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Behaviour of voids in a shear field

机译:剪切场中空隙的行为

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When voids are present in a ductile material subject to a shear dominated stress state under low stress triaxiality the voids collapse to micro-cracks, which subsequently rotate and elongate in the shear field. In the present plane strain analyses for cylindrical voids a surface load normal to a plane connecting the ends of the micro-crack is used as an approximate representation of contact stresses during frictionless sliding. In a previous study of the same problem the author applied hydrostatic pressure inside the nearly closed micro-crack to approximate contact conditions. The transverse surface loads used in the present analyses avoid the tendency to unrealistically elongate the voids. It is found that even though the model applied here gives significantly later occurrence of a maximum overall shear stress than that found by using hydrostatic pressure, the present model does predict a maximum in all the cases analyzed and thus illustrates the micro-mechanism leading to failure of the material by localization of plastic flow.
机译:当在低应力三轴状态下易受剪切力作用的塑性材料中存在空隙时,空隙会塌陷成微裂纹,随后微裂纹会在剪切场中旋转并伸长。在目前的平面分析中,圆柱孔的垂直于连接微裂纹末端平面的表面载荷被用作无摩擦滑动过程中接触应力的近似表示。在先前对同一问题的研究中,作者在接近闭合的微裂纹内部施加了静水压力以近似接触条件。本分析中使用的横向表面载荷避免了不切实际地拉长空隙的趋势。结果发现,即使此处使用的模型比使用静水压力产生的最大总剪切应力发生的时间要晚得多,但本模型的确在所有分析情况下都预测到了最大值,从而说明了导致失效的微观机制通过塑性流动的局部化

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