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Modeling and optimization of flux cored arc welding by genetic algorithm and simulated annealing algorithm

机译:遗传算法和模拟退火算法的药芯焊丝建模与优化

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Purpose - The purpose of this study is to optimize the process parameters (wire feed rate (F), voltage (V), welding speed (S) and torch angle (A)) in order to obtain the optimum bead geometry (bead width (W), reinforcement (R) and depth of penetration (P)), considering the ranges of the process parameters using evolutionary algorithms, namely genetic algorithm (GA) and simulated annealing (SA) algorithm. Design/methodology/approach - The modeling of welding parameters in flux cored arc welding process using a set of experimental data and regression analysis, and optimization using GA and SA algorithm. Findings - The adequate mathematical model was developed. The multiple objectives were optimized satisfactorily by the GA and SA algorithms. The feasible solution results are very closer to the optimized results and the percentage error was found to be negligibly small. Originality/value - The optimal welding parameters were identified in order to increase the productivity. The welding input parameters effect was found.
机译:目的-这项研究的目的是优化工艺参数(送丝速度(F),电压(V),焊接速度(S)和焊炬角(A)),以获得最佳的焊缝几何形状(焊缝宽度( W),钢筋(R)和渗透深度(P)),并使用进化算法(即遗传算法(GA)和模拟退火(SA)算法)考虑工艺参数的范围。设计/方法/方法-使用一组实验数据和回归分析对药芯焊丝电弧焊过程中的焊接参数进行建模,并使用GA和SA算法进行优化。调查结果-开发了适当的数学模型。 GA和SA算法令人满意地优化了多个目标。可行的解决方案结果非常接近于优化结果,并且发现百分比误差很小。原创性/价值-确定最佳焊接参数以提高生产率。发现焊接输入参数的影响。

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