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基于带有内凹支柱的方形单元新型设计参数的负泊松比结构正交各向异性行为评估

Evaluation of the Orthotropic Behavior in an Auxetic Structure Based on a Novel Design Parameter of a Square Cell with Re-Entrant Struts.

作者信息

Valle Rodrigo, Pincheira Gonzalo, Tuninetti Víctor, Garrido Cesar, Treviño Cecilia, Morales Jorge

机构信息

Faculty of Engineering, University of Talca, Talca 353 0000, Maule, Chile.

Department of Industrial Technologies, University of Talca, Talca 353 0000, Maule, Chile.

出版信息

Polymers (Basel). 2022 Oct 14;14(20):4325. doi: 10.3390/polym14204325.

Abstract

In this research, a three-dimensional auxetic configuration based on a known re-entrant cell is proposed. The 3D auxetic cell is configured from a new design parameter that produces an internal rotation angle to its re-entrant elements to study elastic properties in its three orthogonal directions. Through a topological analysis using Timoshenko beam theory, the bending of its re-entrant struts is modeled as a function of the new design parameter to manipulate Poisson's ratio and Young's modulus. Experimental samples were fabricated using a fused filament fabrication system using ABS and subsequently tested under quasi-static compression and bending tests. Additionally, an orthotropy factor is applied that allows for measuring the deviation between the mechanical properties of each structure. The experimental results validate the theoretical design and show that this new unit cell can transmit an orthotropic mechanical behavior to the macrostructure. In addition, the proposed structure can provide a different bending stiffness behavior in up to three working directions, which allows the application under different conditions of external forces, such as a prosthetic ankle.

摘要

在本研究中,提出了一种基于已知凹六边形单元的三维负泊松比结构。该三维负泊松比单元由一个新的设计参数构成,该参数会使其凹六边形单元产生内旋转角度,以研究其在三个正交方向上的弹性特性。通过使用铁木辛柯梁理论进行拓扑分析,将其凹六边形支柱的弯曲建模为新设计参数的函数,以控制泊松比和杨氏模量。使用熔融沉积成型系统,以丙烯腈-丁二烯-苯乙烯共聚物(ABS)制造实验样品,随后在准静态压缩和弯曲试验下进行测试。此外,应用了一个正交异性因子,用于测量每个结构力学性能之间的偏差。实验结果验证了理论设计,并表明这种新的单元胞可以将正交异性力学行为传递到宏观结构。此外,所提出的结构可以在多达三个工作方向上提供不同的弯曲刚度行为,这使得其能够应用于不同外力条件下,如假肢脚踝。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/40a5/9607124/ca32ec4805f1/polymers-14-04325-g001.jpg

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