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Multi-objective and multi-constraint design optimization for hat-shaped composite T-joints in automobiles

机译:汽车帽子形复合T型接头的多目标多约束优化设计

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摘要

This study presents a multi-objective design optimization methodology on geometry and lay-ups for carbon fiber reinforced plastics (CFRP) T-joints in automobiles to achieve car body lightweight design. The CFRP T-joint was subjected to out-of-plane bending load using experimental method, and a finite element analysis (FEA) method was developed to simulate full failure procedure in the hat-shaped composite T-joint. A multi-objective and multi-constraint design optimization problem was then formulated to fmd optimum geometry and lay-ups of the composite T-joint. The non-dominated sorting genetic algorithm II (NSGA-II) was introduced to search for global optimum solution, and radial basis function (RBF) approximations for the objective functions were applied to reduce the computational cost. An original method was proposed for the initialization of the optimization that significantly accelerates the search for the Pareto front. The proposed method was validated by an obtained optimum design of a composite T-joint with reduced weight and improved overall stiffness and strength behavior, and can thus provide a guidance in practical vehicle composite joint design.
机译:这项研究针对汽车碳纤维增强塑料(CFRP)T型接头的几何形状和铺层提出了一种多目标设计优化方法,以实现车身的轻量化设计。利用实验方法对CFRP T型接头施加平面外弯曲载荷,并开发了有限元分析(FEA)方法来模拟帽形复合T型接头的完全破坏过程。然后制定了一个多目标,多约束的设计优化问题,以找到复合T形接头的最佳几何形状和铺层。引入非支配排序遗传算法II(NSGA-II)来寻找全局最优解,并采用目标函数的径向基函数(RBF)近似来减少计算成本。提出了一种用于优化初始化的原始方法,该方法可以显着加快对Pareto前沿的搜索。通过获得的减轻重量和改善整体刚度和强度性能的复合T型接头的最佳设计,对所提出的方法进行了验证,从而可以为实际的车辆复合接头设计提供指导。

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