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Sequential coupled process-performance simulation and multi-objective optimization of thin-walled tubes

机译:薄壁管的顺序耦合过程性能仿真与多目标优化

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摘要

A sequential coupled nonlinear finite element analysis framework is developed to investigate the effects of sheet-forming process and product design parameters on energy absorption characteristics of thin-walled, multicorner tubes made of a magnesium alloy. Coupling stems from the use of analysis results from one simulation to form the initial state in the subsequent simulation. High fidelity coupled process-performance simulations are used in design of computer experiments for developing analytical surrogate models of process and performance responses as functions of product geometry and process parameters. Rupture, thinning and springback are treated as the manufacturing responses whereas mean crush force, maximum crush force, and mass are used as structural performance measures. An integrated process-performance optimization problem is setup and solved using the multi-objective genetic algorithm approach. The results of coupled simulations show the importance of manufacturing effects on the crush response while the Pareto optimal set highlights the tradeoff among process and performance attributes.
机译:建立了顺序耦合非线性有限元分析框架,以研究薄板成形工艺和产品设计参数对镁合金薄壁多角管能量吸收特性的影响。耦合源自对一个模拟的分析结果的使用,以在后续模拟中形成初始状态。高保真耦合的过程性能模拟用于计算机实验的设计中,以开发作为产品几何形状和过程参数的函数的过程和性能响应的分析替代模型。破裂,变薄和回弹被视为制造响应,而平均挤压力,最大挤压力和质量被用作结构性能指标。使用多目标遗传算法方法建立并解决了集成的过程性能优化问题。耦合模拟的结果表明制造效果对压榨响应的重要性,而帕累托最优集则突出了工艺和性能属性之间的权衡。

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