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Effects of alumina and white fused alumina addition on technological properties of transparent floor tile glazes

机译:氧化铝和白色融合氧化铝的影响对透明楼层瓷砖玻璃的技术特性

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摘要

In ceramic tile manufacturing,alpha-Al(2)O(3)is the main type of alumina used in ceramic body and glaze formulations. It acts as an opacifier in porcelain tile bodies and as a matting agent in glazes. White fused alumina (WFA) is produced by fusing calcined alumina in an electric arc furnace under carefully controlled conditions. It is generally preferred in ceramic floor tile glazes in order to increase abrasion resistance. The aim of this study was to establish a better understanding of how alumina and WFA addition affects the thermal behavior, microstructural evolution and aesthetic properties of transparent floor tile glazes. The results showed that both alumina and WFA increased the sintering and melting temperatures of the standard commercial glaze. Corund was detected in the main phase with WFA addition in tile glazes. There were no other crystalline phases formed since WFA did not react with glassy phase. This behavior can be attributed to higher refractoriness of fused alumina. Smoother surface and homogenous structure were observed in the glazes with WFA addition. However, anorthite and corund phases were detected in the glazes with alumina addition. High crystallization glazes with rough surfaces were observed in these glazes. Alumina was found to be more effective to increase opacity and reducing glossiness compared WFA addition.
机译:在陶瓷瓷砖制造中,α-Al(2)O(3)是陶瓷体和釉料配方中使用的主要类型的氧化铝。它充当瓷砖体中的遮光剂,作为釉料的消光剂。白色熔融氧化铝(WFA)是通过在精心控制的条件下熔化在电弧炉中的煅烧氧化铝产生的。它通常优选在陶瓷地板瓷砖上玻璃中,以增加耐磨性。本研究的目的是更好地了解氧化铝和WFA如何增加如何影响透明地板瓷砖玻璃的热行为,微观结构演化和美学性质。结果表明,氧化铝和WFA都增加了标准商业釉料的烧结和熔化温度。在主阶段检测到瓷砖上的主阶段中检测到金冠。由于WFA与玻璃相没有反应,因此没有形成其他结晶相。这种行为可以归因于融合氧化铝的更高耐磨性。用WFA加入的釉料中观察到光滑的表面和均匀结构。然而,在用氧化铝添加的釉料中检测到钙质和金刚序相。在这些釉料中观察到具有粗糙表面的高结晶釉。发现氧化铝更有效地增加不透明度和减少嗜阴性的WFA添加。

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