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On the evaluation of energy release rate and mode mixity for ductile asymmetric four point bend specimens

机译:延展性不对称四点弯曲试样的能量释放率和模式混合评价

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摘要

A method for evaluating the contributions from mode I and II components of loading to the energy release rate J in ductile asymmetric four-point bend (4-PB) specimens is proposed. The validity of the method is established by conducting elastic-plastic finite element analysis of several asymmetric 4-PB specimens exhibiting a range of mode mixities from pure mode I to II and having different crack length to width (a/W) ratios. Further, a definition of plastic mode mixity is introduced based on the near-tip opening and sliding displacements. This definition and the proposed method to evaluate J are easy to apply since the required crack opening and sliding displacements can be determined from in-situ optical imaging coupled with Digital Image Correlation (DIC) technique. The application of the proposed methodology is demonstrated by analyzing mixed-mode fracture experiments being conducted with a magnesium alloy. It is found that the critical value of J at crack initiation reduces as loading changes from mode I to II.
机译:提出了一种用于评估从延性不对称四点弯曲(4-PB)样本中加载到能量释放率J的模式I和II分量的贡献的方法。通过传导若干不对称的4-PB样本的弹性塑料有限元分析来建立该方法的有效性,其若干不对称的4-PB样本分析,其从纯模式I至II的一系列模式混合和具有不同的裂缝长度与宽度(A / W)比率。此外,基于近尖端开口和滑动位移引入塑料模式混合的定义。这种定义和评估J的提出方法易于施加,因为可以从与数字图像相关(DIC)技术耦合的原位光学成像来确定所需的裂缝开口和滑动位移。通过分析用镁合金进行的混合模式裂缝实验来证明所提出的方法的应用。结果发现,x裂纹启动时的临界值减少了从模式I到II的加载变化。

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