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Modeling strain hardening and texture evolution in friction stir welding of stainless steel

机译:不锈钢摩擦搅拌焊接中的应变硬化和组织演变建模

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Steady-state friction stir welding of stainless steel has been modeled using an Eulerian formulation that considers coupled viscqplastic flow and heat transfer in the vicinity of the tool pin. Strain hardening is incorporated with a scalar state variable that evolves with deformation as material moves along streamlines of the flow field. The model equations are solved using the finite element method to determine the velocity field and temperature distribution, with a modified Petrov-Galerkin employed to stabilize the temperature distribution. The evolution equation for the state variable for strength is integrated along streamlines using an adaptive procedures to determine step size based on the element size. The intense shearing and associated heating lead to complex behavior near the tool pin. The effect of this complex response is demonstrated with the crystallographic texture, which displays a nonmonotonic strengthening and weakening history along streamlines that pass close to the tool pin.
机译:已经使用欧拉公式对不锈钢的稳态摩擦搅拌焊接进行了建模,该公式考虑了工具销附近的粘塑性流动和热传递耦合。应变硬化与标量状态变量结合在一起,当材料沿着流场的流线移动时,标量状态变量会随着变形而演化。使用有限元方法求解模型方程,以确定速度场和温度分布,并使用改良的Petrov-Galerkin稳定温度分布。使用自适应过程沿着流线集成强度状态变量的演化方程,以便根据元素大小确定步长。强烈的剪切力和相关的加热导致靠近工具销的复杂行为。晶体结构证明了这种复杂响应的效果,晶体结构沿着靠近工具销的流线显示出非单调的强化和弱化历史。

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