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首页> 外文期刊>Chinese Journal of Structural Chemistry >Relationships among Preparative Technique, Phase Composition and Bending Strength of Bauxite Porcelain
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Relationships among Preparative Technique, Phase Composition and Bending Strength of Bauxite Porcelain

机译:铝土矿瓷的制备工艺,相组成与抗弯强度的关系

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摘要

Bauxite porcelain can be sintered to make its bending strength reach 179Mpa by using sintered bauxite, clay and potash feldspar and albite as the main raw materials in oxidation atmosphere under the normal pressure. XRD, SEM and so on are utilized to study the relationships between factors like the composition of ingot, reduction particle size and heat insulating time at sintering temperature and the phase composition, microstructure and bending strength of ceramic body. The results show that the main phases in bauxite porcelain are corundum, mullite and glass, and the mullite is composed of two parts: primary mullite formed by clay conversion and secondary mullite whiskers precipitating from high temperature melt. The bending strength of ceramic body can be improved by enhancing the content of sintered bauxite in the formula: the smaller the particle size of the ceramic body is, the higher the bending strength will be. The high-temperature heat insulating technique is beneficial to the precipitation of certain quantitative secondary mullite whiskers so as to remarkably improve the strength of glass phase and ceramic body.
机译:在常压下,以氧化铝土为主要原料,可将铝土矿,粘土,钾长石,钠长石等烧结为主要原料,从而使铝土矿烧结体的弯曲强度达到179Mpa。利用XRD,SEM等方法研究了铸锭组成,烧结温度下的还原粒径和保温时间等因素与陶瓷体的相组成,显微组织和抗弯强度之间的关系。结果表明,铝土矿瓷的主要相为刚玉,莫来石和玻璃,莫来石由粘土转化形成的一次莫来石和从高温熔体中析出的二次莫来石晶须组成。通过增加下式中的铝土矿烧结物的含量,可以提高陶瓷体的弯曲强度:陶瓷体的粒径越小,则弯曲强度越高。高温绝热技术有利于某些定量的二次莫来石晶须的析出,从而显着提高玻璃相和陶瓷体的强度。

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