and Granite Powder as Alternative Fine Aggregates
Concrete is the most popular building material in the world. It is the most consumable material after water. Concrete is a mixer of binding material, fine aggregate, coarse aggrega...
Geological Controls in the Evolution of Granite Areas
Geological Controls in the Evolution of Granite Areas
The preceding chapters have already indicated that granite properties and structures play a key role in the progress of rock weathering, the development of many medium and small-sc...
Studi Kasus Penerapan Continuous Review Sistem (Q) dalam Manajemen Persediaan untuk Optimalisasi Biaya Produksi di UD. Indokarya Brass
Studi Kasus Penerapan Continuous Review Sistem (Q) dalam Manajemen Persediaan untuk Optimalisasi Biaya Produksi di UD. Indokarya Brass
UD. Indokarya Brass is a company engaged in the brass craft industry, UD. Indokarya Brass is located in Growong Lor Village, Juwana District, Pati Regency, Central Java Province. F...
The Yichun Ta-Sn-Li Deposit, South China: Evidence for Extreme Chemical Fractionation in F-Li-P-Rich Magma
The Yichun Ta-Sn-Li Deposit, South China: Evidence for Extreme Chemical Fractionation in F-Li-P-Rich Magma
Abstract
The Yichun Ta-Sn-Li deposit occurs within the 9.5-km2 Yashan Igneous Complex, which is made up of felsic, peraluminous intrusions including two-mica, Li-mic...
An Experimental Research on Partial Replacement of Fine Aggregate with Granite Powder
An Experimental Research on Partial Replacement of Fine Aggregate with Granite Powder
Abstract: The most commonly used fine aggregate across world is river sand. River sand is expensive due to excessive cost of transportation from natural sources. The use of sand in...

