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Negative Poisson's ratio effect of re-entrant anti-trichiral honeycombs under large deformation

机译:大变形下折返式三毛蜂窝的负泊松比效应

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Re-entrant anti-trichiral honeycomb is a typical auxetic material. The collapse process can be divided into three stages while its negative Poisson's ratio (NPR) effect under large deformation is still unclear. In the present paper, the NPR effects of re-entrant anti-trichiral honeycombs under large deformation are studied by numerical and theoretical method. Numerical results are verified by the experiments with respect to their deformation mechanism and stress-strain behavior. Theoretical formulas are derived to predict the NPR effect of the honeycomb under large deformation. The analytical predictions are in good agreement with the FEM results. It is revealed that the NPR effect of the honeycomb is magnified with the global strain in the second stage while is weaken in the third stage of the deformation process. The decrease of the ligament-ratio and the mean radius will result in more obvious NPR effect. Variation of cell-wall thickness doesn't have much impact on the Poisson's ratio in the second stage, while smaller cell-wall thickness will induce larger NPR in the third stage. The present work is supposed to shed light on the design and fabrication of re-entrant anti-trichiral honeycombs with desired Poisson's ratio.
机译:凹入的抗三毛蜂窝是典型的发胀材料。塌陷过程可分为三个阶段,而其在大变形下的负泊松比(NPR)效应仍不清楚。本文通过数值和理论方法研究了凹形抗折返蜂窝的NPR效应。数值结果通过实验验证了其变形机理和应力应变行为。推导了理论公式来预测蜂窝在大变形下的NPR效应。分析预测与有限元结果非常吻合。结果表明,蜂窝的NPR效应在第二阶段被整体应变放大,而在变形过程的第三阶段则减弱。韧带比和平均半径的减小将导致更明显的NPR效应。单元壁厚度的变化在第二阶段对泊松比没有太大影响,而较小的单元壁厚度将在第三阶段引起较大的NPR。本工作旨在阐明具有所需泊松比的凹角抗三叉蜂窝的设计和制造。

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