Crashworthiness Optimization Design of Aluminum Alloy Thin-Walled Triangle Column Based on Bioinspired Strategy

Aluminum alloy thin-walled structures have been well used in applications of energy absorption. In the present work, a bioinspired design strategy for aluminum alloy thin-walled structures is proposed to improve the performance of out-of-plane crashworthiness by altering the material distribution. A...

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Main Authors: Kangjie Li, Yixiong Feng, Yicong Gao, Hao Zheng, Hao Qiu
Format: Article
Language:English
Published: MDPI AG 2020-02-01
Series:Materials
Subjects:
Online Access:https://www.mdpi.com/1996-1944/13/3/666
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spelling doaj-e45649dc220641739b1f04e155db50782020-11-25T02:20:25ZengMDPI AGMaterials1996-19442020-02-0113366610.3390/ma13030666ma13030666Crashworthiness Optimization Design of Aluminum Alloy Thin-Walled Triangle Column Based on Bioinspired StrategyKangjie Li0Yixiong Feng1Yicong Gao2Hao Zheng3Hao Qiu4State Key Laboratory of Fluid Power and Mechatronic Systems, Zhejiang University, Hangzhou 310027, ChinaState Key Laboratory of Fluid Power and Mechatronic Systems, Zhejiang University, Hangzhou 310027, ChinaState Key Laboratory of Fluid Power and Mechatronic Systems, Zhejiang University, Hangzhou 310027, ChinaHangzhou Innovation Institute, Beihang University, Hangzhou 310052, ChinaState Key Laboratory of Fluid Power and Mechatronic Systems, Zhejiang University, Hangzhou 310027, ChinaAluminum alloy thin-walled structures have been well used in applications of energy absorption. In the present work, a bioinspired design strategy for aluminum alloy thin-walled structures is proposed to improve the performance of out-of-plane crashworthiness by altering the material distribution. According to the proposed strategy, a novel fractal thin-walled triangle column (FTTC) is designed, which is composed by iteratively applying the affine transformation of a base triangle up to 2nd-order. The finite element model is established to investigate the out-of-plane crashworthiness of FTTC and validated by experiment results. The numerical analysis of the crashworthiness of FTTC with different fractal orders (0th, 1st and 2nd) are performed, and the results show that 1st- and 2nd-order FTTC enhance the energy absorption of structures and crush force efficiency. In particular, 2nd-order FTTC has better energy absorption ability due to the optimal distribution of materials, which are efficiently organized by the proposed bioinspired design strategy. In addition, a parameter study is performed to investigate the effect of FTTC geometric details on the crushing procedure. The collapse mode shows that it tends to change from unstable to stable with the increase in thickness and side length and the decrease in height. Moreover, a positive relevant relationship is identified between the thickness and the crashworthiness for FTTC.https://www.mdpi.com/1996-1944/13/3/666crashworthinessfractal designthin-walled columnenergy absorption
collection DOAJ
language English
format Article
sources DOAJ
author Kangjie Li
Yixiong Feng
Yicong Gao
Hao Zheng
Hao Qiu
spellingShingle Kangjie Li
Yixiong Feng
Yicong Gao
Hao Zheng
Hao Qiu
Crashworthiness Optimization Design of Aluminum Alloy Thin-Walled Triangle Column Based on Bioinspired Strategy
Materials
crashworthiness
fractal design
thin-walled column
energy absorption
author_facet Kangjie Li
Yixiong Feng
Yicong Gao
Hao Zheng
Hao Qiu
author_sort Kangjie Li
title Crashworthiness Optimization Design of Aluminum Alloy Thin-Walled Triangle Column Based on Bioinspired Strategy
title_short Crashworthiness Optimization Design of Aluminum Alloy Thin-Walled Triangle Column Based on Bioinspired Strategy
title_full Crashworthiness Optimization Design of Aluminum Alloy Thin-Walled Triangle Column Based on Bioinspired Strategy
title_fullStr Crashworthiness Optimization Design of Aluminum Alloy Thin-Walled Triangle Column Based on Bioinspired Strategy
title_full_unstemmed Crashworthiness Optimization Design of Aluminum Alloy Thin-Walled Triangle Column Based on Bioinspired Strategy
title_sort crashworthiness optimization design of aluminum alloy thin-walled triangle column based on bioinspired strategy
publisher MDPI AG
series Materials
issn 1996-1944
publishDate 2020-02-01
description Aluminum alloy thin-walled structures have been well used in applications of energy absorption. In the present work, a bioinspired design strategy for aluminum alloy thin-walled structures is proposed to improve the performance of out-of-plane crashworthiness by altering the material distribution. According to the proposed strategy, a novel fractal thin-walled triangle column (FTTC) is designed, which is composed by iteratively applying the affine transformation of a base triangle up to 2nd-order. The finite element model is established to investigate the out-of-plane crashworthiness of FTTC and validated by experiment results. The numerical analysis of the crashworthiness of FTTC with different fractal orders (0th, 1st and 2nd) are performed, and the results show that 1st- and 2nd-order FTTC enhance the energy absorption of structures and crush force efficiency. In particular, 2nd-order FTTC has better energy absorption ability due to the optimal distribution of materials, which are efficiently organized by the proposed bioinspired design strategy. In addition, a parameter study is performed to investigate the effect of FTTC geometric details on the crushing procedure. The collapse mode shows that it tends to change from unstable to stable with the increase in thickness and side length and the decrease in height. Moreover, a positive relevant relationship is identified between the thickness and the crashworthiness for FTTC.
topic crashworthiness
fractal design
thin-walled column
energy absorption
url https://www.mdpi.com/1996-1944/13/3/666
work_keys_str_mv AT kangjieli crashworthinessoptimizationdesignofaluminumalloythinwalledtrianglecolumnbasedonbioinspiredstrategy
AT yixiongfeng crashworthinessoptimizationdesignofaluminumalloythinwalledtrianglecolumnbasedonbioinspiredstrategy
AT yiconggao crashworthinessoptimizationdesignofaluminumalloythinwalledtrianglecolumnbasedonbioinspiredstrategy
AT haozheng crashworthinessoptimizationdesignofaluminumalloythinwalledtrianglecolumnbasedonbioinspiredstrategy
AT haoqiu crashworthinessoptimizationdesignofaluminumalloythinwalledtrianglecolumnbasedonbioinspiredstrategy
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