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Parametric analysis of a cylindrical negative Poisson's ratio structure

机译:圆柱负泊松比结构的参数分析

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Much research related to negative Poisson's ratio (NPR), or auxetic, structures is emerging these days. Several types of 3D NPR structure have been proposed and studied, but almost all of them had cuboid shapes, which were not suitable for certain engineering applications. In this paper, a cylindrical NPR structure was developed and researched. It was expected to be utilized in springs, bumpers, dampers and other similar applications. For the purpose of parametric analysis, a method of parametric modeling of cylindrical NPR structures was developed using MATLAB scripts. The scripts can automatically establish finite element models, invoke ABAQUS, read results etc. Subsequently the influences of structural parameters, including number of cells, number of layers and layer heights, on the uniaxial compression behavior of cylinder NPR structures were researched. This led to the conclusion that the stiffness of the cylindrical NPR structure was enhanced on increasing the number of cells and reducing the effective layer height. Moreover, small numbers of layers resulted in a late transition area of the load-displacement curve from low stiffness to high stiffness. Moreover, the middle contraction regions were more apparent with larger numbers of cells, smaller numbers of layers and smaller effective layer heights. The results indicate that the structural parameters had significant effects on the load-displacement curves and deformed shapes of cylindrical NPR structures. This paper is conducive to the further engineering applications of cylindrical NPR structures.
机译:如今,有关负泊松比(NPR)或膨胀结构的许多研究正在兴起。已经提出并研究了几种类型的3D NPR结构,但几乎所有类型都具有长方体形状,因此不适用于某些工程应用。本文研究并研究了一种圆柱型NPR结构。预期将其用于弹簧,保险杠,减震器和其他类似应用中。为了进行参数分析,使用MATLAB脚本开发了圆柱NPR结构的参数化建模方法。该脚本可以自动建立有限元模型,调用ABAQUS,读取结果等。随后研究了结构参数(包括孔数,层数和层高)对圆柱NPR结构单轴压缩行为的影响。这得出结论,增加孔数和减小有效层高可以增强圆柱NPR结构的刚度。此外,少量的层导致载荷-位移曲线从低刚度到高刚度的较晚过渡区域。此外,随着细胞数量的增加,层数的减少和有效层高度的减小,中间收缩区域变得更加明显。结果表明,结构参数对圆柱NPR结构的荷载-位移曲线和变形形状具有显着影响。本文有利于圆柱NPR结构的进一步工程应用。

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