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Nonlinear Analysis of the In-Plane Young's Moduli of Two-Dimensional Cellular Materials with Negative Poisson's Ratios

机译:负泊松比例二维细胞材料的平面杨模型非线性分析

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This study deals with the in-plane Young's moduli of two-dimensional auxetic cellular materials with negative Poisson's ratios. The in-plane Young's moduli of these cellular materials are theoretically analyzed, and calculated from the cell member bending with large deflection. Expressions for the in-plane Young's moduli of the above-mentioned cellular materials are given by incomplete elliptic integrals. It is found that the in-plane Young's moduli of two-dimensional cellular materials with negative Poisson's ratios depend both on the geometry of the cell, and on the induced strain of these cellular materials. The in-plane Young's moduli are no longer constants at large deformation. But at the limit of small strain, they converge to the results predicted by the small deformation model of flexure.
机译:本研究涉及与负泊松比率的平面内杨模态的二维辅助蜂窝材料的Moduli。理论上分析了这些细胞材料的平面杨的模型,并根据具有大偏转的电池构件弯曲计算。对上述细胞材料的平面内杨模的表达式由不完全的椭圆形积分给出。结果发现,具有负泊松比率的二维细胞材料的平面内杨的模量取决于细胞的几何形状,以及这些细胞材料的诱导菌株。在平面内的杨氏的Moduli不再是大变形的常数。但是在小菌株的极限下,它们会聚到由弯曲的小变形模型预测的结果。

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