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Stresses in thin-walled composite laminated box-beams with curvilinear fibers: Antisymmetric and symmetric fiber paths

机译:曲线纤维薄壁复合层合箱梁中的应力:反对称和对称纤维路径

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摘要

Stress analysis of thin-walled composite laminated box beams having variable stiffness is realized in this study based on an analytical model accounting for flexural-torsional coupling and warping effects. The variable stiffness of the beam is acquired by constructing laminates with curvilinear fibers having certain specific paths. The fiber paths of variable stiffness layers are classified in three groups as antisymmetric, symmetric and asymmetric. A displacement based finite element method is used to solve the analytical model and to calculate the distributions of axial and transverse shear stresses at different locations of the cantilever composite beam subjected to the transverse and the torsional loading at its free end. Numerical results obtained are compared with available results in the literature for specific cases. A detailed investigation is performed to understand the relation between the stress distributions along the cross section of the beam and the shape of curvilinear fibers for antisymmetric and symmetric cases.
机译:在考虑挠曲-扭转耦合和翘曲影响的分析模型的基础上,本研究实现了具有可变刚度的薄壁复合材料叠合箱形梁的应力分析。通过用具有某些特定路径的曲线纤维构造层压板,可获得梁的可变刚度。可变刚度层的纤维路径分为三类:反对称,对称和不对称。基于位移的有限元方法用于求解分析模型,并计算悬臂复合梁在自由端受到横向和扭转载荷的不同位置的轴向和横向剪切应力的分布。将获得的数值结果与文献中针对特定情况的可用结果进行比较。进行了详细的研究,以了解在反对称和对称情况下,沿梁横截面的应力分布与曲线纤维的形状之间的关系。

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