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Microstructural evolution and crystallization mechanism of zircon from frit glaze

机译:釉料中锆石的微观组织演变及结晶机理

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摘要

Zircon (ZrSiO4) is widely used as a glaze opacifier in the ceramic industry. The crystallization mechanism of ZrSiO4 from a CaO-riched zirconium-based frit glaze was studied by XRD, SEM, and DSC in this work. Isothermal and non-isothermal heat treatments were used to study the phase development and microstructural evolution during the firing process. It was found that t-ZrO2 and Ca2ZrSi4O12 were first crystallized at a relative low temperature and then converted to ZrSiO4 with the increasing of temperature. ZrSiO4 originating from t-ZrO2 has an inward growth and an outward growth, while ZrSiO4 transformed from Ca2ZrSi4O12 only has an outward growth. SEM showed that ZrSiO4 appeared to be a rod shape in fired samples. The calculated activation energy for ZrSiO4 is 311.2 kJ/mol, and the Avrami index (n) is 0.35-0.39. This indicates the one-dimensional diffusion-controlled growth of ZrSiO4, which explains the formation of rod-shape ZrSiat crystal. (C) 2015 Elsevier Ltd. All rights reserved.
机译:锆石(ZrSiO4)在陶瓷工业中广泛用作釉不透明剂。本文通过XRD,SEM和DSC研究了从富含CaO的锆基玻璃料釉中ZrSiO4的结晶机理。等温和非等温热处理用于研究烧成过程中的相发展和微结构演变。发现t-ZrO2和Ca2ZrSi4O12首先在相对较低的温度下结晶,然后随着温度的升高转化为ZrSiO4。源自t-ZrO2的ZrSiO4具有向内生长和向外生长,而从Ca2ZrSi4O12转变而来的ZrSiO4仅具有向外生长。 SEM显示,在烧成的样品中,ZrSiO 4呈棒状。计算出的ZrSiO4活化能为311.2 kJ / mol,Avrami指数(n)为0.35-0.39。这表明ZrSiO4的一维扩散受控生长,这说明了棒状ZrSiat晶体的形成。 (C)2015 Elsevier Ltd.保留所有权利。

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