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Out-of-plane and in-plane compression of additively manufactured auxetic structures

机译:平面外和面内压缩的橡皮制造的辅助结构

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Auxetic structures exhibit negative Poisson's ratio (NPR) and offer valuable enhancement of mechanical properties. This study presents a combined experimental and numerical investigation of the out-of-plane and in-plane performances of a recently proposed auxetic structure, re-entrant chiral auxetic (RCA), under quasi-static uniaxial compression. The popular hexagonal honeycomb and re-entrant honeycomb were also studied as benchmarks for comparison. Specimens were fabricated by fused deposition modelling (FDM) process. It was found that printing quality depends on the size and complexity of the printed structures. Deformation mode, stress-strain curves and energy absorption of the three types of structure were studied and compared. Specific energy absorption per unit volume, W-nu and per unit mass, SEA, were calculated up to the strain at the onset of densification. Results show that the out-of-plane energy absorption of the proposed structure outperformed that of the other two benchmarks. In contrast, when comparing the energy-absorbing efficiency, the hexagonal honeycomb revealed the highest energy absorption efficiency of 65%, compared with 44% and 52% for the re-entrant and the proposed RCA structure, respectively. For the in-plane compression, the proposed structure exhibited a negative Poisson's ratio and demonstrated anisotropic mechanical performance. (C) 2020 Elsevier Masson SAS. All rights reserved.
机译:辅助结构表现出负泊松比率(NPR),并提供有价值的力学性能的增强。本研究提出了在准静态单轴压缩下,对最近提出的辅助结构,重新参加手性辅助(RCA)的平面外和面内性能的组合实验和数值研究。流行的六角形蜂窝和再参赛者蜂窝状蜂窝状也被研究为比较的基准。通过熔融沉积建模(FDM)工艺制造标本。发现印刷质量取决于印刷结构的尺寸和复杂性。研究并比较了三种结构的变形模式,应力 - 应变曲线和能量吸收。在致密化发作时计算每单位体积,W-Nu和每单位质量,每单位质量的特定能量吸收。结果表明,所提出的结构的平面外能吸收优于其他两个基准的能量。相比之下,在比较能量吸收效率时,六边形蜂窝揭示了最高能量吸收效率为65%,分别为再参赛剂和提出的RCA结构的44%和52%。对于面内压缩,所提出的结构表现出负泊松比率,并表现出各向异性的机械性能。 (c)2020 Elsevier Masson SAS。版权所有。

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