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3D-printed short carbon fibre reinforced perforated structures with negative Poisson's ratios: Mechanisms and design

机译:3D印刷短碳纤维增强穿孔结构,带负泊松比率:机制与设计

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摘要

This study investigates the compressive responses and mechanisms of perforated structures made of pure nylon polymer (NP) and short carbon fibre reinforced nylon polymer (SCF/NP) with negative Poisson's ratio (NPR), and proposes an improved lightweight auxetic structure. A theoretical analysis is performed for predicting the Poisson's ratios of perforated auxetic structures, and validated experimentally. A comparison between conventional and auxetic perforated structures under compression shows that the SCF/NP specimens have higher stiffness than the NP structures and the auxetic structure can reach a NPR of about -1. The effects of perforation geometry and material type on the mechanical properties are investigated. Results depict a decrease in nominal stress with an increase in the perforation gap, but the perforation gap increase leads to enhancement of relative density, effective strain and average Poisson's ratio. Further, SCF/NP structures have advantages over NP structures due to their higher effective strain, effective specific energy absorption (SEA) and relative Young's modulus. Subsequently, an improved auxetic structure is designed, and a comparative study between the designed structure and two common auxetic structures (with the same relative density of 0.32) shows that the designed auxetic structures have the highest SEA and relative Young's modulus with the strongest auxetic effect (smallest average Poisson's ratio).
机译:本研究调查了由纯尼龙聚合物(NP)和短碳纤维增强尼龙聚合物(SCF / NP)制成的穿孔结构的压缩响应和机制,具有负泊松比(NPR),并提出了一种改进的轻质辅助结构。进行理论分析,用于预测泊松毒耳的穿孔扶示结构的比率,并通过实验验证。压缩下的常规和扶示穿孔结构之间的比较表明,SCF / NP样品具有比NP结构更高的刚度,并且辅助结构可以达到约-1的NPR。研究了穿孔几何形状和材料类型对机械性能的影响。结果描绘了张力流动率增加的标称压力的降低,但穿孔差距增加导致相对密度,有效应变和普通泊松比例的增强。此外,由于其较高的有效应变,有效的特定能量吸收(海)和相对杨氏模量,SCF / NP结构具有优于NP结构的优点。随后,设计了改进的辅助结构,并且设计的结构和两个常见的辅助结构之间的比较研究(具有相同的相对密度为0.32),结果表明,设计的辅助结构具有最高的海洋和相对杨氏模量,具有最强的辅助效果(最小的普通泊松比例)。

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