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Orthotropic Laminated Open-cell Frameworks Retaining Strong Auxeticity under Large Uniaxial Loading

机译:正交各向异性层压开孔框架在大单轴载荷下保持强的膨胀性

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摘要

Anisotropic materials form inside living tissue and are widely applied in engineered structures, where sophisticated structural and functional design principles are essential to employing these materials. This paper presents a candidate laminated open-cell framework, which is an anisotropic material that shows remarkable mechanical performance. Using additive manufacturing, artificial frameworks are fabricated by lamination of in-plane orthotropic microstructures made of elbowed beam and column members; this fabricated structure features orthogonal anisotropy in three-dimensional space. Uniaxial loading tests reveal strong auxeticity (high negative Poisson’s ratios) in the out-of-plane direction, which is retained reproducibly up to the nonlinear elastic region, and is equal under tensile and compressive loading. Finite element simulations support the observed auxetic behaviors for a unit cell in the periodic framework, which preserve the theoretical elastic properties of an orthogonal solid. These findings open the possibility of conceptual materials design based on geometry.
机译:各向异性材料在活组织内部形成,并广泛应用于工程结构中,在工程结构中,复杂的结构和功能设计原​​则对于采用这些材料至关重要。本文提出了一种候选叠层开孔框架,它是一种各向异性材料,具有出色的机械性能。使用增材制造,通过层压由肘形梁和柱构件制成的平面正交异性微结构来制造人造框架。这种制造的结构在三维空间中具有正交各向异性。单轴载荷测试表明,在平面外方向上具有很强的吸引力(高负泊松比),可重复性地保留到非线性弹性区域,并且在拉伸和压缩载荷下相等。有限元模拟支持在周期性框架中观察到的单位晶胞的膨胀行为,该行为保留了正交实体的理论弹性。这些发现为基于几何的概念性材料设计提供了可能性。

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