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An efficient model for laminated composite thin-walled beams of open or closed cross-section and with or without in-filled materials

机译:用于开放式或封闭横截面的层压复合薄壁梁的有效型号,有或没有填充材料

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摘要

The paper presents a new modeling technique for accurately predicting the complex behavior of thin-walled open and closed section beams made of fiber-reinforced laminated composite materials. The new modeling technique is significantly computational-efficient compared to detailed finite element modeling. In this technique, the complete 3D stress analysis problem consisting of all effects and their couplings is systematically decomposed into a 2D problem applicable to the beam section, and a 1D problem applicable along the beam length. The capability of the technique is not only suitable for thin-walled beams but also applicable for modeling beams with solid, thick-walled sections as well as thin/thick-walled composite beams with in-filled materials. To analyze beams with any arbitrary cross-sectional geometry, a 2D finite element (FE) model is used for solving the 2D sectional problem, while the 1D problem for the global load response of the beams is solved by a 1D FE model utilizing the sectional stiffness parameters obtained from the 2D model. The proposed technique is validated using experimental and numerical results, which show the excellent performance of the model. New results for a range of beam sections are developed using the presented method and validated against detailed FE modeling.
机译:本文提出了一种用于精确预测薄壁打开和封闭截面梁的复杂行为的新型建模技术。与详细有限元建模相比,新型建模技术具有显着的计算效率。在该技术中,由所有效果及其联接器组成的完整的3D应力分析问题被系统地分解成适用于光束部分的2D问题,并且沿着光束长度适用的1D问题。该技术的能力不仅适用于薄壁梁,而且适用于用固体,厚壁部分的梁建模以及具有充分材料的薄/厚壁复合梁。为了分析具有任何任意横截面几何形状的光束,使用2D有限元(FE)模型来解决2D截面问题,而利用截面的1D FE模型解决了光束的全局负载响应的1D问题从2D模型获得的刚度参数。使用实验和数值效果验证所提出的技术,其显示了模型的优异性能。使用呈现的方法开发了一系列光束部分的新结果,并验证了详细的FE模型。

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