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Experimental and numerical analysis on FSWed magnesium alloy thin sheets obtained using 'pin' and 'pinless' tool

机译:使用“销”和“无”工具获得的FSWED镁合金薄板的实验和数值分析

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The present investigation aims at studying the effect of different tool geometries and process parameters on FSW of thin sheets in AZ31 magnesium alloy. In particular two properly designed tools, with shoulder diameters equal to 8 and 19 mm, were used; each of them was manufactured both in pin and pinless configurations. The effect of the different tool configurations and sizes, and welding parameters on mechanical properties of FSWed joints were analyzed in detail. The results were compared with those obtained on the base material. It was shown that FSWed joints are characterized by strength and ductility values lower than those of base material. Furthermore, the pin tool configuration, with a shoulder diameter of 8 mm, leads to the obtaining of strength and ductility values higher than those provided by the pinless one. A strong beneficial effect is obtained by increasing the shoulder diameter from 8 to 19 mm using the pinless configuration, whilst the FSW with the pin tool is critically affected by the welding conditions. The experimental work was joined to a numerical investigation based on finite element method (FEM) in order to study the material flow occurring during the welding process as well as the distribution of temperature, with the aim to identify a input window of the process parameters within which sound joints can be obtained.
机译:本研究旨在研究不同工具几何和工艺参数对AZ31镁合金薄板FSW的影响。特别是两个适当设计的工具,使用肩部直径等于8和19毫米。它们中的每一个都在销和无碱配置中制造。详细地分析了不同工具配置和尺寸的效果,以及焊接参数对具有FSWED接头的机械性能的焊接参数。将结果与基材上获得的结果进行比较。结果表明,具有低于基材的强度和延展性值的特征。此外,肩部直径为8mm的销刀具配置导致获得比无图1提供的强度和延展性值高的强度和延展性值。通过使用无碱配置将肩部直径增加到8至19mm的肩部直径来获得强大的有益效果,同时使用销工具的FSW受到焊接条件的批判性影响。基于有限元方法(FEM)的实验工作加入了数值研究,以研究焊接过程中发生的材料流量以及温度分布,旨在识别内部工艺参数的输入窗口可以获得哪些声音。

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