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Effect of In-situ Formed Spinel Phase on the Mechanical Properties of Zirconia Ceramics

机译:原位成型尖晶石相对氧化锆陶瓷机械性能的影响

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The reaction-sintered zirconia-alumina and zirconia-spinel ceramics having low firing shrinkage were prepared from ZrO{sub}2(Ca-PSZ)/Al and ZrO{sub}2(Baddellyite)/MgAl powder mixtures via the attrition milling and the effect of the characteristics of used raw powders was investigated. Flaky Al powders mixed with coarse Ca-PSZ powders was not effectively comminuted due to lower hardness of zirconia powders. So by using the alumina ball media or coarse Al{sub}2O{sub}3 powders rather than Al, the milling efficiency could be much more increased. When fused Ca-PSZ powder was reaction-sintered with Al at 1550°C for 3 hours, the reaction-sintering and densification were somewhat difficult because the Ca-PSZ/Al powder mixture was not effectively comminuted. And the Ca ion in Ca-PSZ grains diffused into alumina grains during sintering so that the unstabilization of Ca-PSZ body was occurred which gave the cracks in the specimens. But when MgAl alloy powder was added to monoclinic zirconia, Mg and Al became to oxide at first and subsequently converted to spinel (MgAl{sub}2O{sub}4) during heating and finally unreacted MgO seemed to stabilize the zirconia. The oxides which formed at the oxidation process would have very fine grain size so that the reaction sintering was more effective to densification and homogeneous microstructure. The mechanical properties of reaction-sintered stabilized zirconia/spinel composite were better than only MgO stabilized zirconia. Sintering behavior in reaction and mechanical properties of sintered body were examined, with emphasis on the relations between spinel formation and mechanical properties.
机译:通过磨削铣削和浸入烧制收缩率低的反应烧结氧化锆 - 氧化铝和氧化锆 - 晶晶陶瓷,由ZrO {Sub} 2(Ca-PSZ)/ Al和ZRO {Sub} 2(Baddellyite)/ Mgal粉末混合物制备研究了使用的原料粉末特性的影响。由于氧化锆粉末的较低硬度,不有效地粉碎与粗CA-PSZ粉末混合的片状Al粉末。因此,通过使用氧化铝球介质或粗al {sub} 2o {sub} 3粉末而不是Al,铣削效率可能会增加。当稠合的Ca-PSZ粉末在1550℃下用Al烧结3小时时,反应烧结和致密化在某种程度上困难,因为Ca-PSZ / Al粉末混合物没有有效粉碎。在烧结期间Ca-PSZ晶粒中的Ca离子扩散到氧化铝颗粒中,使得发生了Ca-PSZ体的未储存,其在样本中产生了裂缝。但是,当将MgAl合金粉末加入单斜替尼氧化锆时,Mg和Al首先在加热期间首先转化为氧化物,然后在加热期间转化为尖晶石(MgAl {Sub} 2O} 4),最后未反应的MgO似乎稳定氧化锆。在氧化过程中形成的氧化物具有非常细的粒度,使得反应烧结对致密化和均匀的微观结构更有效。反应烧结稳定的氧化锆/尖晶石复合材料的机械性能优于MgO稳定的氧化锆。检查烧结体反应和机械性能的烧结行为,重点是尖晶石形成与机械性能之间的关系。

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