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Densification and Mechanical Properties of YAG Ceramics Fabricated by Air Pressureless Sintering

机译:无压力烧结制造的YAG陶瓷的致密化和机械性能

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摘要

Yttrium aluminum garnet (Y3Al5O12, YAG) ceramics with a relative density of about 99.5% were fabricated by solid-state reaction and pressureless sintering using commercial -Al2O3 and Y2O3 powders as raw materials in air. The effect of different sintering additives, e.g. tetraethyl orthosilicate (TEOS), MgO and TEOS+MgO, on the relative density and mechanical properties of the YAG ceramic samples were investigated. When the dopant content of TEOS exceeded 0.5wt.%, a sudden grain growth appeared, as well as a residual second phase located in triangle grain boundary. MgO was more effective as a sintering additive than silica in promoting the densification of the YAG ceramics. The relative density of the ceramics gradually decreased with the increase of MgO doping content and fixed TEOS content. The mechanical properties of the YAG ceramics fabricated by pressureless sintering in air at 1600-1710 degrees C were tested. The fracture surface morphology of the MgO-doped ceramic samples was mainly transgranular, whereas the TEOS-doped samples were mainly intergranular.
机译:通过使用商业-2O3和Y2O3粉末作为空气中的原料,通过固态反应和无压烧结制造具有约99.5%的钇铝石榴石(Y3Al5O12,YAG)陶瓷。不同烧结添加剂的效果,例如烧结添加剂。研究了在YAG陶瓷样品的相对密度和机械性质上的四乙基异硅酸硅酸盐(TEOS),MgO和TEOS + MgO。当TEOS的掺杂剂含量超过0.5wt时。%,突然的晶粒生长出现,以及位于三角形晶界中的残余第二相。在促进YAG陶瓷的致密化方面,MgO作为烧结添加剂更有效。随着MgO掺杂含量和固定TEOS含量的增加,陶瓷的相对密度逐渐降低。测试在1600-1710℃下通过无压烧结制造的YAG陶瓷的机械性能。 MgO掺杂陶瓷样品的断裂表面形态主要是响囊,而TEOS掺杂的样品主要是晶间。

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