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Quantitative validation of the analytical mode shapes of a beam-like structure with a Z-shaped configuration

机译:具有Z形配置的光束结构的分析模式形状的定量验证

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摘要

Beam-like structures are widely used in engineering. The accuracy of the analytical mode shapes of these structures is important for studying their dynamic characteristics. A method is presented in this study to theoretically obtain and quantitatively validate the analytical mode shapes of a beam-like structure with a Z-shaped configuration. The governing equations and boundary conditions of the structure's planar motion are derived using Hamilton's principle. Frequencies and analytical mode shapes of the structure are theoretically obtained and compared with the numerical results from finite element method. The comparison of frequencies and modal assurance criterion is used to quantitatively validate the analytical mode shapes. Examples are presented to show the analytical mode shapes of Z-shaped beams with different fold angles. The proposed method is useful for improving the accuracy of analytical mode shapes' which is beneficial to the design and control of beam-like structures in engineering fields.
机译:梁状结构广泛用于工程。这些结构的分析模式形状的准确性对于研究其动态特性是重要的。在本研究中向理论上提出了一种方法,并且用Z形构造理论上地获得和定量验证光束结构的分析模式形状。使用Hamilton原则来源的结构平面运动的控制方程和边界条件。理论上可以获得结构的频率和分析模式形状,并与来自有限元方法的数值结果进行比较。频率和模态保证标准的比较用于定量验证分析模式形状。提出了具有不同折射角的Z形梁的分析模式形状。该方法可用于提高分析模式形状的准确性,这有利于工程领域中的光束结构的设计和控制。

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