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Modeling damage in polymeric composites

机译:模拟聚合物复合材料中的损伤

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We postulate that dominant damage modes in a fiber-reinforced laminated composite are fiber breakage, matrix cracking, fiber/ matrix debonding, and delamination/sliding. The first three damage modes are represented by internal variables with their development governed by constitutive relations. The delamination/sliding failure mode is presumed to initiate at a point on an interface between two adjoining layers when the transverse shear and the transverse normal stresses there are on a failure surface defined in the stress space. Equations expressing the balance of mass, the balance of linear momentum, the balance of moment of momentum, material response, and those giving the development of damage are simultaneously solved numerically under prescribed initial and boundary conditions to find an approximate solution of a transient 3-dimensional initial-boundary-value (IBV) problem. Values of material parameters for the AS4/PEEK composite are determined from experimental data available in the literature. The developed mathematical model has been validated by comparing computed results, for several IBV problems different from the ones used to find values of material parameters, with the corresponding experimental results available in the literature.
机译:我们假设纤维增强的层压复合材料的主要破坏方式是纤维断裂,基体开裂,纤维/基体剥离和分层/滑动。前三种损坏模式由内部变量表示,它们的发展受本构关系控制。假定当横向剪切力和横向法向应力在应力空间中定义的破坏面上存在时,分层/滑动破坏模式会在两个相邻层之间的界面上的某个点处开始。在规定的初始和边界条件下,用数值方法同时求解表示质量平衡,线性动量平衡,动量矩平衡,材料响应以及给出破坏发展的方程,以找到瞬态3-的近似解。维初始边界值(IBV)问题。 AS4 / PEEK复合材料的材料参数值由文献中提供的实验数据确定。已开发的数学模型已通过比较计算得出的结果进行了验证,该结果与几种用于查找材料参数值的问题不同的IBV问题以及相应的实验结果可在文献中找到。

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