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Finite element continuum damage modeling of plain weave reinforced composites

机译:平纹增强复合材料的有限元连续损伤模型

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摘要

Geometrical models needed for finite element discretization of plain-weave fabric-reinforced composites are developed from measurements taken on photomicrographs of single lamina and laminated composites. Then, a meso-level damage model is implemented into ANSYS as a user-defined material model for predicting the non-linear behavior of plain-weave reinforced laminates under tensile loading. The damage model is validated for the tensile response of T300/5208 laminate for four configurations, [10/-10]_(2s), [0/45/-45/90]_s, [30/-30]_(2s) and [45/-45]_(2s). Then, the damage behavior of plain-weave fabric-reinforced laminates is analyzed using the proposed damage model in the context of the finite element method. The modes of continuum damage are identified from the analysis. Comparisons with experimental data are provided in order to support validity of the proposed models.
机译:平纹织物增强复合材料的有限元离散化所需的几何模型是根据单层和层压复合材料的显微照片测量得出的。然后,将中观损伤模型作为用户定义的材料模型实施到ANSYS中,以预测在拉伸载荷下平纹增强层压板的非线性行为。针对T300 / 5208层压板的四种配置[10 / -10] _(2s),[0/45 / -45 / 90] _s,[30 / -30] _(2s)的拉伸响应验证了损伤模型)和[45 / -45] _(2s)。然后,在有限元方法的背景下,使用所提出的损伤模型分析了平纹织物增强层压材料的损伤行为。通过分析确定连续损伤的模式。提供与实验数据的比较以支持所提出模型的有效性。

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