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Effect of kaolinite, illite and talc on the processing properties and mullite content of porcelain stoneware tiles

机译:高岭石,伊利石和滑石对瓷stone砖加工性能和莫来石含量的影响

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摘要

In this study, the effect of talc, illite and kaolinite on some properties of porcelain stoneware tiles was investigated. Raw materials available locally in a Brazilian ceramics production plant were used. The mixtures were defined through the use of a 2~3 factorial design of experiments. The starting point was a composition reported in the literature as follows: 35% kaolinite, 25% quartz and 40% albite. The mixtures were prepared by wet grinding, followed by spray drying. The conformation was performed by uniaxial pressing. The firing was carried out in an electric furnace, with the temperature varying between 1160 and 1260 ℃, according to the maximum densification of each composition. The residence time was 6 min. Two cooling conditions were applied: 0.8 and 4.0 ℃/s. The dry bulk density, fired porosity, pyroplastic deformation and three-point flexural strength were measured. The contents of mullite, quartz and vitreous phase were quantified using the Rietveld method with fluorite as the internal standard. The results showed that there is an optimum content of mullite which maximizes the increase in the flexural strength of the pieces submitted to rapid cooling. It was possible to distinguish the effect of the mineralogical phases on the formation of the mullite and the processing properties.
机译:在这项研究中,研究了滑石,伊利石和高岭石对陶瓷粗陶瓷砖某些性能的影响。使用了巴西陶瓷生产厂本地可用的原材料。通过使用2〜3个因子设计实验来定义混合物。起点是文献中报道的如下组成:35%的高岭石,25%的石英和40%的钠长石。混合物通过湿磨制备,然后喷雾干燥。通过单轴压制进行构象。根据每种组合物的最大密度,在电炉中进行焙烧,温度在1160和1260℃之间变化。停留时间为6分钟。施加两个冷却条件:0.8和4.0℃/ s。测量了干堆积密度,烧成孔隙率,热塑性变形和三点弯曲强度。莫来石,石英和玻璃质相的含量使用萤石作为内标物,采用Rietveld方法进行定量。结果表明,存在莫来石的最佳含量,其使经受快速冷却的碎片的抗弯强度的增加最大化。可以区分矿物相对莫来石的形成和加工性能的影响。

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  • 来源
    《Materials Science and Engineering》 |2014年第17期|533-539|共7页
  • 作者单位

    Eliane Revestimentos Ceramicos, Rua Maximiliano Gaidzinski, 245, 88845-000 Cocal do Sul, Brazil,Reactors and Industrial Processes Research Group, Materials Science and Engineering Post-graduate Program, Universidade do Extremo Sul Catarinense, Avenida Universitaria, 1105, 88806-000 Criciuma, Brazil;

    Instituto Federal Catarinense - Campus Avancado Sombrio, Rua Francisco Caetano Lumertz, 818 - Bairro Januaria, 88960-000 Sombrio, Brazil;

    Reactors and Industrial Processes Research Group, Materials Science and Engineering Post-graduate Program, Universidade do Extremo Sul Catarinense, Avenida Universitaria, 1105, 88806-000 Criciuma, Brazil;

    Reactors and Industrial Processes Research Group, Materials Science and Engineering Post-graduate Program, Universidade do Extremo Sul Catarinense, Avenida Universitaria, 1105, 88806-000 Criciuma, Brazil;

    Reactors and Industrial Processes Research Group, Materials Science and Engineering Post-graduate Program, Universidade do Extremo Sul Catarinense, Avenida Universitaria, 1105, 88806-000 Criciuma, Brazil;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    X-ray diffraction; Ceramics; Sintering; Fracture;

    机译:X射线衍射;陶瓷;烧结;断裂;

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