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Determination of residual stresses in tailored welded blanks with thickness transition for crack assessment

机译:厚厚的裂缝评估厚度过渡的定制焊坯残留应力的测定

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摘要

Residual stresses play a major role in the characterization of welded structures. The Cut-Compliance-method uses fracture mechanics principles and delivers stress intensity factors caused by the residual stresses, which is convenient for the evaluation of components that contain a crack. As sheets with different gauge were friction stir welded (FSW) a geometry with thickness transition evolved. Hence, the required influence function for the Cut-Compliance-method was derived for specimens with thickness transition by means of finite element simulations with fracture mechanical analysis. In order to compute residual stress profiles for the geometry with thickness transition, a weight function solution has been determined as well. Consequently, experimental data in terms of residual stress profiles and corresponding stress intensity factor distribution are obtained and presented in the paper for a FSW butt joint of an AlMgSc alloy (AA5028-H116) with identical and different sheet thicknesses.
机译:残余应力在焊接结构的表征中起主要作用。剪切顺应性方法使用裂缝力学原理,并提供由残余应力引起的应力强度因子,这方便评估含有裂缝的组分。由于具有不同规格的薄片是摩擦搅拌焊接(FSW)的厚度转变的几何形状。因此,通过具有裂缝力学分析的有限元模拟的具有厚度转变的试样来推导用于剪切顺应性方法所需的影响功能。为了计算具有厚度转变的几何形状的残余应力分布,还确定了重量函数解决方案。因此,在残留应力分布和相应的应力强度因子分布方面,并呈现在纸上的实验数据,用于具有相同的和不同的纸张厚度的Almgsc合金(AA5028-H116)的FSW对接接头。

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