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首页> 外文期刊>Theoretical and Applied Fracture Mechanics >Investigation of effective stress intensity factors during overload fatigue cycles using photoelastic and DIC techniques
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Investigation of effective stress intensity factors during overload fatigue cycles using photoelastic and DIC techniques

机译:采用光弹性和DIC技术研究过载疲劳周期有效应力强度因子

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This work uses DIC and photoelastic techniques to investigate the effect of single overload cycles applied during constant amplitude fatigue. Effective values of the range of stress intensity factor were calculated using the CJP model of crack tip stress and displacement fields, as this model considers both wake contact and compatibility induced influences on the applied elastic field arising from the plastic enclave generated around a fatigue crack. Values of the effective stress intensity factor are related to the observed crack growth acceleration and retardation. In addition, the paper compares the CJP results with those obtained using a compliance-based method. The present work demonstrates the utility of the CJP model in characterising fatigue crack growth rates during variable amplitude loading. It is also possible with the CJP model, through changes in the coefficient values and hence, for the first time, to shed explicit light on the contributions made by different mechanisms to the shielding effects of an overload.
机译:这项工作使用DIC和光弹性技术来研究恒幅疲劳期间施加的单次过载循环的影响。使用裂纹尖端应力和位移场的CJP模型计算了应力强度因子范围的有效值,因为该模型考虑了尾迹接触和兼容性对疲劳裂纹周围产生的塑性包体产生的外加弹性场的影响。有效应力强度因子的值与观察到的裂纹扩展加速度和延迟有关。此外,本文还将CJP结果与基于柔度的方法得到的结果进行了比较。本研究证明了CJP模型在描述变幅载荷下疲劳裂纹扩展速率方面的实用性。CJP模型也可以通过改变系数值,从而首次明确阐明不同机制对过载屏蔽效应的贡献。

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