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Multiobjective Optimization of Precision Forging Process Parameters Based on Response Surface Method

机译:基于响应面法的精密锻造工艺参数多目标优化

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摘要

In order to control the precision forging forming quality and improve the service life of die, a multiobjective optimization method for process parameters design was presented by applying Latin hypercube design method and response surface model approach. Meanwhile the deformation homogeneity and material damage of forging parts were proposed for evaluating the forming quality. The forming load of die was proposed for evaluating the service life of die. Then as a case of study, the radial precision forging for a hollow shaft with variable cross section and wall thickness was carried out. The 3D rigid-plastic finite element (FE) model of the hollow shaft radial precision forging was established. The multiobjective optimization forecast model was established by adopting finite element results and response surface methodology. Nondominated sorting genetic algorithm-II (NSGA-II) was adopted to obtain the Pareto-optimal solutions. A compromise solution was selected from the Pareto solutions by using the mapping method. In the finite element study on the forming quality of forging parts and the service life of dies by multiobjective optimization process parameters, the feasibility of the multiobjective optimization method presented by this work was verified.
机译:为了控制精密锻造成形质量,提高模具的使用寿命,通过应用拉丁超立体设计方法和响应面模型方法,提出了一种用于工艺参数设计的多目标优化方法。同时提出了锻造零件的变形均匀性和材料损伤,用于评估成形质量。提出了用于评估模具的使用寿命的模具的形成载荷。然后作为研究的情况,进行了具有可变横截面和壁厚的空心轴的径向精密锻造。建立了空心轴径向精密锻造的3D刚性塑料有限元(FE)模型。通过采用有限元结果和响应面方法建立了多目标优化预测模型。采用NondOminated分类遗传算法-II(NSGA-II)获得静态溶液。通过使用映射方法从帕累托溶液中选择折衷溶液。在对锻造件的成型质量和模具使用寿命的有限元研究中,通过多目标优化过程参数,验证了该工作所呈现的多目标优化方法的可行性。

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