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Influence of mixing/milling on sintering and technological properties of anorthite based porcelainised stoneware

机译:混合/铣削对基于钙长石的瓷质stone器的烧结和工艺性能的影响

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摘要

The effect of mixing/milling time on sintering and technological properties of a new porcelainised stoneware body was investigated. This stoneware body is basically based on anorthite (CaO centre dot Al_2O_3 centre dot 2SiO_2) crystals development in the microstructure and was fabricated by using wollastonite, calcined alumina, quartz, Ukrainian ball clay and some magnesia as raw materials. Laboratory scale tests were carried out starting from mixing/milling of a reference body composition for different durations (3, 12, 24, 48 and 96 h) in a ball mill. Sintering and technological properties such as density, water absorption, firing shrinkage, flexural strength of each body were measured. X-ray diffraction (XRD) and scanning electron microscopy (SEM) studies were carried out to analyse the microstructure. It was found that mixing/milling has a major effect on the particle size distribution, which in turn controls particles packing. High degree of close particle packing increases the densification by reducing the number and size of closed porosity in fired microstructure, which in turn contributes to the improvement of flexural strength.
机译:研究了混合/研磨时间对烧结的新瓷质body器体的烧结和工艺性能的影响。这种stone器的主体基本上是基于钙长石(CaO中心点Al_2O_3中心点2SiO_2)的晶体结构,它是用硅灰石,煅烧氧化铝,石英,乌克兰球粘土和一些氧化镁为原料制成的。在球磨机中,从参比体成分的混合/研磨开始,进行了不同持续时间(3、12、24、48和96小时)的实验室规模测试。测量了烧结和技术性能,例如密度,吸水率,烧成收缩率,每个主体的弯曲强度。进行了X射线衍射(XRD)和扫描电子显微镜(SEM)研究以分析其微观结构。已发现混合/研磨对粒度分布有重大影响,而粒度分布又控制了颗粒的堆积。高度紧密的颗粒堆积可通过减少烧结微结构中的闭合孔隙的数量和大小来增加致密化,进而有助于提高抗弯强度。

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