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Stiff square structure with a negative Poisson's ratio

机译:泊松比为负的刚性方形结构

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A novel 2D cellular structure achieved by alternating rectangular surface indents on the vertical ribs of the unit cells was designed. And the Poisson's ratios of several structures were determined using the finite element method(FEM) as a function of geometric parameters. The simulation results showed that the Poisson's ratio of the 2D cellular structure was sensitive to the cell dimensional ratio, and the value can be tuned from positive to negative(the minimum can reach -1.05). Samples with identical geometric variables were fabricated via 3D printing, and their Poisson's ratios were measured and compared with the ones from simulation. Excellent agreement was found between the experimental results and the simulation. The stiffness of the model can be higher than honeycomb made of regular hexagons with appropriate geometric parameters.
机译:设计了一种新颖的2D细胞结构,该结构通过在晶胞的垂直肋上交替矩形表面凹痕而实现。并利用有限元方法(FEM)确定了几种结构的泊松比,并将其作为几何参数的函数。仿真结果表明,二维单元结构的泊松比对单元尺寸比敏感,其值可以从正值调整为负值(最小值可以达到-1.05)。通过3D打印制造出具有相同几何变量的样品,并测量其泊松比并将其与仿真结果进行比较。实验结果和模拟结果之间找到了极好的一致性。模型的刚度可以高于具有适当几何参数的规则六边形制成的蜂窝。

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