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功能梯度多孔碳纳米管增强复合材料梁中碳纳米管分布的优化剪裁

Optimal Tailoring of CNT Distribution in Functionally Graded Porous CNTRC Beams.

作者信息

Cho J R, Kim H J

机构信息

Department of Naval Architecture and Ocean Engineering, Hongik University, Jochiwon, Sejong 30016, Republic of Korea.

Department of Mechanical Engineering, University College London, London WC1E7JE, UK.

出版信息

Polymers (Basel). 2023 Jan 9;15(2):349. doi: 10.3390/polym15020349.

Abstract

This paper is concerned with the multi-objective optimization of thickness-wise CNT distribution in functionally graded porous CNT-reinforced composite (FG-porous CNTRC) beams. The mechanical behaviors of FG-porous CNTRC structures are strongly influenced by the thickness-wise distributions of CNTs and porosity. Nevertheless, several linear functions were simply adopted to represent the thickness-wise CNT distribution without considering the porosity distribution, so these assumed linear primitive CNT distribution patterns are not sufficient to respond to arbitrary loading and boundary conditions. In this context, this study presents the multi-objective optimization of thickness-wise CNT distribution in FG-CNTRC porous beams to simultaneously minimize the peak effective stress and the peak deflection. The multi-objective function is defined by the larger value between two normalized quantities and the design variable vector is composed of the layer-wise CNT volume fractions. The constrained multi-objective optimization problem is formulated by making use of the exterior penalty-function method and the aspiration-level adjustment. The proposed optimization method is demonstrated through the numerical experiments, and the optimization solutions are investigated with respect to the porosity distribution and the combination of aspiration levels for two single-objective functions. It is found from the numerical results that the optimum CNT distribution is significantly affected by the porosity distribution. Furthermore, the proposed method can be successfully used to seek an optimum CNT distribution within FG-porous CNTRC structures which simultaneously enhances the multi-objective functions.

摘要

本文关注功能梯度多孔碳纳米管增强复合材料(FG-多孔CNTRC)梁中碳纳米管沿厚度方向分布的多目标优化。FG-多孔CNTRC结构的力学行为受碳纳米管沿厚度方向的分布和孔隙率的强烈影响。然而,以往研究只是简单地采用几个线性函数来表示碳纳米管沿厚度方向的分布,而未考虑孔隙率分布,因此这些假定的线性原始碳纳米管分布模式不足以应对任意的载荷和边界条件。在此背景下,本研究提出了FG-CNTRC多孔梁中碳纳米管沿厚度方向分布的多目标优化方法,以同时最小化峰值有效应力和峰值挠度。多目标函数由两个归一化量中的较大值定义,设计变量向量由各层碳纳米管体积分数组成。利用外部罚函数法和抱负水平调整法建立了约束多目标优化问题。通过数值实验验证了所提出的优化方法,并针对孔隙率分布以及两个单目标函数的抱负水平组合对优化解进行了研究。从数值结果可以看出,最佳碳纳米管分布受孔隙率分布的显著影响。此外,所提出的方法可成功用于在FG-多孔CNTRC结构中寻找最佳碳纳米管分布,同时增强多目标函数。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/900d/9864600/4bbc36197bd5/polymers-15-00349-g001.jpg

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