A novel tubular structure with negative Poisson's ratio based on gyroid-type triply periodic minimal surfaces

A novel type of tubular structure with negative Poisson's ratio based on gyroid-type triply periodic minimal surfaces (TPMSs) is proposed in this study. This work is an attempt to design auxetic tubular structures based on TPMS. A series of auxetic tubular structures were designed and then fabr...

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Vydáno v:Virtual and physical prototyping Ročník 18; číslo 1
Hlavní autoři: Wang, Weiwei, Jin, Yuan, Mu, Yanru, Zhang, Minghua, Du, Jianke
Médium: Journal Article
Jazyk:angličtina
Vydáno: Taylor & Francis 31.12.2023
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ISSN:1745-2759, 1745-2767
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Abstract A novel type of tubular structure with negative Poisson's ratio based on gyroid-type triply periodic minimal surfaces (TPMSs) is proposed in this study. This work is an attempt to design auxetic tubular structures based on TPMS. A series of auxetic tubular structures were designed and then fabricated using laser power bed fusion. Compressive behaviours of the fabricated auxetic tubular structures were investigated using experimental and numerical methods. To obtain optimal designs of tubular structures with controllable auxetic properties, the influence of several parameters were investigated comprehensively. Subsequently, several graded auxetic tubular structures were designed based on the parametric analysis and studied numerically. The mechanical properties of the tubular structures could be controlled effectively using the proposed approach. The proposed method can be used for guiding the design and optimisation of auxetic tubular structures, showing excellent potential for various applications such as biomedical devices, vehicle crashworthiness, and protective engineering.
AbstractList A novel type of tubular structure with negative Poisson's ratio based on gyroid-type triply periodic minimal surfaces (TPMSs) is proposed in this study. This work is an attempt to design auxetic tubular structures based on TPMS. A series of auxetic tubular structures were designed and then fabricated using laser power bed fusion. Compressive behaviours of the fabricated auxetic tubular structures were investigated using experimental and numerical methods. To obtain optimal designs of tubular structures with controllable auxetic properties, the influence of several parameters were investigated comprehensively. Subsequently, several graded auxetic tubular structures were designed based on the parametric analysis and studied numerically. The mechanical properties of the tubular structures could be controlled effectively using the proposed approach. The proposed method can be used for guiding the design and optimisation of auxetic tubular structures, showing excellent potential for various applications such as biomedical devices, vehicle crashworthiness, and protective engineering.
Author Wang, Weiwei
Du, Jianke
Mu, Yanru
Zhang, Minghua
Jin, Yuan
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  fullname: Zhang, Minghua
  organization: Ningbo University
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  surname: Du
  fullname: Du, Jianke
  organization: Ningbo University
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  doi: 10.1126/science.235.4792.1038
– ident: e_1_3_2_39_1
  doi: 10.1016/j.tws.2021.107682
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Snippet A novel type of tubular structure with negative Poisson's ratio based on gyroid-type triply periodic minimal surfaces (TPMSs) is proposed in this study. This...
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SubjectTerms finite element modelling
Negative Poisson's ratio; tubular structure; triply periodic minimal surface; compressive properties
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Title A novel tubular structure with negative Poisson's ratio based on gyroid-type triply periodic minimal surfaces
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