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Novel Negative Poisson’s Ratio Lattice Structures with Enhanced Stiffness and Energy Absorption Capacity

机译:具有增强刚度和能量吸收能力的新型负泊松比晶格结构

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摘要

The weak stiffness and strength of materials with negative Poisson’s ratio limits their application. In this paper, three types of novel lattices with negative Poisson’s ratio are proposed to improve not only stiffness and strength but also energy absorption capacity by embedding different ribs into a classic re-entrant structure. Unit cell analyses show these novel lattices have significantly increased Young’s modulus along the loading direction, and Type C can maintain sufficient negative Poisson’s ratio performance compared with the base lattice. In addition, the novel lattices exhibit higher yield stress, plateau stress and densification strain extracted from quasi-static compressive simulation. The lattices are prototyped by laser-based additive manufacturing and tested in quasi-static experiments, which show the experimental data match the numerical results within an error of margin. The work signifies the prospect of lattices with negative Poisson’s ratio in enhancing engineering-applicable structures, and indicates the potential of structural topology optimization in more sophisticated designs.
机译:泊松比为负的材料的刚度和强度较弱,限制了它们的应用。本文提出了三种新型的具有负泊松比的新型晶格,它们通过将不同的肋骨嵌入经典的凹入结构中,不仅提高了刚度和强度,而且还提高了能量吸收能力。晶胞分析表明,这些新型晶格沿载荷方向具有显着提高的杨氏模量,与基本晶格相比,C型可以保持足够的负泊松比性能。此外,从准静态压缩模拟中提取的新型晶格具有较高的屈服应力,平台应力和致密化应变。通过基于激光的增材制造对晶格进行原型设计,并在准静态实验中进行了测试,结果表明实验数据与数值结果相符,且误差在误差范围内。这项工作表明了具有负泊松比的晶格在增强工程适用结构方面的前景,并指出了在更复杂的设计中优化结构拓扑的潜力。

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