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A class of shape-shifting composite metamaterial honeycomb structures with thermally-adaptive Poisson's ratio signs

机译:具有泊松比符号的一类可变形复合超材料蜂窝结构

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This paper introduces a class of honeycomb composite metamaterials whereby the increase and decrease in temperature give rise to opposing microstructural geometries in situ, thereby leading to Poisson's ratio of opposing signs. The metamaterial consists of rigid crossbeams from which alternating bimaterials are joined onto. Four types of this class of metamaterial, depending on the relative location of the bimaterial phase with higher coefficient of thermal expansion within each unit cell, have been identified. The O-Type and X-Type metamaterials, in which each unit cell has 2 axes of symmetry, exhibit sign-reversal of Poisson's ratio upon temperature change sign reversal. The CC-Type has one axis of symmetry in each unit cell while the SS-Type possesses a 180-degree rotational symmetry; these metamaterial types display zero Poisson's ratio and zero thermal expansion in a specific direction. This class of metamaterial avails to the practising engineer the possibility of designing materials and structures with in situ sign-switchable Poisson's ratio by means of thermal-toggling, as well as those that require good dimensional stability.
机译:本文介绍了一类蜂窝复合超材料,其中温度的升高和降低会引起原位相对的微结构几何形状,从而导致相对符号的泊松比。超材料由刚性横梁组成,交替的双材料从刚性横梁上接合。根据双材料相的相对位置,在每种晶胞内具有较高的热膨胀系数,已经确定了四种这类超材料。 O型和X型超材料(其中每个晶胞具有2个对称轴)在温度变化符号反转时表现出泊松比的符号反转。 CC型在每个单位单元中具有一个对称轴,而SS型具有180度的旋转对称性。这些超材料类型在特定方向上显示零泊松比和零热膨胀。这类超材料为从业工程师提供了通过热切换设计具有原位符号可转换泊松比的材料和结构以及需要良好尺寸稳定性的材料和结构的可能性。

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