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Nonlinear Material Model for Quasi-Unidirectional Woven Composite Accounting for Viscoelastic, Viscous Deformation, and Stiffness Reduction

机译:拟单向编织复合材料的粘弹性,粘滞变形和刚度降低的非线性材料模型

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To clarify the individual contribution of viscoelastic and viscous deformation to the global nonlinear response of composites, multilevel cyclic loading-unloading recovery tensile tests were carried out. The experimental results show that there is a linear relationship between the viscous strain and viscoelastic strain of composites, regardless of the off-axis angle or loading stress level. On the basis of experimental results, a coupled damage-plasticity constitutive model was proposed. In this model, the plasticity theory was adopted to assess the evolution of viscous strains. The viscoelastic strain was represented as a linear function of viscous strains. Moreover, the Weibull function of the effective stress was introduced to evaluate the damage variables in terms of stiffness reduction. The tensile stress-strain curves, predicted by the proposed model, showed a good agreement with experimental results.
机译:为了阐明粘弹性和粘滞变形对复合材料整体非线性响应的个体贡献,进行了多级循环加载-卸载恢复拉伸试验。实验结果表明,复合材料的粘滞应变和粘弹性应变之间存在线性关系,而与偏轴角或加载应力水平无关。在实验结果的基础上,提出了损伤-塑性耦合本构模型。在该模型中,采用可塑性理论来评估粘性菌株的演变。粘弹性应变表示为粘性应变的线性函数。此外,引入了有效应力的威布尔函数,以评估刚度降低的损伤变量。该模型预测的拉伸应力-应变曲线与实验结果吻合良好。

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