Analytical solution and finite element approach to the dense re-entrant unit cells of auxetic structures
Chiral, star honeycomb, and re-entrant structures are among the most important structures of auxetic materials. In this study, a dense re-entrant unit cell is introduced for making a 3D auxetic structure to be used in high stiffness applications. A re-entrant structure is chosen due to its fundament...
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my.utm.878412020-11-30T13:28:28Z http://eprints.utm.my/id/eprint/87841/ Analytical solution and finite element approach to the dense re-entrant unit cells of auxetic structures Rad, M. Shokri Hatami, H. Ahmad, Z. Yasuri, A. Karimdoost TJ Mechanical engineering and machinery Chiral, star honeycomb, and re-entrant structures are among the most important structures of auxetic materials. In this study, a dense re-entrant unit cell is introduced for making a 3D auxetic structure to be used in high stiffness applications. A re-entrant structure is chosen due to its fundamental characteristics underlying the main characteristics of auxetic structures. The energy methods of solid mechanics along with numerical methods are used to study the fundamental concept of auxetic structures. Understanding the characteristics of the re-entrant structure will lead to the better comprehension of other structures of auxetic materials, which will eventually contribute to the advance of research in this new class of materials. Springer-Verlag Wien 2019 Article PeerReviewed Rad, M. Shokri and Hatami, H. and Ahmad, Z. and Yasuri, A. Karimdoost (2019) Analytical solution and finite element approach to the dense re-entrant unit cells of auxetic structures. Acta Mechanica, 230 (6). pp. 2171-2185. ISSN 0001-5970 http://dx.doi.org/10.1007/s00707-019-02387-x DOI:10.1007/s00707-019-02387-x |
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TJ Mechanical engineering and machinery Rad, M. Shokri Hatami, H. Ahmad, Z. Yasuri, A. Karimdoost Analytical solution and finite element approach to the dense re-entrant unit cells of auxetic structures |
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Chiral, star honeycomb, and re-entrant structures are among the most important structures of auxetic materials. In this study, a dense re-entrant unit cell is introduced for making a 3D auxetic structure to be used in high stiffness applications. A re-entrant structure is chosen due to its fundamental characteristics underlying the main characteristics of auxetic structures. The energy methods of solid mechanics along with numerical methods are used to study the fundamental concept of auxetic structures. Understanding the characteristics of the re-entrant structure will lead to the better comprehension of other structures of auxetic materials, which will eventually contribute to the advance of research in this new class of materials. |
format |
Article |
author |
Rad, M. Shokri Hatami, H. Ahmad, Z. Yasuri, A. Karimdoost |
author_facet |
Rad, M. Shokri Hatami, H. Ahmad, Z. Yasuri, A. Karimdoost |
author_sort |
Rad, M. Shokri |
title |
Analytical solution and finite element approach to the dense re-entrant unit cells of auxetic structures |
title_short |
Analytical solution and finite element approach to the dense re-entrant unit cells of auxetic structures |
title_full |
Analytical solution and finite element approach to the dense re-entrant unit cells of auxetic structures |
title_fullStr |
Analytical solution and finite element approach to the dense re-entrant unit cells of auxetic structures |
title_full_unstemmed |
Analytical solution and finite element approach to the dense re-entrant unit cells of auxetic structures |
title_sort |
analytical solution and finite element approach to the dense re-entrant unit cells of auxetic structures |
publisher |
Springer-Verlag Wien |
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2019 |
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http://eprints.utm.my/id/eprint/87841/ http://dx.doi.org/10.1007/s00707-019-02387-x |
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1685578997750038528 |