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首页> 外文期刊>International Journal of Solids and Structures >Limiting strain for auxeticity under large compressive Deformation: Chiral vs. re-entrant cellular solids
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Limiting strain for auxeticity under large compressive Deformation: Chiral vs. re-entrant cellular solids

机译:大压缩变形下辅助性的限制应变:手性与再参行细胞固体

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摘要

Under compression, auxetic open cell cellular solids may lose auxeticity due to instability and/or self-contact between the ribs. This study explores the limiting strains for preserving auxetic effects for auxetic open cell materials of two different cellular structures: re-entrant honeycomb and the 'missing-rib' type chiral cellular solids. Experiments of the 3D printed specimens, periodicity analysis, and ellipticity analysis showed that, under compressive loads, the auxetic effects and the limiting compressive strain for auxeticity are mutually exclusive. In other words, the limiting compressive strain has to be reduced if larger auxetic effect is desired, vice versa. It was found that compared with re-entrant honeycombs, due to chirality-induced rotation, the chiral cellular solids can preserve auxetic effects under much larger compressive strain (-10-30%). (C) 2018 Elsevier Ltd. All rights reserved.
机译:在压制下,由于肋骨之间的不稳定性和/或自接触,辅助开放细胞蜂窝固体可能会失去辅助性。 本研究探讨了用于保护两种不同细胞结构的辅助开放细胞材料的舒张效果的限制菌株:再参加蜂窝和“缺失 - 肋”型手性细胞固体。 3D印刷试样,周期性分析和椭圆分析的实验表明,在压缩载荷下,辅助效应和用于辅助性的限制压缩应变是相互排斥的。 换句话说,如果需要更大的辅助效果,则必须降低限制压缩菌株,反之亦然。 发现与再生蜂窝状的再参赛剂蜂窝状相比,由于手性诱导的旋转,手性细胞固体可以在更大的压缩菌株(& -10-30%)下保持舒张效应。 (c)2018年elestvier有限公司保留所有权利。

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