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首页> 外文期刊>Journal of Applied Mechanics: Transactions of the ASME >The Free and Forced Vibrations of a Closed Elastic Spherical Shell Fixed to an Equatorial Beam - Part II: Perturbation Approximations
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The Free and Forced Vibrations of a Closed Elastic Spherical Shell Fixed to an Equatorial Beam - Part II: Perturbation Approximations

机译:固定至赤道光束的闭合弹性球壳的自由振动和强迫振动-第二部分:摄动近似

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The two small parameters that appear in the final equations developed in Part I (Simmonds and Hosseinbor, 2010, "The Free and Forced Vibrations of a Closed Elastic Spherical Shell Fixed to an Equatorial Beam-Part I: The Governing Equations and Special Solutions," ASME J. Appl. Meek, 77, p. 021017), namely, h/R, the ratio of the constant shell thickness to the radius of curvature of the shell's reference surface and H/R, where H is the depth (or width) of the equatorial beam, are exploited using perturbation techniques (including the WKB method). The natural frequencies depend not only on these parameters, but also on the ratio of the mass densities of the shell and beam, the ratio of the Young's moduli of the shell and beam, Poisson's ratio, and the circumferential wave number m. Short tables for typical parameter values are given for those cases where the frequency equation is not explicit.
机译:在第一部分中开发的最终方程中出现了两个小参数(Simmonds和Hosseinbor,2010年,“固定到赤道光束的闭合弹性球壳的自由振动和强迫振动,第一部分:控制方程和特殊解”, ASME J. Appl。Meek,77,第021017页),即h / R,恒定壳体厚度与壳体参考表面曲率半径和H / R之比,其中H是深度(或宽度)的赤道光束,是利用摄动技术(包括WKB方法)开发的。固有频率不仅取决于这些参数,还取决于壳体和梁的质量密度之比,壳体和梁的杨氏模量之比,泊松比以及圆周波数m。对于频率方程不明确的情况,给出了典型参数值的简短表格。

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