耐撞性
进化算法
复合数
替代模型
多目标优化
优化设计
计算机科学
管(容器)
克里金
纤维
工程设计过程
材料科学
结构工程
机械工程
工程类
有限元法
算法
复合材料
机器学习
作者
Dongyang Sun,Yudu Jiao,Yuanhao Tian,Youkun Gong,Leilei Li,Huiming Ning
出处
期刊:Polymers
[MDPI AG]
日期:2024-08-29
卷期号:16 (17): 2457-2457
标识
DOI:10.3390/polym16172457
摘要
An innovative optimal design framework is developed aiming at enhancing the crashworthiness while ensuring the lightweight design of a hybrid two-dimensional triaxial braided composite (2DTBC) tube, drawing insights from the mesostructure of the composite material. To achieve these goals, we first compile the essential mechanical properties of the 2DTBC using a concentric cylinder model (CCM) and an analytical laminate model. Subsequently, a kriging surrogate model to elucidate the intricate relationship between design variables and macroscopic crashworthiness is developed and validated. Finally, employing multi-objective evolutionary optimization, we identify Pareto optimal solutions, highlighting that reducing the total fiber volume and increasing the glass fiber content in the total fiber volume are crucial for optimal crashworthiness and the lightweight design of the hybrid 2DTBC tube. By integrating advanced predictive modeling techniques with multi-objective evolutionary optimization, the proposed approach not only sheds light on the fundamental principles governing the crashworthiness of hybrid 2DTBC but also provides valuable insights for the design of robust and lightweight composite structures.
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