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Effect of Sintering on Defects in Yttria Stabilised Zirconia

机译:烧结对亚钇稳定氧化锆缺陷的影响

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A variable energy slow positron beam was utilised to investigate depth dependent effects of sintering on the tetragonal yttria stabilised zirconia nanopowders. Positron implantation was combined with the determination of Doppler broadened profiles of annihilation radiation. The results are consistent with recent positron lifetime data showing that sintering at elevated temperatures leads to a disappearance of pores and a significant grain growth, which is demonstrated by a strong suppression of positronium formation and a substantial decrease in concentration of open volume defects at triple points, respectively, with increasing sintering temperature. An existence of a subsurface layer of a relatively high content of defects was shown in sintered samples and tentatively attributed to arise from a diffusion of open volume defects from the sample interior toward the surface or from a sintering-induced surface modification.
机译:可变能量慢正电束梁研究烧结对四边形氧化钇稳定的氧化锆纳米粉粉的深度依赖性作用。正电子植入与多普勒拓宽剖面的测定相结合。结果与最近的正电子寿命数据一致,显示升高温度下的烧结导致孔隙的消失和显着的晶粒生长,这通过强烈抑制正电子形成和三重点浓度的显着降低的显着降低分别随着烧结温度的增加。在烧结样品中示出了相对高含量的缺陷含量的地下层的存在,并且暂时归因于从开放体积缺陷的扩散从样品内部朝向表面或烧结诱导的表面改性而产生。

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