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Inherent damage zone model for strength evaluation of small fatigue cracks

机译:固有损伤区域模型,用于评估小疲劳裂纹的强度

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摘要

An inherent damage zone model is presented to explain the fatigue properties of small sized cracks near the fatigue limit and the crack growth threshold. A special feature of the paper is using the exact stress distributions of notched and cracked specimens at the strength evaluations. Analytical elastic solutions by Neuber and Westergaard are employed for this purpose. A crack propagation law is newly developed based on the inherent damage zone model, and the propagation properties of small sized cracks and the mechanism of non-propagating crack are discussed based on the model. The estimated propagation rates of small sized fatigue cracks, the crack size effect on threshold strength and the occurrence condition of non-propagating crack in elliptic notches and circular holes show good agreements with the previous experimental results.
机译:提出了一种固有的损伤区模型,以解释在疲劳极限和裂纹扩展阈值附近的小尺寸裂纹的疲劳特性。本文的一个特色是在强度评估时使用带缺口和有裂纹的试样的精确应力分布。为此,采用了Neuber和Westergaard的分析弹性解。基于固有损伤区域模型,新开发了裂纹扩展规律,并基于该模型探讨了小尺寸裂纹的扩展特性和非扩展裂纹的机理。估算的小尺寸疲劳裂纹扩展速率,裂纹尺寸对阈值强度的影响以及椭圆形缺口和圆形孔中非传播裂纹的发生条件与先前的实验结果吻合良好。

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