JOURNAL ARTICLE

Indentation resistance of the re-entrant hexagonal honeycombs with negative poisson's ratio

Lingling HuHuiwen Deng

Year: 2015 Journal:   Materials Research Innovations Vol: 19 (sup1)Pages: S1-442   Publisher: Taylor & Francis

Abstract

AbstractThe influences of the cell-wall angle on the indentation resistance of the re-entrant hexagonal honeycombs with negative Poisson's ratio are studied by employing both the numerical tests and the theoretical analysis. In the numerical tests, two groups of honeycombs are investigated, i.e. the same-density group and the same-cell-wall group. It is shown that the honeycomb's indentation resistance increases with the cell-wall angle in the same-density group, while the cell-wall angle plays a minor role in the same-cell-wall group. The theoretical analysis is employed to explain the phenomena. The effect of the negative Poison's ratio is calculated to increase with the cell-wall angle. The average stress of the re-entrant honeycomb during compression is deduced as a function of the cell-wall angle and the cell-wall size or the honeycomb's relative density. The analytical results are consistent with the numerical tests and give an explanation for the phenomena in tests.Keywords: Re-entrant honeycombHexagonalNegative poisson's ratioIndentationCell-wall angle AcknowledgementsThe authors thank the support from the National Natural Science Foundation of China under grant nos. 11472314 and 11172335.

Keywords:
Materials science Honeycomb Hexagonal crystal system Indentation Honeycomb structure Poisson's ratio Composite material Relative density Poisson distribution Microstructure Crystallography Mathematics

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Topics

Cellular and Composite Structures
Physical Sciences →  Engineering →  Mechanical Engineering
Mechanical stress and fatigue analysis
Physical Sciences →  Engineering →  Mechanics of Materials
High-Velocity Impact and Material Behavior
Physical Sciences →  Materials Science →  Materials Chemistry

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