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The grain size dependency of compressive deformation of a superplastic 3 mol yttria stabilized tetragonal zirconia

机译:超塑性3 mol%氧化钇稳定的四方氧化锆压缩变形的晶粒尺寸依赖性

摘要

The compressive behavior of a medium purity 3 mo1% yttria stabilized tetragonal zirconia (3YTZ) was investigated with three different initial grain sizes at the temperature of 1723 K. It was found that the strain rate sensitivity exponent increases from 0.45 to 0.55 when the initial grain size increases from 0.5 to 1.1 μm and that the grain size exponent is about 2.0. Microstructural measurements revealed that grains retained the essentially equiaxed nature even after large plastic strain and that the instantaneous grain size had a linear relationship with true strain at the specified initial strain rates. Transmission electron microscope observation demonstrated that an amorphous phase concentrated at multiple points and that no amorphous phase formed at two-grain boundaries. Like Al 2O 3, the SiO 2 content had a significant effect on superplastic 3YTZ characteristics. It is considered that grain boundary sliding (GBS) should play a dominant role in 3YTZ superplasticity and that the presence of an amorphous phase at triple or multiple points could effectively release the stress concentration caused by GBS and thereby facilitate superplastic deformation.
机译:研究了三种不同初始粒度在1723 K的温度下中等纯度3 Mo1%氧化钇稳定的四方氧化锆(3YTZ)的压缩行为。发现初始粒度时应变速率敏感性指数从0.45增加到0.55粒度从0.5增加到1.1μm,并且粒度指数为约2.0。显微组织测量表明,即使在较大的塑性应变后,晶粒仍保持基本等轴的性质,并且在指定的初始应变速率下,瞬时晶粒尺寸与真实应变具有线性关系。透射电子显微镜观察表明,非晶相集中在多个点,并且在两晶粒边界处没有形成非晶相。像Al 2O 3一样,SiO 2含量对超塑性3YTZ特性也有显着影响。认为晶界滑动(GBS)在3YTZ超塑性中起主导作用,并且在三点或多点处存在无定形相可以有效地释放由GBS引起的应力集中,从而促进超塑性变形。

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