Preparation of porcelain building tiles using “K2O–Na2O” feldspar flux as a modifier agent of low-temperature firing

In this paper, to save energy and reduce consumption in building ceramic process, the low temperature porcelain building tiles were prepared by fast firing process using two kinds of “K2O–Na2O” feldspar with different amounts of alkaline and alkaline earth oxides fluxing agents, Si/Al ratio and melt...

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Veröffentlicht in:Journal of the Ceramic Society of Japan 2017/09/01, Vol.125(9), pp.690-694
Hauptverfasser: DONG, Weixia, BAO, Qifu, ZHOU, Jian-er, ZHAO, Tiangui, LIU, Kun, HU, Zhiwei
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container_end_page 694
container_issue 9
container_start_page 690
container_title Journal of the Ceramic Society of Japan
container_volume 125
creator DONG, Weixia
BAO, Qifu
ZHOU, Jian-er
ZHAO, Tiangui
LIU, Kun
HU, Zhiwei
description In this paper, to save energy and reduce consumption in building ceramic process, the low temperature porcelain building tiles were prepared by fast firing process using two kinds of “K2O–Na2O” feldspar with different amounts of alkaline and alkaline earth oxides fluxing agents, Si/Al ratio and melting point. The sintering properties of the samples were evaluated by linear shrinkage, water absorption and bulk density. The crystalline phase and microstructure of the samples were characterized by X-ray diffraction and scanning electron microscope. The results showed that the optimum linear shrinkage of 7.55%, water absorption of 0.03% and bending strength of 78.3–85.8 MPa can be achieved for the sample fired at 1170–1190°C, which is attributed to the effect of the combined “K2O–Na2O” feldspar flux system.
doi_str_mv 10.2109/jcersj2.16327
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subjects Alkaline earth oxides
Aluminum
Bend strength
Buildings
Bulk density
Energy conservation
Fast firing
Feldspar
Firing temperature
Flux
Fluxing
Low temperature
Porcelain
Porcelain building tile
Shrinkage
Sintering properties
Tiles
Water absorption
title Preparation of porcelain building tiles using “K2O–Na2O” feldspar flux as a modifier agent of low-temperature firing
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