Experimental Analyses on Energy Absorption Property of Aluminum Honeycomb under Out-of-Plane Compression

Author:

Zhao Jing Hui1,Wang Jian Feng1,Liu Tao1,Yang Na1,Duan Wen Jie1,He Zhong Qing1

Affiliation:

1. Harbin Institute of Technology

Abstract

Aluminum honeycomb is a lightweight material with high strength and strong capacity of energy absorption. In order to research energy absorption characteristic of aluminum honeycomb material, quasi-static and dynamic out-of-plane compression experiments are carried out on a double-layer aluminum honeycomb impact attenuator of one FSAE racing car. Plateau stress (PS), specific load (SL), mass specific energy absorption (MSEA), volume specific energy absorption (VSEA) and other parameters of the tested aluminum honeycomb under both quasi-static and dynamic impact conditions are analyzed. The results show that the tested aluminum honeycomb impact attenuator has good energy absorption capacity to meet the collision requirements. Furthermore, under the condition of dynamic impact, the energy absorption capacity of this honeycomb improves compared with that under the condition of quasi static compression.

Publisher

Trans Tech Publications, Ltd.

Reference13 articles.

1. ONG Hongwei, FAN Zijie, YU Gang. Energy absorption behavior of several typical crashworthy structures[C]/Society of Automotive Engineers of China. Technologies of Automotive Engineering. Beijing: China Communications Press, 2004: 44−49.

2. Lu G X, Yu T X. Energy absorption of structures and materials [M]. Cambridge: Woodhead Publishing Limited, 2003: 268−278.

3. Wierzbicki T. Crushing analysis of metal honeycomb [J]. Int J Impact Eng, 1983, 2(1): 157−174.

4. Gibson L J, Ashby M F. Cellular solids: Structures and properties [M]. 2nd ed. Cambridge: Cambridge University Press, 1997: 93−158.

5. Zhao H, G Gary. Crushing behavior of aluminum honeycombs under impact loading [J] Int J Impact Eng, 1998, 21(10): 827−836.

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