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Morphological healing evolution of penny-shaped fatigue microcracks in pure iron at elevated temperatures

机译:高温下纯铁中便士形疲劳微裂纹的形态愈合演变

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This letter reports a joint experimental and numerical investigation of high temperature morphological healing of micron-sized intragranular microcracks in pure iron. Irregular penny-shaped microcracks were first created by low-cycle fatigue and then subjected to annealing in vaccum at 1173 K. It is shown theoretically that, depending on its initial aspect ratio, a penny-shaped microcrack may evolve via surface diffusion into an isolated spherical void, or a doughnut-shaped channel pore with or without a central spherical void. Subsequent evolution causes the doughnut-shaped channel pore to break up into a ring of spherical voids via Rayleigh's instabilities. These results were confirmed with experimental observations of typical configurations of voids that result from the crack healing process. The experimentally observed evolution time is also in good agreement with the predictions of finite element simulations of the evolution process. (C) 2004 American Institute of Physics.
机译:这封信报道了纯铁中微米级颗粒内微裂纹高温形态修复的联合实验和数值研究。首先通过低周疲劳产生不规则的一字形微裂纹,然后在1173 K的真空下进行退火。理论上表明,根据其初始长宽比,一字形的微裂纹可能会通过表面扩散演变为孤立的微裂纹。球形空隙,或带有或没有中心球形空隙的甜甜圈状通道孔。随后的演化导致环形形状的通道孔通过瑞利的不稳定性分裂成球形空隙环。通过对裂纹愈合过程产生的典型空隙结构的实验观察,证实了这些结果。实验观察到的演化时间也与演化过程的有限元模拟的预测非常吻合。 (C)2004美国物理研究所。

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