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Nonlinear Bending Response of Two-Ply Plain Woven Carbon Fibre Composites

机译:两层平纹碳纤维复合材料的非线性弯曲响应

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Ultra-thin woven fibre composites are becoming popular in weight sensitive applications and hence it is important to predict their mechanical properties for design improvements. This paper presents a simple homogenized micro-mechanical modelling technique with solid elements for predicting mechanical properties of the thin woven fibre composites. A representative unit cell has been generated using a finite element pre-processor, TexGen and an elliptical cross-sectioned yarn is then idealized to behave according to Kirchhoff - Love plate theory. Bezier spline is chosen as a suitable interpolation function for the composite, and further analysis is performed with two distinct unit cell representations. It is shown that a simple 3D solid model with idealized elliptical cross section predicts both in-plane and bending properties with good accuracy in the linear regime. The proposed 3D models are capable of predicting the response in the nonlinear regime and have overcome the anomalies faced with 1D model with respect to shear and Poisson's ratio.
机译:超薄编织纤维复合材料在对重量敏感的应用中变得越来越普遍,因此预测其机械性能对于改进设计非常重要。本文提出了一种简单的均质微机械建模技术,该技术具有用于预测薄机织纤维复合材料力学性能的固体元素。使用有限元预处理器TexGen生成了一个具有代表性的晶胞,然后根据Kirchhoff-Love plate理论将椭圆形截面的纱线理想化。选择贝塞尔曲线样条作为合成的合适插值函数,并使用两个不同的单位像元表示执行进一步的分析。结果表明,具有理想椭圆形横截面的简单3D实体模型可以在线性状态下以良好的精度预测面内和弯曲特性。所提出的3D模型能够预测非线性状态下的响应,并克服了1D模型在剪切力和泊松比方面的异常情况。

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