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Nonlinear modeling for dynamic analysis of a rotating cantilever beam

机译:用于旋转悬臂梁动力学分析的非线性建模

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摘要

This paper proposes a nonlinear model for more accurate and efficient dynamic analysis of a rotating cantilever beam with elastic deformation. The proposed nonlinear model is described by partial integro-differential equations with non-Cartesian deformation variables, i.e., the stretch, chordwise and flapwise deformations. After the equations of motion are discretized by using the mode superposition method, dynamic responses are computed by applying the Newmark time integration method to the discretized equations. To show the accuracy and efficiency of the proposed model, convergence characteristics and dynamic responses for the present model are compared with those for previous models. This study shows that the proposed model not only yields good accuracy and efficiency in terms of computation, but also overcomes the limitations of a previous conventional nonlinear model expressed by Cartesian variables.
机译:本文提出了一种非线性模型,用于对具有弹性变形的旋转悬臂梁进行更准确和有效的动力学分析。所提出的非线性模型由具有非笛卡尔变形变量(即拉伸,弦向和拍动变形)的部分积分微分方程描述。使用模式叠加法将运动方程离散化之后,通过将Newmark时间积分方法应用于离散方程,可以计算出动态响应。为了显示所提出模型的准确性和效率,将本模型的收敛特性和动态响应与先前模型进行了比较。这项研究表明,所提出的模型不仅在计算方面具有良好的准确性和效率,而且克服了由笛卡尔变量表示的先前常规非线性模型的局限性。

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