Multi-objective optimization design of a multi-layer honeycomb sandwich structure under blast loading

被引:16
|
作者
Wang, Zongqian [1 ]
Zhou, Yunbo [1 ]
Wang, Xianhui [1 ]
Zhang, Xinlei [1 ]
机构
[1] Nanjing Univ Sci & Technol, Dept Mech Engn, Nanjing 210094, Jiangsu, Peoples R China
基金
中国国家自然科学基金;
关键词
Ordnance science technology; protective vehicle; honeycomb sandwich structure; blast wave; Pareto optimality; normal-boundary intersection; MINE BLAST; VEHICLE; PANELS;
D O I
10.1177/0954407016672606
中图分类号
TH [机械、仪表工业];
学科分类号
0802 ;
摘要
In order to improve the shielding performance of the underbody protective structure of military vehicles when subjected to explosive events, a multi-layer honeycomb sandwich structure is proposed. Full consideration of the computing response of the underbody protective structure under blast loading is a large-scale and strongly non-linear problem; a reasonably simplified finite element model is constructed in this paper. LS-DYNA software was employed to simulate blast loading by using the *LOAD_BLASTequation and to compute the dynamic responses of the vehicle; then, full-scale experiments were performed to validate the accuracy of the numerical simulation. The geometric dimensions and the shape parameters of the multi-layer honeycomb sandwich structure are selected as the design variables, thereby establishing a response surface and a mathematical optimization model by employing the design-of-experiments method. A Pareto spatial optimal set is obtained by applying a multi-objective genetic algorithm. Eventually, using the normal-boundary intersection algorithm an optimum design was obtained, which can apparently enhance the shielding performance of the underbody protective structure of military vehicles without increasing the mass.
引用
收藏
页码:1449 / 1458
页数:10
相关论文
共 50 条
  • [21] Multi-objective crashworthiness optimization for an auxetic cylindrical structure under axial impact loading
    Gao, Qiang
    Zhao, Xuan
    Wang, Chenzhi
    Wang, Liangmo
    Ma, Zhengdong
    MATERIALS & DESIGN, 2018, 143 : 120 - 130
  • [22] Multi-objective optimization design of a circular core paper sandwich panel
    Jiang, Xiawang
    Zhang, Shihao
    Yu, Minggong
    Sun, Delin
    NORDIC PULP & PAPER RESEARCH JOURNAL, 2024,
  • [23] Multi-objective Genetic Topological Optimization for Design of Blast Resistant Composites
    M. P. Sheyka
    A. B. Altunc
    M. M. Reda Taha
    Applied Composite Materials, 2012, 19 : 785 - 798
  • [24] Multilayer functional structure design and multi-objective optimization
    Li, Bowen
    Zhang, Feng
    Jin, Peng
    MECHANICS BASED DESIGN OF STRUCTURES AND MACHINES, 2024, 52 (08) : 5836 - 5848
  • [25] Multi-objective Genetic Topological Optimization for Design of Blast Resistant Composites
    Sheyka, M. P.
    Altunc, A. B.
    Taha, M. M. Reda
    APPLIED COMPOSITE MATERIALS, 2012, 19 (05) : 785 - 798
  • [26] Multi-objective optimization of a sandwich structure with a hybrid composite grid core
    Kermani, Alireza
    Ehsani, Amir
    ADVANCES IN STRUCTURAL ENGINEERING, 2023, 26 (01) : 137 - 152
  • [27] Blast resistance and multi-objective optimization of aluminum foam-cored sandwich panels
    Qi, Chang
    Yang, Shu
    Yang, Li-Jun
    Wei, Zhi-Yong
    Lu, Zhen-Hua
    COMPOSITE STRUCTURES, 2013, 105 : 45 - 57
  • [28] Efficient design of composite honeycomb sandwich panels under blast loading
    Sawant, Rashmi
    Patel, Shivdayal
    PROCEEDINGS OF THE INSTITUTION OF MECHANICAL ENGINEERS PART C-JOURNAL OF MECHANICAL ENGINEERING SCIENCE, 2024, 238 (21) : 10515 - 10535
  • [29] Probabilistic multi-objective optimization of a corrugated-core sandwich structure
    Khalkhali, Abolfazl
    Sarmadi, Morteza
    Khakshournia, Sharif
    Jafari, Nariman
    GEOMECHANICS AND ENGINEERING, 2016, 10 (06) : 709 - 726
  • [30] Multi-Layer and Multi-Objective Optimization Design of Supporting Structure of Large-Scale Spherical Solar Concentrator for the Space Solar Power Station
    Yang, Yang
    Hu, Jun
    Zhu, Lin
    Pei, Mengchen
    JOURNAL OF RENEWABLE MATERIALS, 2022, 10 (11) : 2835 - 2849