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On the prediction of ductile fracture by void coalescence and strain localization

机译:用空隙合并和应变局部化预测韧性断裂

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This paper presents a unit cell model based on the observation that ductile fracture occurs when plastic flow is localized in a band. The unit cell consists of three void containing material units stacked in the direction normal to the localization plane. Localization takes place in the middle material unit while the two outer units undergo elastic recovery after failure occurs. Thus a failure criterion is established as when the macroscopic effective strain of the outer material units reaches the maximum value. Analyses are conducted to demonstrate the effect of the voids existing outside the localization band. Comparisons of the present model with several previous models suggest that the present model is not only easy to implement in finite element analysis but also more suitable to robustly determine the failure strain. A series of unit cell analyses are conducted for various macroscopic stress triaxialities and Lode parameters. The analysis results confirm that for a fixed Lode parameter, the failure strain decreases exponentially with the stress triaxiality and for a given stress triaxiality, it increases as the stress state approaches the generalized tension and generalized compression. The analysis results also reveal the effect of the stress state on the deformed void shape within and near the localization band.
机译:本文提出了一个单元格模型,该模型基于以下观察:当塑性流位于带中时,会发生延性断裂。晶胞由在垂直于定位平面的方向上堆叠的三个包含空隙的材料单元组成。定位发生在中间材料单元中,而两个外部单元在发生故障后进行弹性恢复。因此,当外部材料单元的宏观有效应变达到最大值时,建立失效准则。进行分析以证明存在于定位带之外的空隙的影响。本模型与几个先前模型的比较表明,本模型不仅易于在有限元分析中实施,而且更适合于可靠地确定破坏应变。针对各种宏观应力三轴性和Lode参数进行了一系列的晶胞分析。分析结果证实,对于固定的Lode参数,破坏应变随应力三轴性呈指数下降,对于给定的应力三轴性,其随着应力状态接近广义拉力和广义压缩而增大。分析结果还揭示了应力状态对定位带内和附近的变形空隙形状的影响。

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