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In-process tool rotational speed variation with constant heat input in friction stir welding of AZ31 sheets with variable thickness

机译:工艺工具转速变化,恒温输入AZ31板摩擦搅拌焊接,可变厚度

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In the present work, friction stir welding experiments on AZ31 magnesium alloy sheets, characterized by a variable thickness along the welding line, were carried out. The approach adapted during welding consisted in maintaining constant the heat input to the joint. To this purpose, the rotational speed of the pin tool was increased with decreasing thickness and decreased with increasing thickness in order to obtain the same temperatures during welding. The amount by which the rotational speed was changed as a function of the sheet thickness was defined on the basis of the results given by FEM simulations of the FSW process. Finally, the effect of the in-process variation of the tool rotational speed on the mechanical and microstructural properties of FSWed joints was analysed by comparing both the nominal stress vs. nominal strain curves and microstructure of FSWed joints obtained in different process conditions. It was observed that FSW performed by keeping constant the heat input to the joint leads to almost coincident results both in terms of the curve shape, ultimate tensile strength and ultimate elongation values, and microstructure.
机译:在本作工作中,进行AZ31镁合金板上的摩擦搅拌焊接实验,其特征在于沿焊接线的可变厚度。在焊接期间适应的方法包括保持恒定的热量输入到接头。为此目的,销工具的旋转速度随着厚度的降低而增加,并且随着厚度的增加而降低,以获得焊接期间的相同温度。基于FSW模拟的FSW过程给出的结果,定义了作为纸张厚度的函数改变转速改变的量。最后,通过比较不同工艺条件下获得的标称应变曲线和微观结构,通过比较不同工艺条件中获得的标称应变曲线和微观结构来分析工具转速对FSWED接头机械和微观结构性能的影响。观察到通过保持恒定对接头的热量来执行FSW,这两者几乎重合到曲线形状,最终拉伸强度和最终伸长率值和微观结构。

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