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Finite Element Model for Failure Study of Two-Dimensional Triaxially Braided Composite

机译:二维三轴编织复合材料失效研究的有限元模型

摘要

A new three-dimensional finite element model of two-dimensional triaxially braided composites is presented in this paper. This meso-scale modeling technique is used to examine and predict the deformation and damage observed in tests of straight sided specimens. A unit cell based approach is used to take into account the braiding architecture as well as the mechanical properties of the fiber tows, the matrix and the fiber tow-matrix interface. A 0 deg / plus or minus 60 deg. braiding configuration has been investigated by conducting static finite element analyses. Failure initiation and progressive degradation has been simulated in the fiber tows by use of the Hashin failure criteria and a damage evolution law. The fiber tow-matrix interface was modeled by using a cohesive zone approach to capture any fiber-matrix debonding. By comparing the analytical results to those obtained experimentally, the applicability of the developed model was assessed and the failure process was investigated.
机译:提出了二维三轴编织复合材料的三维有限元模型。这种中尺度建模技术用于检查和预测在直边试样测试中观察到的变形和损坏。使用基于单位单元的方法来考虑编织结构以及纤维束,基体和纤维束-基质界面的机械性能。 0度/正负60度。通过进行静态有限元分析,研究了编织结构。已经通过使用Hashin破坏准则和损伤演化定律模拟了纤维束中的破坏起始和渐进降解。纤维束-基质界面通过使用内聚区方法进行建模,以捕获任何纤维-基质剥离。通过将分析结果与实验获得的结果进行比较,评估了开发模型的适用性并研究了失效过程。

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