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Numerical Studies on Damage Evolution of Notched Round-Bar with Welding Mechanical Heterogeneity

机译:焊接机械异质性缺口圆杆损伤演化的数值研究

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The effects of the welding mechanical heterogeneity on the damage evolution of notched round-bar tensile specimens were investigated numerically using a fully coupled elastic-plastic damage finite element method. Some parameters reflecting the welding mechanical heterogeneity such as strength mismatching, rupture strain and weld metal width were taken into account to study their effects on the damage evolution of the weld metal. The calculation results show that the damage evolution of the weld metal is affected strongly by the welding mechanical heterogeneity. The damage evolution of the weld metal becomes larger with the decrease of both the rupture strain and yielding stress of the base metal. The effects of the mechanical properties of the base metal on the damage evolution of the weld metal decreases with the increase of the weld metal width.
机译:用完全耦合的弹性塑料损伤有限元法在数值上进行了数值在数值上研究了焊接机械异质性对缺口圆形条拉伸试样的损伤演化的影响。考虑反映焊接机械异质性的一些参数,例如强度不匹配,破裂应变和焊接金属宽度,以研究它们对焊接金属的损伤演化的影响。计算结果表明,焊接金属的损伤演化受到焊接机械异质性强烈的影响。随着底座金属的破裂应变和屈服应力的降低,焊接金属的损伤变化变大。基础金属的力学性能对焊缝金属宽度的增加降低了焊接金属的损伤演化的影响。

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