中国科学院机构知识库网格
Chinese Academy of Sciences Institutional Repositories Grid
Modelling and characterization of mechanical properties of optimized honeycomb structure

文献类型:期刊论文

作者Zhang L(张丽); Liu B(刘兵); Xu XH(许向红)
刊名International Journal of Mechanics and Materials in Design
出版日期2020-03
卷号16期号:1页码:155-166
关键词Honeycomb Structure,Cell Joint Thickened,Mechanical Properties Optimization
ISSN号1569-1713
英文摘要

The honeycomb structure can be applied to the design of new lightweight composites materials due to its excellent properties such as high strength,strong energy absorption ability, low thermal conductivity, etc. In recent years, researchers have noticed that cell joint performance optimization can improve the performance of honeycomb structures. In this study, an optimized honeycomb structure with cell joint thickened was obtained by a theoretical analysis in which two principal geometrical parameters were adjusted, and then fabricated with additive manufacturing technology for compression testing. The results were obtained through experimentation and qualitative simulation, and then compared with those of a traditional honeycomb structure with uniform wall thickness. Finally, the mechanism of the optimized thickened-joint honeycomb structure was investigated, which could be a design guideline for the application of honeycomb structures in various engineering fields.
 

分类号二类/Q1
语种英语
其他责任者许向红
源URL[http://dspace.imech.ac.cn/handle/311007/84891]  
专题力学研究所_非线性力学国家重点实验室
通讯作者Xu XH(许向红)
推荐引用方式
GB/T 7714
Zhang L,Liu B,Xu XH. Modelling and characterization of mechanical properties of optimized honeycomb structure[J]. International Journal of Mechanics and Materials in Design,2020,16(1):155-166.
APA Zhang L,Liu B,&Xu XH.(2020).Modelling and characterization of mechanical properties of optimized honeycomb structure.International Journal of Mechanics and Materials in Design,16(1),155-166.
MLA Zhang L,et al."Modelling and characterization of mechanical properties of optimized honeycomb structure".International Journal of Mechanics and Materials in Design 16.1(2020):155-166.

入库方式: OAI收割

来源:力学研究所

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