Mechanics

Dynamic Response Analysis of Hierarchical Aluminum Honeycomb Sandwich Structure Subjected to Explosive Load

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  • 1.State Key Laboratory of Advanced Design and Manufacturing for Vehicle Body,Hunan University,Changsha 410082,Hunan,China; 2.Institute of Applied Mechanics and Biomedical Engineering,Taiyuan University of Technology,Taiyuan 030024,Shanxi,China
孙光永( 1981-) ,男,副研究员,博士生导师,主要从事汽车车身结构多学科与轻量化设计、工程优化新算法开发、板料成形工艺、汽车主被动安全、拓扑优化设计、超轻材料及结构、复合材料研究.

Received date: 2016-10-07

  Online published: 2020-11-23

Supported by

Supported by the National Natural Science Foundation of China( 51575172) ,the National Natural Science Foundation of China for Youths( 11602161) and the Natural Science Foundation of Shanxi Province for Youths( 201601D021025)

Abstract

Firstly,a hierarchical honeycomb structure is constructed by replacing each vertex of a regular hexagonal network with a smaller hexagon topology.Secondly,the dynamic response and energy adsorption property of hierarchical honeycombs subjected to explosive load are analyzed by using the finite element software LS-DYNA.Then,the influences of load condition and core-layer configuration on structure deformation and energy absorption are investigated.Finally,a comparison is made between the hierarchical honeycomb sandwich structure and the traditional one.The results show that ( 1) under low load,the deflection of the back panel of traditional aluminum honeycomb sandwich structure is relatively small,while under high load,the constructed hierarchical honeycomb sandwich structure possesses relatively small reflection and good impact resistance,and this superiority becomes obvious as load increases; ( 2) hierarchy parameter slightly affects the deflection of back panels but significantly affects the specific energy absorption of the core; and ( 3) the specific energy absorption of the core reaches the maximum when the hierarchy parameter is 0. 1.

Cite this article

SUN Guang-yong ZHANG Jing-tao LI Shi-qiang LI Guang-yao . Dynamic Response Analysis of Hierarchical Aluminum Honeycomb Sandwich Structure Subjected to Explosive Load[J]. Journal of South China University of Technology(Natural Science), 2017 , 45(5) : 141 -146 . DOI: 10.3969/j.issn.1000-565X.2017.05.020

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