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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Process parameter optimization in friction spot welding of AA5754 and Ti6Al4V dissimilar joints using response surface methodology
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Process parameter optimization in friction spot welding of AA5754 and Ti6Al4V dissimilar joints using response surface methodology

机译:响应面法优化AA5754和Ti6Al4V异种接头摩擦点焊工艺参数

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This study shows experimental and numerical results of friction spot welding of AA5754 and Ti6Al4V alloys. The determination of proper welding parameters plays an important role for the weld strength. Experimental tests, conducted according to combinations of process parameters such as tool rotational speed (RS) and dwell time (DT), were investigated with response surface methodology using a 3(k) factorial design of experiments. Sound joints with elevated shear strength were achieved and the influence of the main process parameters on joint strength evaluated. DT was the parameter with the largest influence on the joint shear resistance (58.9 %), followed by its interaction with RS (38.1 %). Higher strength was correlated to the thickness and morphology of the joint interface. A numerical model for predicting lap shear strength was successfully developed and used to optimize welding parameters in order to produce high-performance joints with less energy consumption and high efficiency.
机译:这项研究显示了AA5754和Ti6Al4V合金的摩擦点焊的实验和数值结果。合适的焊接参数的确定对于焊接强度起着重要的作用。根据工艺参数(例如工具转速(RS)和停留时间(DT))的组合进行的实验测试使用3(k)因子设计实验,通过响应面方法进行了研究。获得了具有提高的抗剪强度的可靠接头,并评估了主要工艺参数对接头强度的影响。 DT是对接头抗剪强度影响最大的参数(58.9%),其次是与RS的相互作用(38.1%)。更高的强度与关节界面的厚度和形态有关。成功开发了一种预测搭接剪切强度的数值模型,并将其用于优化焊接参数,从而以较低的能耗和高效率生产出高性能的接头。

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