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Periodic cellular materials with nonlinear elastic homogenized stress-strain response at small strains

机译:小应变下具有非线性弹性均质应力-应变响应的周期性细胞材料

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We investigate the effective stress-strain behavior of cellular elastomers, structured with a periodic pattern of elliptic holes by means of full scale simulations under small deformations. First, we show that the elastic response behaves non trivially with the pore geometry. In particular, we show that auxetic and anistropic responses arise for a broad range of parameters, when the microstructure becomes sufficiently porous. Second, we show that, in the limit of large and near -circular holes, the stress-strain nonlinearities become very large. Third, we adopt an effective theoretical description where the filaments between the holes are modeled by slender beams to predict the linear response, and by bars and pivots to capture the leading order nonlinear corrections. This approach fully captures the asymptotic observations and open pathways for an effective-beams based homogenization and the design of nonlinear cellular materials. (C) 2016 Elsevier Ltd. All rights reserved.
机译:我们通过在小变形下的全尺寸模拟,研究了具有椭圆孔周期性图案的多孔弹性体的有效应力应变行为。首先,我们表明弹性响应随孔几何形状的变化不平凡。特别是,我们表明,当微观结构变得足够多孔时,对于较宽范围的参数会出现拉力和各向异性响应。其次,我们表明,在大且接近圆形孔的范围内,应力-应变非线性变得非常大。第三,我们采用有效的理论描述,其中孔之间的细丝通过细长光束建模以预测线性响应,并通过条和枢轴建模以捕获前导非线性校正。该方法完全捕获了基于有效光束的均质化和非线性细胞材料设计的渐近观测和开放路径。 (C)2016 Elsevier Ltd.保留所有权利。

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