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Identifying elasto-plastic damage coupling model of laser-welded aluminum alloy by virtual field method and digital image correlation

机译:通过虚拟现场方法识别激光焊接铝合金弹塑性损伤耦合模型和数字图像相关性

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摘要

The local high temperature of laser welding affects the mechanical damage properties of aluminum alloy. The full-field strain near the weld of the laser-welded aluminum alloy 6061 under uniaxial tension was obtained using digital image correlation. An iterative stress increment method for the isotropically hardened elasto-plastic damage coupling constitutive model is proposed herein based on the combination of a return mapping scheme and the nonlinear virtual field method. The elasto-plastic damage coupling constitutive parameters and its corresponding stress-strain relationship in each subzone around the weld are established. The results show that the plastic strain accumulating in the heat-affected zone is the fastest, where the damage initiation occurs earlier, and the damage evolution speed is faster than that other zones.
机译:激光焊接的局部高温影响铝合金的机械损伤性能。 利用数字图像相关,获得了单轴张力下激光焊接铝合金6061焊接附近的全场应变。 基于返回映射方案和非线性虚拟场方法的组合,提出了一种迭代应力增量耦合本构模型的组合模型。 建立了焊缝周围各个子中的弹性塑料损伤耦合组成件参数及其相应的应力 - 应变关系。 结果表明,在热影响区域中累积的塑性应变是最快的,其中损坏启动之前发生,损坏的进化速度比其他区域更快。

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