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A new modeling of plasticity coupled with the damage and identification for carbon fibre composite laminates

机译:碳纤维复合材料层压板的可塑性与损伤和识别的新模型

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摘要

The research described herein was aimed at gaining a better understanding of the behavior up to the fracture of laminate composite structures. An elastoplastic damage model was developed to describe the behavior of these structures in the greatest detail possible. The damage is modeled on each elementary constituent. Then a complete model at meso (intermediate) scale is obtained by applying a homogenization method. This model takes into account the transverse tensile and shear damage of matrix and fibre-matrix interface, as well as the nonlinear behavior of the fibre under axial compression. Plasticity develops only in the matrix and its flow is blocked in the direction of the fibres. It is modeled by an anisotropic yield criterion (of the HILL type) which takes not only the transverse and shear stress into account but which also includes isotropic and nonlinear kinematic hardening. The model developed was included in the nonlinear finite element "Castem 2000" to allow comparisons between numerical and experimental results. There is a good agreement between the simulated and experimental data. However, the model could advantageously be extended to take the phenomena such as viscoplasticity into account.
机译:本文所述的研究旨在更好地了解层压复合结构断裂之前的行为。建立了弹塑性损伤模型以尽可能详细地描述这些结构的行为。损害是针对每个基本组成部分建模的。然后通过应用均质化方法获得中(中)尺度的完整模型。该模型考虑了基体和纤维-基体界面的横向拉伸和剪切损伤,以及在轴向压缩下纤维的非线性行为。可塑性仅在基体中发展,其流动在纤维方向上受阻。它是通过各向异性屈服准则(HILL类型)建模的,该准则不仅考虑了横向应力和剪切应力,而且还包括各向同性和非线性运动学硬化。所开发的模型包含在非线性有限元“ Castem 2000”中,可以在数值和实验结果之间进行比较。在模拟数据和实验数据之间有很好的一致性。然而,可以有利地扩展模型以考虑诸如粘塑性的现象。

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