Computational approach in formulating mechanical characteristics of 3D star honeycomb auxetic structure
Auxetic materials exhibit a unique characteristic due to the altered microstructure. Different structures have been used to model these materials. This paper treats a development of finite element model and theoretical formulation of 3D star honeycomb structure of these materials. Various shape para...
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my.utm.581322021-12-17T03:26:58Z http://eprints.utm.my/id/eprint/58132/ Computational approach in formulating mechanical characteristics of 3D star honeycomb auxetic structure Rad, Mozafar Shokri Ahmad, Zaini Alias, Amran TJ Mechanical engineering and machinery Auxetic materials exhibit a unique characteristic due to the altered microstructure. Different structures have been used to model these materials. This paper treats a development of finite element model and theoretical formulation of 3D star honeycomb structure of these materials. Various shape parameters of the structural cell were evaluated with respect to the basic mechanical properties of the cell. Finite element and analytical approach for various geometrical parameters were numerically used to formulate the characteristics of the material. The study aims at quantifying mechanical properties for any domain in which auxetic material is of interest for variations in geometrical parameters. It is evident that mechanical properties of the material could be controlled by changing the base wall angle of the configuration. The primary outcome of the study is a design guideline for the use of 3D star honeycomb auxetic cellular structure in structural applications. Hindawi Publishing Corporation 2015 Article PeerReviewed Rad, Mozafar Shokri and Ahmad, Zaini and Alias, Amran (2015) Computational approach in formulating mechanical characteristics of 3D star honeycomb auxetic structure. Advances In Materials Science And Engineering, 2015 . ISSN 1687-8434 http://dx.doi.org/10.1155/2015/650769 DOI: 10.1155/2015/650769 |
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TJ Mechanical engineering and machinery Rad, Mozafar Shokri Ahmad, Zaini Alias, Amran Computational approach in formulating mechanical characteristics of 3D star honeycomb auxetic structure |
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Auxetic materials exhibit a unique characteristic due to the altered microstructure. Different structures have been used to model these materials. This paper treats a development of finite element model and theoretical formulation of 3D star honeycomb structure of these materials. Various shape parameters of the structural cell were evaluated with respect to the basic mechanical properties of the cell. Finite element and analytical approach for various geometrical parameters were numerically used to formulate the characteristics of the material. The study aims at quantifying mechanical properties for any domain in which auxetic material is of interest for variations in geometrical parameters. It is evident that mechanical properties of the material could be controlled by changing the base wall angle of the configuration. The primary outcome of the study is a design guideline for the use of 3D star honeycomb auxetic cellular structure in structural applications. |
format |
Article |
author |
Rad, Mozafar Shokri Ahmad, Zaini Alias, Amran |
author_facet |
Rad, Mozafar Shokri Ahmad, Zaini Alias, Amran |
author_sort |
Rad, Mozafar Shokri |
title |
Computational approach in formulating mechanical characteristics of 3D star honeycomb auxetic structure |
title_short |
Computational approach in formulating mechanical characteristics of 3D star honeycomb auxetic structure |
title_full |
Computational approach in formulating mechanical characteristics of 3D star honeycomb auxetic structure |
title_fullStr |
Computational approach in formulating mechanical characteristics of 3D star honeycomb auxetic structure |
title_full_unstemmed |
Computational approach in formulating mechanical characteristics of 3D star honeycomb auxetic structure |
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computational approach in formulating mechanical characteristics of 3d star honeycomb auxetic structure |
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Hindawi Publishing Corporation |
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2015 |
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http://eprints.utm.my/id/eprint/58132/ http://dx.doi.org/10.1155/2015/650769 |
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