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Ductile shear failure or plug failure of spot welds modelled by modified Gurson model

机译:用修正的Gurson模型模拟点焊的延性剪切破坏或塞子破坏

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摘要

For resistance spot welded shear-lab specimens, interfacial failure under ductile shearing or ductile plug failure are analyzed numerically, using a shear modified Gurson model. The interfacial shear failure occurs under very low stress triaxiality, where the original Gur-son model would predict void nucleation and very limited void growth. Void coalescence would therefore be largely postponed. However, using the shear modification of the Gurson model, recently introduced by Nahshon and Hutchinson (2008) [1], failure prediction is possible at zero or even negative mean stress. Since, this shear modification has too large effect in some cases where the stress triaxiality is rather high, an extension is proposed in the present study to better represent the damage development at moderate to high stress triaxiality, which is known to be well described by the Gurson model. Failure prediction and tensile response curves for an interfacial shear failure or a ductile plug failure, are here compared when using either the original Gurson model, the shear modified model, or the extension to the shear modified model. The suggested extension makes it possible to use the shear modified model as a simple way of accounting for damage development under low triaxiality shearing, without further increasing the damage rate in regions of moderate to high stress triaxiality.
机译:对于电阻点焊剪切实验室试件,使用剪切修正的Gurson模型,数值分析了韧性剪切或韧性插塞破坏下的界面破坏。界面剪切破坏发生在非常低​​的应力三轴性下,原始的Gur-son模型将预测孔隙成核和非常有限的孔隙增长。因此,空隙结合将大大推迟。然而,使用Nahshon和Hutchinson(2008)[1]最近引入的Gurson模型的剪切修正,可以在零甚至负平均应力下进行破坏预测。由于这种剪切变形在某些情况下在应力三轴度较高的情况下影响太大,因此在本研究中提出了一种扩展,以更好地表示中度至高应力三轴度下的损伤发展,众所周知,这种变形已得到很好的描述。格森模型。当使用原始Gurson模型,剪切修正模型或剪切修正模型的扩展时,将比较界面剪切破坏或延性塞破坏的破坏预测和拉伸响应曲线。建议的扩展使使用剪力修正模型作为解决低三轴剪切作用下损伤发展的简单方法成为可能,而无需进一步提高中高应力三轴区域的损伤率。

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