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Effect of the Transverse Shear Deformation on the Free Vibration of Rotating Blades Modeled as Thin-Walled Composite Beams

机译:横向剪切变形对薄壁复合梁模型旋转叶片自由振动的影响

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In this paper, vibration analysis of a blade modeled as an anisotropic composite thinwalled beam is carried out. The analytical formulation of the beam is derived for the flapwise bending, chordwise bending and transverse shear deformations. The equations of motion are solved by applying the extended Galerkin method (EGM) for anti-symmetric lay-up configuration that is also referred as Circumferentially Uniform Stiffness (CUS). Consequently, the natural frequencies are validated by making comparisons with the results in literature and it is observed that there is a good agreement between the results. Combined effects of transverse shear, fiber orientation, and rotational speed on the natural frequencies are further investigated.
机译:在本文中,执行了作为各向异性复合薄壁梁建模的叶片的振动分析。梁的分析制剂用于旋转弯曲,弦弯曲弯曲和横向剪切变形。通过将扩展的Galerkin方法(EGM)应用于抗对称铺设配置,该方法也被称为周向均匀的刚度(CU)来解决运动方程。因此,通过对文献结果进行比较来验证自然频率,并观察到结果之间存在良好的一致性。进一步研究了横向剪切,纤维取向和旋转速度对自然频率的综合影响。

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