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一种三维星形负泊松比复合结构的力学特性

Mechanics Characteristics of a 3D Star-Shaped Negative Poisson's Ratio Composite Structure.

作者信息

Yang Linyi, Ye Mao, Huang Yonghui, Dong Jingkun

机构信息

Wind Engineering and Engineering Vibration Research Center, Guangzhou University, Guangzhou 510006, China.

出版信息

Materials (Basel). 2023 May 25;16(11):3950. doi: 10.3390/ma16113950.

Abstract

A negative Poisson's ratio honeycomb material has the characteristics of anti-conventional deformation behavior and high impact resistance, which is a new lightweight microstructure material with broad application prospects. However, most of the current research is still at the microscopic level and two-dimensional level, and little research has been carried out for three-dimensional structures. Compared with the two-dimensional level, three-dimensional negative Poisson's ratio structural mechanics metamaterials have the advantages of a lighter mass, higher material utilization, and more stable mechanical properties, and they have great potential for development in the fields of aerospace, the defense industry, and vehicles and ships. This paper presents a novel 3D star-shaped negative Poisson's ratio cell and composite structure, inspired by the octagon-shaped 2D negative Poisson's ratio cell. The article carried out a model experimental study with the help of 3D printing technology and compared it with the numerical simulation results. The effects of structural form and material properties on the mechanical characteristics of 3D star-shaped negative Poisson's ratio composite structures were investigated through a parametric analysis system. The results show that the error of the equivalent elastic modulus and the equivalent Poisson's ratio of the 3D negative Poisson's ratio cell and the composite structure is within 5%. The authors found that the size of the cell structure is the main factor affecting the equivalent Poisson's ratio and the equivalent elastic modulus of the star-shaped 3D negative Poisson's ratio composite structure. Furthermore, among the eight real materials tested, rubber exhibited the best negative Poisson's ratio effect, while the copper alloy showed the best effect among the metal materials, with a Poisson's ratio between -0.058 to -0.050.

摘要

负泊松比蜂窝材料具有反常规变形行为和高抗冲击性的特点,是一种具有广阔应用前景的新型轻质微观结构材料。然而,目前的研究大多仍处于微观层面和二维层面,对三维结构的研究较少。与二维层面相比,三维负泊松比结构力学超材料具有质量更轻、材料利用率更高、力学性能更稳定的优点,在航空航天、国防工业以及车船等领域具有巨大的发展潜力。本文受八边形二维负泊松比单元的启发,提出了一种新型的三维星形负泊松比单元及复合材料结构。文章借助3D打印技术进行了模型实验研究,并将其与数值模拟结果进行了比较。通过参数分析系统研究了结构形式和材料性能对三维星形负泊松比复合材料结构力学特性的影响。结果表明,三维负泊松比单元及复合材料结构的等效弹性模量和等效泊松比的误差在5%以内。作者发现,单元结构的尺寸是影响星形三维负泊松比复合材料结构等效泊松比和等效弹性模量的主要因素。此外,在所测试的八种实际材料中,橡胶表现出最佳的负泊松比效应,而铜合金在金属材料中表现出最佳效果,泊松比在-0.058至-0.050之间。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6d0b/10254223/03616872e073/materials-16-03950-g001.jpg

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