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Characterizing the constitutive response of plain-woven fibre reinforced aerogel matrix composites using digital image correlation

机译:利用数字图像关联表征平织纤维增强气凝胶基质复合材料的本构响应

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The paper presents an experimental investigation of the constitutive behavior for plain-woven fibre reinforced silica aerogel matrix composites under a complex in-plane stress state using digital image correlation technique. Specimens were subjected to in-plane on-axis, off-axis tension and shear loadings. The material exhibits significantly nonlinear stress-strain behaviour under off-axis tension and shear loadings. Deformation mechanism of the composite material has been proposed using FEM analysis of representative volume cell qualitatively. It is proposed that nonlinear couplings of the stress and strain components may result from a combination of stress-free surface, heterogeneity and interaction of the woven fibre bundles and aerogel matrix for thin specimen under a complex stress state, even though no damage initiates in the material. The experimental results were subsequently used to develop a constitutive model based on general formulation of complementary strain energy density. The material constitutive parameters were extracted from calculated stress and measured strain using multi-variable linear least square regression. The performance of the constitutive model has been demonstrated by comparison with the off-axis tensile experimental results.
机译:本文利用数字图像相关技术,对复杂的面内应力状态下的平织纤维增强二氧化硅气凝胶基质复合材料的本构行为进行了实验研究。样品经受面内轴上,轴外张力和剪切载荷。该材料在离轴拉伸和剪切载荷作用下表现出明显的非线性应力应变行为。通过对代表性体积细胞的有限元分析定性地提出了复合材料的变形机理。有人提出,应力和应变分量的非线性耦合可能是由于无应力表面,异质性以及在复杂应力状态下薄试样的机织纤维束和气凝胶基质的相互作用所导致的,即使在没有应力的情况下也是如此。材料。实验结果随后被用于基于互补应变能密度的一般公式来开发本构模型。使用多变量线性最小二乘回归从计算的应力和测得的应变中提取材料的本构参数。通过与离轴拉伸实验结果的比较证明了本构模型的性能。

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