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Experimental Analysis of the Influence of Process Parameters on Residual Stress in AA2024-T3 Friction Stir Welds

机译:工艺参数对AA2024-T3摩擦焊焊接残余应力影响的实验分析

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Friction stir welding (FSW) is an innovative joining technique, in which a solid state weld is obtained by means of frictional heating and plastic deformation of the processing material. In recent years, an increasing application of the FSW process has been observed, however, for the effective implementation of the technique in safety-critical components and to predict the fatigue behavior of FSWed assemblies, an accurate knowledge of the process-induced residual stress is needed. In this paper results, provided by an experimental analysis on the influence of process parameters on the residual stress in 4mm AA2024-T3 butt joints are reported and discussed. The contour method has been applied to evaluate the residual stress. An asymmetric stress distribution has been found in all samples. A significant dependence of the tensile and compressive stress peaks on the feed rate has been found, while a non monotonic influence of the rotating speed has been evidenced.
机译:摩擦搅拌焊接(FSW)是一种创新的连接技术,其中通过摩擦加热和加工材料的塑性变形来获得固态焊接。近年来,已经观察到越来越多的FSW工艺应用,以便有效实施安全关键组件中的技术,并预测FSWED组件的疲劳行为,准确了解过程诱导的残余应力需要。在本文中,报告并讨论了对4MM AA2024-T3对接接头中的工艺参数对剩余应力影响的实验分析提供的。已经应用轮廓方法来评估残余应力。在所有样品中发现了不对称应力分布。已经发现了拉伸和压缩应力峰值对进料速率的显着依赖性,而已经证明了旋转速度的非单调的影响。

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