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A novel design method for 3D positive and negative Poisson's ratio material based on tension-twist coupling effects

机译:一种基于张力扭转耦合效应的3D正面泊松比例的新型设计方法

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摘要

In recent years, as the development of additive manufacturing technology, 3D negative Poisson's ratio (NPR) materials attract many researchers' interest. In this paper, a novel 3D NPR material design method based on the tension-twist coupling effect has been proposed. A novel category of 3D NPR and positive Poisson's ratio (PPR) materials by linking multilayer 2D NPR materials through 3D chiral chains are proposed. The sign of the Poisson's ratio depends on the linkage pattern of the 3D chiral chain. Based on this method, 11 types of novel 3D NPR and PPR materials are presented. Experimental and numerical methods are adopted to study the mechanical properties of the proposed novel 3D NPR and PPR materials. Results show that the novel 3D materials present desirable NPR and PPR as we expected, which proved the effectiveness of the proposed design method.
机译:近年来,随着添加剂制造技术的发展,3D负泊松比率(NPR)材料吸引了许多研究人员的兴趣。本文提出了一种基于张力扭转耦合效果的新型3D NPR材料设计方法。提出了一种通过将多层2D NPR材料连接通过3D手性链的新型3D NPR和正泊松比(PPR)材料类别。泊松比的迹象取决于3D手性链的联动模式。基于该方法,提出了11种新型3D NPR和PPR材料。采用实验和数值方法研究所提出的新型3D NPR和PPR材料的机械性能。结果表明,如我们预期的新型3D材料所需的新型3D材料,证明了所提出的设计方法的有效性。

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