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Effect of Ceramic Powders on the Reaction Sintering of Ceramic/Metal Mixed Powders

机译:陶瓷粉末对陶瓷/金属混合粉末反应烧结的影响

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The reaction-sintered alumina and zirconia-alumina ceramics with low firing shrinkage were prepared from Al_2O_3/Al and ZrO_2(Ca-PSZ)/Al powder mixture by attrition milling and the effect of the characteristics of used ceramic powders was investigated. Flaky Al powders mixed with coarse alumina powders could be effectively pulverized due to high hardness of alumina powders. On the contrary fused Ca-PSZ/Al powder mixture could not be effectively comminuted due to lower hardness than alumina powders. So by using hard alumina ball media or coarse Al_2O_3 powders rather than Al, the milling efficiency could be much more increased. After attrition milling the Al_2O_3/Al specimens were oxidized at 1200°C for 8 hours and followed by sintering at 1550°C for 3 hours. Because mixed powders of Al with alumina were much more effectively comminuted, more than 97% theoretical density of sintered body could be achieved. In the case of fused Ca-PSZ powder reaction-sintered with Al at 1550°C for 3 hours, the reaction-sintering and densification were a little more difficult than Al_2O_3/Al specimens because of the insufficient milling. And the unstabilization of Ca-PSZ body which caused the cracks in the specimens was brought by the diffusion of Ca ion from Ca-PSZ grains to alumina.
机译:通过磨削铣削,由Al_2O_3 / Al和ZrO_2(Ca-PSZ)/ Al粉末混合物制备具有低烧制收缩的反应烧结氧化铝和氧化锆 - 氧化铝陶瓷,并研究了使用陶瓷粉末的特性的效果。由于氧化铝粉末的高硬度,可以有效地粉碎与粗氧化铝粉末混合的片状Al粉末。在相反的熔融Ca-PSZ / Al粉末混合物由于低于氧化铝粉末而不能有效地粉碎。因此,通过使用硬氧化铝球介质或粗al_2O_3粉末而不是Al,铣削效率可能会增加。在将研磨研磨后,将Al_2O_3 / Al标本在1200℃下氧化8小时,然后在1550℃下烧结3小时。因为Al与氧化铝的混合粉末更有效地粉碎,因此可以实现烧结体的大于97%的理论密度。在熔融Ca-PSZ粉末在1550℃下用Al反应3小时的情况下,由于研磨不足,反应烧结和致密化比Al_2O_3 / Al标本更困难。并且引起样品中的裂缝的Ca-PSZ体的未稳定化是通过Ca-Psz颗粒的扩散到氧化铝。

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