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The effect of hardening laws and thermal softening on modeling residual stresses in FSW of aluminum alloy 2024-T3

机译:硬化规律和热软化对2024-T3铝合金FSW残余应力建模的影响

摘要

In the present paper, a numerical model consisting of a heat transfer analysis based on the Thermal Pseudo Mechanical (TPM) model for heat generation, and a sequentially coupled quasi-static stress analysis with a built-in metallurgical softening model was implemented in ABAQUS. Both isotropic and kinematic rules of hardening were used in order to study the effect of the hardening law on the residual stresses as well as on the final yield stress. This numerical model was then applied in two different cases. Firstly, a very simple 1D Satoh test was modeled. Different combinations of either isotropic or kinematic hardening together with the metallurgical softening model were applied in order to give a first impression of the tendencies in residual stresses in friction stir welds when choosing different hardening and softening behaviors. Secondly, real friction stir butt welding of aluminum alloy 2024-T3 were simulated and compared with experimentally obtained results for both temperatures and residual stresses (using the slitting method). The comparisons showed good agreement regarding temperatures whereas the residual stress comparisons indicated different sensitivities for the cold and hot welding conditions toward the choice of hardening rules and especially whether including the softening model or not.
机译:在本文中,在ABAQUS中建立了一个数值模型,该模型包括基于热伪热力学(TPM)模型的热传递分析和热量生成,以及将准静态应力分析与内置的冶金软化模型相继耦合。为了研究硬化规律对残余应力以及最终屈服应力的影响,同时使用了各向同性的和运动学的硬化规则。然后将此数值模型应用于两种不同的情况。首先,对一个非常简单的一维Satoh测试进行了建模。应用了各向同性或运动学硬化的不同组合以及冶金软化模型,以便对当选择不同的硬化和软化行为时搅拌摩擦焊缝中残余应力的趋势有第一印象。其次,模拟了铝合金2024-T3的真实摩擦搅拌对接焊,并与实验获得的温度和残余应力的结果进行了比较(使用纵切法)。这些比较显示出关于温度的良好一致性,而残余应力比较则表明了冷,热焊接条件对硬化规则(特别是是否包括软化模型)选择的敏感性不同。

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