JOURNAL ARTICLE

On the out-of-plane crashworthiness of incorporating hierarchy and gradient into hexagonal honeycomb

Ruochao ZhaoBo YuanDe ZhouZ. LiMing ZhaoYong Tao

Year: 2023 Journal:   Mechanics of Advanced Materials and Structures Vol: 31 (23)Pages: 5927-5941   Publisher: Taylor & Francis

Abstract

Hierarchical design and gradient design have proven to be effective in improving the crashworthiness of honeycombs. In this study, a novel graded hierarchical hexagonal honeycomb (GHHH) is proposed by introducing wall thickness variation into the vertex-based hierarchical hexagonal honeycomb (VHHH). The VHHH is obtained by replacing every vertex of the regular hexagonal honeycomb (RHH) with a smaller hexagon. Numerical simulations and theoretical analysis are performed to study the crashworthiness performance of GHHH under the out-of-plane impact. The numerical results show that the specific energy absorption (SEA) of GHHH can be 146.09%, 39.01%, and 50.23% higher than that of RHH, VHHH, and graded hexagonal honeycomb (GHH), respectively, while their peak stresses are nearly the same. In addition, a theoretical model for the plateau stress of GHHH is developed, and the theoretical values show good consistency with numerical results of GHHH with in-extensional mode. The findings of this study provide an effective guideline for the design of honeycombs with enhanced crashworthiness.

Keywords:
Crashworthiness Honeycomb Hexagonal crystal system Materials science Vertex (graph theory) Structural engineering Honeycomb structure Hierarchy Finite element method Composite material Mathematics Engineering Combinatorics Crystallography

Metrics

27
Cited By
4.98
FWCI (Field Weighted Citation Impact)
77
Refs
0.94
Citation Normalized Percentile
Is in top 1%
Is in top 10%

Citation History

Topics

Cellular and Composite Structures
Physical Sciences →  Engineering →  Mechanical Engineering
Automotive and Human Injury Biomechanics
Health Sciences →  Medicine →  Pulmonary and Respiratory Medicine
Transportation Safety and Impact Analysis
Physical Sciences →  Engineering →  Civil and Structural Engineering

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