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首页> 外文期刊>International journal of crashworthiness >Optimisation for bending crashworthiness of functionally graded foam-filled cellular structure
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Optimisation for bending crashworthiness of functionally graded foam-filled cellular structure

机译:功能梯度泡沫填充蜂窝结构耐弯曲性的优化

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摘要

Due to extraordinary energy absorption capacity as well as light weight, functionally graded foam-filled cellular structure (FGFCS) has gained considerable attention. Using nonlinear finite element method through LS-DYNA, this work studied the bending crashworthiness of nine FGFCSs with different cross-sectional configurations. The results demonstrate that the bending crashworthiness of the FGFCSs is significantly affected by the design parameter of the graded functional parameter q. Thus, in order to find the optimal gradient exponential parameter, the FGFCSs with different cross sections were optimised using the radial basis function metamodel and the Non-dominated Sorting Genetic Algorithm II. Meanwhile, the corresponding uniform foam-filled cellular structures (UFCSs) with the same weight as above FGFCSs were also optimised in our study. In the optimisation process, the aim is to achieve maximum value of specific energy absorption and minimum value of peak crushing force. By comparing the Pareto fronts obtained by multi-objective optimisation, it can be found that FGFCSs have better crashworthiness than the corresponding UFCSs in most considered cases. Thus, the optimal design of FGFCS has exactly an excellent energy absorption capacity under lateral impact and can be used in the future vehicle body.
机译:由于非凡的能量吸收能力以及重量轻,功能渐变泡沫填充的蜂窝状结构(FGFCS)受到了广泛的关注。通过LS-DYNA非线性有限元方法,这项工作研究了九种具有不同横截面构造的FGFCS的抗弯折性。结果表明,梯度功能参数q的设计参数显着影响了FGFCS的弯曲耐撞性。因此,为了找到最佳的梯度指数参数,使用径向基函数元模型和非支配排序遗传算法II对具有不同横截面的FGFCS进行了优化。同时,在我们的研究中还优化了与上述FGFCS相同重量的相应均匀泡沫填充细胞结构(UFCS)。在优化过程中,目标是获得比能量吸收的最大值和峰值破碎力的最小值。通过比较通过多目标优化获得的帕累托前沿,可以发现在大多数考虑的情况下,FGFCS具有比相应的UFCS更好的耐撞性。因此,FGFCS的优化设计在横向冲击下具有出色的能量吸收能力,可用于未来的车身。

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