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Porcelain tile microstructure: Implications for polished tile properties

机译:陶瓷砖的微观结构:对抛光砖性能的影响

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The present study was undertaken to determine the influence of sintered porcelain tile microstructure on mechanical properties (fracture strength, modulus of elasticity and fracture toughness) and surface properties (gloss and stain resistance). To obtain sintered specimens with different microstructures the peak firing temperature was varied for bodies made with industrial spray-dried powder, and sets of test compositions were also made in which quartz content and quartz particle size were varied. Liquid-phase sintering is the typical densification mechanism involved in the achievement of minimum porosity, which is characterised by isolated round pores. Bloating occurred above the firing temperature for minimum porosity. Increases in quartz content and quartz particle size in the starting composition led to reduced body sinterability, and thus gave rise to higher porosity in the fired tile. Mechanical properties were adversely affected by an increase in fired tile porosity. For the same variation in porosity, mechanical properties were more sensitive to the change in quartz content than to changes in particle size. No toughening effect was observed with a rise in quartz content or a decrease in particle size: mechanical properties depended primarily on sintered specimen porosity. Gloss and stain resistance (which characterise polished surface quality) varied with surface porosity, both showing the highest values for lowest porosity. The relationship between porosity and gloss was close to linear.
机译:进行本研究以确定烧结的瓷砖微结构对机械性能(断裂强度,弹性模量和断裂韧性)和表面性能(光泽和耐沾污性)的影响。为了获得具有不同微观结构的烧结样品,改变了用工业喷雾干燥粉末制成的物体的最高烧成温度,并且还制备了一组测试组合物,其中石英含量和石英粒径是变化的。液相烧结是实现最小孔隙率的典型致密化机制,其特征是孤立的圆形孔。在烧成温度以上产生气孔以使孔隙率最小。起始组合物中石英含量和石英颗粒尺寸的增加导致体的可烧结性降低,因此在烧结砖中产生更高的孔隙率。烧制的瓷砖孔隙率的增加对机械性能产生了不利影响。对于相同的孔隙率变化,机械性能对石英含量的变化比对粒度的变化更敏感。石英含量的增加或粒径的减小均未观察到增韧作用:机械性能主要取决于烧结后的样品孔隙率。光泽度和耐沾污性(表征抛光的表面质量)随表面孔隙率的变化而变化,两者都显示出最高的值和最低的孔隙率。孔隙率和光泽度之间的关系接近线性。

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