Inserting Stress Analysis of Combined Hexagonal Aluminum Honeycombs

Two kinds of hexagonal aluminum honeycombs are tested to study their out-of-plane crushing behavior. In the tests, honeycomb samples, including single hexagonal aluminum honeycomb (SHAH) samples and two stack-up combined hexagonal aluminum honeycombs (CHAH) samples, are compressed at a fixed quasist...

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Main Authors: Xiangcheng Li, Kang Li, Yuliang Lin, Rong Chen, Fangyun Lu
Format: Article
Language:English
Published: Hindawi Limited 2016-01-01
Series:Shock and Vibration
Online Access:http://dx.doi.org/10.1155/2016/3240651
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spelling doaj-11e783a6939d444baccdc43c74c12daa2020-11-24T21:09:01ZengHindawi LimitedShock and Vibration1070-96221875-92032016-01-01201610.1155/2016/32406513240651Inserting Stress Analysis of Combined Hexagonal Aluminum HoneycombsXiangcheng Li0Kang Li1Yuliang Lin2Rong Chen3Fangyun Lu4College of Science, National University of Defense Technology, Changsha, Hunan 410073, ChinaCollege of Science, National University of Defense Technology, Changsha, Hunan 410073, ChinaCollege of Science, National University of Defense Technology, Changsha, Hunan 410073, ChinaCollege of Science, National University of Defense Technology, Changsha, Hunan 410073, ChinaCollege of Science, National University of Defense Technology, Changsha, Hunan 410073, ChinaTwo kinds of hexagonal aluminum honeycombs are tested to study their out-of-plane crushing behavior. In the tests, honeycomb samples, including single hexagonal aluminum honeycomb (SHAH) samples and two stack-up combined hexagonal aluminum honeycombs (CHAH) samples, are compressed at a fixed quasistatic loading rate. The results show that the inserting process of CHAH can erase the initial peak stress that occurred in SHAH. Meanwhile, energy-absorbing property of combined honeycomb samples is more beneficial than the one of single honeycomb sample with the same thickness if the two types of honeycomb samples are completely crushed. Then, the applicability of the existing theoretical model for single hexagonal honeycomb is discussed, and an area equivalent method is proposed to calculate the crushing stress for nearly regular hexagonal honeycombs. Furthermore, a semiempirical formula is proposed to calculate the inserting plateau stress of two stack-up CHAH, in which structural parameters and mechanics properties of base material are concerned. The results show that the predicted stresses of three kinds of two stack-up combined honeycombs are in good agreement with the experimental data. Based on this study, stress-displacement curve of aluminum honeycombs can be designed in detail, which is very beneficial to optimize the energy-absorbing structures in engineering fields.http://dx.doi.org/10.1155/2016/3240651
collection DOAJ
language English
format Article
sources DOAJ
author Xiangcheng Li
Kang Li
Yuliang Lin
Rong Chen
Fangyun Lu
spellingShingle Xiangcheng Li
Kang Li
Yuliang Lin
Rong Chen
Fangyun Lu
Inserting Stress Analysis of Combined Hexagonal Aluminum Honeycombs
Shock and Vibration
author_facet Xiangcheng Li
Kang Li
Yuliang Lin
Rong Chen
Fangyun Lu
author_sort Xiangcheng Li
title Inserting Stress Analysis of Combined Hexagonal Aluminum Honeycombs
title_short Inserting Stress Analysis of Combined Hexagonal Aluminum Honeycombs
title_full Inserting Stress Analysis of Combined Hexagonal Aluminum Honeycombs
title_fullStr Inserting Stress Analysis of Combined Hexagonal Aluminum Honeycombs
title_full_unstemmed Inserting Stress Analysis of Combined Hexagonal Aluminum Honeycombs
title_sort inserting stress analysis of combined hexagonal aluminum honeycombs
publisher Hindawi Limited
series Shock and Vibration
issn 1070-9622
1875-9203
publishDate 2016-01-01
description Two kinds of hexagonal aluminum honeycombs are tested to study their out-of-plane crushing behavior. In the tests, honeycomb samples, including single hexagonal aluminum honeycomb (SHAH) samples and two stack-up combined hexagonal aluminum honeycombs (CHAH) samples, are compressed at a fixed quasistatic loading rate. The results show that the inserting process of CHAH can erase the initial peak stress that occurred in SHAH. Meanwhile, energy-absorbing property of combined honeycomb samples is more beneficial than the one of single honeycomb sample with the same thickness if the two types of honeycomb samples are completely crushed. Then, the applicability of the existing theoretical model for single hexagonal honeycomb is discussed, and an area equivalent method is proposed to calculate the crushing stress for nearly regular hexagonal honeycombs. Furthermore, a semiempirical formula is proposed to calculate the inserting plateau stress of two stack-up CHAH, in which structural parameters and mechanics properties of base material are concerned. The results show that the predicted stresses of three kinds of two stack-up combined honeycombs are in good agreement with the experimental data. Based on this study, stress-displacement curve of aluminum honeycombs can be designed in detail, which is very beneficial to optimize the energy-absorbing structures in engineering fields.
url http://dx.doi.org/10.1155/2016/3240651
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AT kangli insertingstressanalysisofcombinedhexagonalaluminumhoneycombs
AT yulianglin insertingstressanalysisofcombinedhexagonalaluminumhoneycombs
AT rongchen insertingstressanalysisofcombinedhexagonalaluminumhoneycombs
AT fangyunlu insertingstressanalysisofcombinedhexagonalaluminumhoneycombs
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