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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Modeling, analysis, and multi-objective optimization of cold extrusion process of clutch outer gear hub using response surface method and meta-heuristic approaches
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Modeling, analysis, and multi-objective optimization of cold extrusion process of clutch outer gear hub using response surface method and meta-heuristic approaches

机译:基于响应面法和元启发式方法的离合器外齿轮轮毂冷挤压过程建模、分析及多目标优化

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In this paper, a cold extrusion process was developed to manufacture the clutch outer gear hub. To reduce the forming load and improve the filling effect of internal spline fillet, this paper established the finite element (FE) model of the cold extrusion process and analyzed the influences of main process variables on the forming load and fillet clearance. Then, the second-order response models with four main process parameters as the optimization variables and forming load and fillet clearance as the optimization objectives were established by using the response surface method (RSM). Furthermore, the meta-heuristic approaches of non-dominated sorting genetic algorithm (NSGA-II) and multi-objective genetic algorithm (MOGA) were applied to optimize the models iteratively and a set of optimal process parameters was obtained. Finally, the finite element simulation and experiment confirmation results show that with the optimal parameters, the forming load can be effectively reduced and the filling effect of internal spline fillets is significantly improved. Thus, it is proved that the optimization method is feasible and that a clutch outer gear hub can be produced by cold extrusion process.
机译:本文开发了一种冷挤压工艺来制造离合器外齿轮轮毂。为降低内花键圆角的成形载荷,提高内花键圆角的填充效果,建立了冷挤压工艺的有限元(FE)模型,分析了主要工艺变量对成形载荷和圆角间隙的影响。然后,采用响应面法(RSM)建立了以4个主要工艺参数为优化变量,以成形载荷和圆角间隙为优化目标的二阶响应模型。此外,采用非支配排序遗传算法(NSGA-II)和多目标遗传算法(MOGA)的元启发式方法对模型进行迭代优化,得到一组最优过程参数。最后,有限元仿真和实验确认结果表明,在最优参数下,可以有效降低成形载荷,显著提高内花键圆角的填充效果。因此,证明了优化方法是可行的,并且可以通过冷挤压工艺生产离合器外齿轮轮毂。

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