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Process parameter optimization of lap joint fillet weld based on FEM-RSM-GA integration technique

机译:基于FEM-RSM-GA集成技术的搭接角焊缝工艺参数优化

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This study introduces a welding process design tool to determine optimal arc welding process parameters based on Finite Element Method (FEM), Response Surface Method (RSM) and Genetic Algorithms (GA). Here, a sequentially integrated FEM-RSM-GA framework has been developed and implemented to reduce the weld induced distortion in the final welded structure. It efficiently incorporates finite element based numerical welding simulations to investigate the desired responses and the effect of design variables without expensive trial experiments. To demonstrate the effectiveness of the proposed methodology, a lap joint fillet weld specimen has been used in this paper. Four process parameters namely arc voltage, input current, welding speed and welding direction have been optimized to minimize the distortion of the structure. The optimization results revealed the effectiveness of the methodology for welding process design with reduced cost and time.
机译:本研究介绍了一种基于有限元方法(FEM),响应面方法(RSM)和遗传算法(GA)来确定最佳电弧焊接工艺参数的焊接工艺设计工具。在这里,已经开发并实施了顺序集成的FEM-RSM-GA框架,以减少最终焊接结构中的焊接引起的变形。它有效地结合了基于有限元的数值焊接模拟,以研究所需的响应和设计变量的影响,而无需进行昂贵的试验。为了证明所提出的方法的有效性,本文使用了搭接角焊缝试样。优化了四个工艺参数,即电弧电压,输入电流,焊接速度和焊接方向,以最大程度地减少结构的变形。优化结果显示了该焊接方法设计方法的有效性,同时降低了成本和时间。

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