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Multi-objective optimization of the process parameters for friction welding of dissimilar metals

机译:异种金属摩擦焊接工艺参数的多目标优化

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摘要

This paper presents a multi-objective optimization method for optimizing the process parameters during friction welding of dissimilar metals. The proposed method combines the response surface methodology (RSM) with an a genetic algorithm (GA) method. Ultimate tensile strength (UTS), flash diameter and the heat affected zone (HAZ) width of friction welded nodular cast iron with low carbon steel joints were investigated considering the following process parameters: friction pressure (FP), friction time (FT) and upsetting pressure (UP). Mathematical models were developed and the responses were adequately predicted. Direct and interaction effects of process parameters on responses were studied by plotting graphs. In the case of UTS, FT has high significance followed by: FP and UP. Friction time has high significance on the flash diameter of nodular cast iron followed by UP and FP. However in the case of the low carbon steel flash diameter, UP has high significance followed by FT and FP. In the case of the HAZ width for nodular cast iron and low carbon steel side, friction time has high significance followed by UP and FT. Multiobjective optimization for maximizing the tensile strength and minimizing the flash diameter and the HAZ width was carried out using mathematical model.
机译:本文提出了一种多目标优化方法,用于在异种金属的摩擦焊接过程中优化工艺参数。所提出的方法结合了响应面方法(RSM)和遗传算法(GA)方法。考虑以下工艺参数,研究了低碳钢接头摩擦焊球墨铸铁的极限抗拉强度(UTS),飞边直径和热影响区(HAZ)宽度,考虑了以下工艺参数:摩擦压力(FP),摩擦时间(FT)和up粗压力(UP)。建立了数学模型并充分预测了响应。通过绘制图表研究过程参数对响应的直接影响和交互作用。对于UTS,FT具有很高的意义,其次是:FP和UP。摩擦时间对球墨铸铁的飞边直径,UP和FP的飞边直径具有重要意义。但是,在低碳钢飞边直径的情况下,UP具有较高的意义,其次是FT和FP。对于球墨铸铁和低碳钢侧面的热影响区宽度,摩擦时间具有重要意义,其次是上和下。使用数学模型进行了多目标优化,以最大程度地提高拉伸强度,最小化毛边直径和HAZ宽度。

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