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首页> 外文期刊>Philosophical Magazine, A. Physics of condensed matter, defects and mechanical properties >Collective evolution characteristics and computer simulation of short fatigue cracks
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Collective evolution characteristics and computer simulation of short fatigue cracks

机译:疲劳短裂纹的集体演化特征及计算机模拟

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摘要

Fatigue testing was conducted using a kind of triangular isostress specimen to obtain the short-fatigue-crack behaviour of a weld low-carbon steel. The experimental results show that short cracks continuously initiate at slip bands within ferrite grain domains and the crack number per unit area gradually increases with increasing number of fatigue cycles. The dispersed short cracks possess an orientation preference, which is associated with the crystalline orientation of the relevant slip system. Based on the observed collective characteristics, computer modelling was carried out to simulate the evolution process of initiation, propagation and coalescence of short cracks. The simulation provides progressive displays which imitate the appearance of experimental observations. The results of simulation indicate that the crack path possesses a stable value of fractal dimension whereas the critical value of percolation covers a wide datum band, suggesting that the collective evolution process of short cracks is sensitive to the pattern of crack site distribution.
机译:使用一种三角形等应力试样进行疲劳测试,以获得焊接低碳钢的短疲劳裂纹行为。实验结果表明,短裂纹在铁素体晶粒域内的滑移带处连续产生,随着疲劳循环次数的增加,单位面积裂纹数逐渐增加。分散的短裂纹具有取向优先性,该取向优先性与相关滑移系统的晶体取向有关。基于观察到的集体特征,进行了计算机建模,以模拟短裂纹的萌生,扩展和合并的演化过程。模拟提供了渐进的显示,模仿了实验观察的外观。仿真结果表明,裂纹路径的分形维数稳定,而渗流的临界值覆盖较宽的基准带,表明短裂纹的集体演化过程对裂纹的位置分布模式较为敏感。

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