Residual stresses around Vickers indents

A. Pajares , F. Guiberteau , R.W. Steinbrech , A. Dominguez-Rodriguez
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引用次数: 21

Abstract

The residual stresses generated by Vickers indentation in brittle materials and their changes due to annealing and surface removal were studied in 4 mol% yttria partially stabilized zirconia (4Y-PSZ). Three experimental methods to gain information about the residual stress field were applied: (i) crack profile measurements based on serial sectioning, (ii) controlled crack propagation in post indentation bending tests and (iii) double indentation tests with smaller secondary indents loccated around a larger primary impression. Three zones of different residual stress behavior are deduced from the experiments. Beneath the impression a crack free spherical zone of high hydrostatic streses exists. This “core” zone is followed by a transition regime where indentation cracks develop but still experience hydrostatic stresses. Finally, in an outward third zone, the crack contour is entirely governed by the tensile residual stress intensity (elastically deformed region). Annealing and surface removal reduce this crack driving stress intensity. The specific changes of the residual stresses due to the post indentation treatments are described and discussed in detail for the three zones.

维氏压痕周围的残余应力
在4mol %氧化钇部分稳定氧化锆(4Y-PSZ)中研究了脆性材料中维氏压痕产生的残余应力及其退火和表面去除后的变化。采用了三种获得残余应力场信息的实验方法:(i)基于连续切片的裂纹轮廓测量,(ii)在压痕后弯曲试验中控制裂纹扩展,以及(iii)双压痕试验,较小的次级压痕位于较大的主压痕周围。通过实验推导出不同残余应力行为的三个区域。在压痕下存在一个无裂纹的高静水应力球形区。这个“核心”区之后是一个过渡区,在那里压痕裂缝发展,但仍然经历静水应力。最后,在向外的第三区,裂纹轮廓完全由拉伸残余应力强度(弹性变形区域)控制。退火和表面去除可降低裂纹驱动应力强度。对三个区域的压痕处理后残余应力的具体变化进行了详细描述和讨论。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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