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首页> 外文期刊>Journal of Sound and Vibration >A method to solve the nonlinear eigenvalue problem of Timoshenko plane frames with rigid offsets and end releases
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A method to solve the nonlinear eigenvalue problem of Timoshenko plane frames with rigid offsets and end releases

机译:解决带有刚性偏移和端部释放的Timoshenko平面框架的非线性特征值问题的方法

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摘要

The study reported here makes use of the dynamic stiffness matrix, DSM, for Timoshenko beams, hence considering rotatory inertia and shear deflection, to obtain the exact solution of the associated free vibration problem. The natural frequencies and vibration modes in the presence of end releases and rigid offsets are all exactly obtained for different combinations of boundary conditions and in plane arrangements of members. This is possible by solving the resulted nonlinear and transcendental eigenvalue problem using two general methods, one based on the Wittrick-Williams algorithm adapted to handle end release and rigid offset, and the other on the power deflation secant method. The latter, offered here as a novelty, is proven to be an efficient technique judging from the examples given, using both algorithms and the finite element method. It is concluded that the power deflation method is a powerful tool to solve the nonlinear eigenvalue problem, leading to exact solutions of the free vibration of complex skeleton-like structures.
机译:此处报道的研究利用了Timoshenko梁的动态刚度矩阵DSM,因此考虑了旋转惯性和剪切挠度,从而获得了相关自由振动问题的精确解决方案。在存在边界释放和刚性偏移的情况下,固有频率和振动模式都是针对边界条件的不同组合以及构件的平面布置而精确获得的。这可以通过使用两种通用方法来解决所得的非线性和先验特征值问题,一种方法是基于适用于处理端部释放和刚性偏移的Wittrick-Williams算法,另一种方法是基于功率紧缩割线方法。从新颖性来看,后者是一种新颖的方法,使用算法和有限元方法,从给出的示例来看,已被证明是一种有效的技术。结论是,功率放气法是解决非线性特征值问题的有力工具,可以为复杂的骨架状结构的自由振动提供精确的解决方案。

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