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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Uncertainty analysis and multi-objective billet robust optimization for transitional region of multi-rib component under isothermal local loading forming
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Uncertainty analysis and multi-objective billet robust optimization for transitional region of multi-rib component under isothermal local loading forming

机译:等温局部装载成形下多肋骨分量过渡区域的不确定性分析与多目标股票鲁棒优化

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摘要

Isothermal local loading forming is promising to manufacture the large-scale Ti-alloy multi-rib component, but the folding, die underfilling, and strain concentration (SC) are undesired characteristics existing in transitional region due to the reciprocating material transfer between loading region and unloading region. The current research showed that the optimized billet could eliminate or improve these defects. However, it may also lead to unacceptable results due to the variation of the uncertainty factors, such as the manufacturing tolerance of the billet, the fluctuation of the stroke length, friction factor, and forming temperature. Aiming at this issue, an uncertainty analysis and the multi-objective robust optimization of the billet are performed based on 3D finite element simulation and dual-response surface model. Firstly, a valid FE model of the eigenstructure is established to represent the transitional region. Then, the significance analysis of the uncertainty factors is carried out and the significant uncertainty factors are obtained. Subsequently, a multi-objective robust optimization model concerning the mean and standard deviation of the die underfilling rate and average strain of SC zone under the condition of avoiding folding is established. Finally, the Pareto-optimal solutions are obtained by NSGA-II and the minimum distance selection method is employed to acquire the satisfied solution. The comparison results between the robust optimization and deterministic optimization showed that not only the folding is effectively avoided under the uncertainty factors, but also more robust die filling and deformation homogeneity can be achieved.
机译:等温局部装载形成是有前途的制造大型Ti合金多肋骨组分,但由于负载区域和往复物质之间的往复物质转移,折叠,模底填充和应变浓度(SC)是过渡区域存在的不希望的特性。卸下地区。目前的研究表明,优化的坯料可以消除或改善这些缺陷。然而,由于不确定因素的变化,例如坯料的制造公差,行程长度,摩擦系数和成形温度的变化,它也可能导致不可接受的结果。针对这个问题,基于3D有限元模拟和双响应表面模型来执行不确定性分析和坯料的多目标稳健优化。首先,建立了特征结构的有效FE模型以表示过渡区域。然后,进行了不确定性因素的重要性分析,并获得了显着的不确定性因素。随后,建立了关于避免折叠条件下的模具欠置率和SC区的平均压力的平均和标准偏差的多目标稳健优化模型。最后,通过NSGA-II获得静态最佳解决方案,并且采用最小距离选择方法来获取满意的解决方案。鲁棒优化和确定性优化之间的比较结果表明,在不确定因素下不仅有效地避免了折叠,而且还可以实现更稳健的模具填充和变形均匀性。

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