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Experiments and parametric studies on 3D metallic auxetic metamaterials with tuneable mechanical properties

机译:具有可调整机械性能的3D金属膨胀超材料的实验和参数研究

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Auxetic metamaterials are synthetic materials with microstructures engineered to achieve negative Poisson's ratios. Auxetic metamaterials are of great interest because of their unusual properties and various potential applications. However, most of the previous research has been focused on auxetic behaviour of elastomers under elastic deformation. Inspired by our recent finding of the loss of auxetic behaviour in metallic auxetic metamaterials, a systematic experimental and numerical investigation has been carried out to explore the mechanism behind this phenomenon. Using an improved methodology of generating buckling-induced auxetic metamaterials, several samples of metallic auxetic metamaterials have been fabricated using a 3D printing technique. The experiments on those samples have revealed the special features of auxetic behaviour for metallic auxetic metamaterials and proved the effectiveness of our structural modification. Parametric studies have been performed through experimentally validated finite element models to explore the auxetic performance of the designed metallic metamaterials. It is found that the auxetic performance can be tuned by the geometry of microstructures, and the strength and stiffness can be tuned by the plasticity of the base material while maintaining the auxetic performance.
机译:辅助超材料是具有微结构的合成材料,其工程设计可实现负泊松比。辅助金属材料由于其非同寻常的特性和各种潜在的应用而备受关注。但是,大多数以前的研究都集中在弹性变形下弹性体的膨胀行为。受到我们最近发现的金属拉延超材料中拉延行为损失的启发,已经进行了系统的实验和数值研究,以探索这种现象背后的机理。使用生成屈曲诱发的超常材料的改进方法,已经使用3D打印技术制作了多个金属超常材料的样品。在这些样品上进行的实验揭示了金属膨胀超材料的膨胀行为的特殊特征,并证明了我们进行结构改性的有效性。通过实验验证的有限元模型进行了参数研究,以探索设计的金属超材料的止滑性能。已经发现,可以通过微观结构的几何形状来调节拉力性能,并且可以在保持拉力性能的同时通过基础材料的可塑性来调节强度和刚度。

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