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Free vibration analysis of initially deflected stiffened plates for various boundary conditions

机译:在各种边界条件下初始偏转的加劲板的自由振动分析

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摘要

Free vibration analysis of initially deflected stiffened plates subjected to uniformly distributed loading with different flexural boundary conditions involving simply supported and clamped ends and zero displacement in-plane boundary conditions has been presented. A domain decomposition technique depending on the number, orientation and location of the stiffeners is employed to ensure sufficient number of computation points around the stiffeners. Geometric nonlinearity arising out of large deflection is accounted for by consideration of non-linear strain-displacement relations. Mathematical formulation is based on a variational form of energy principle, and a solution technique, where static analysis serves as the basis for the subsequent dynamic study, is followed. The results are validated with the published results of other researchers. The dynamic behavior has been presented in the form of backbone curves in a dimensionless frequency-amplitude plane. Vibration mode shapes along with contour plots are provided in a few cases.
机译:提出了初始挠曲的加劲板的自由振动分析,该刚度加筋的板在均匀分布的载荷下具有不同的挠曲边界条件,包括简单支撑和夹紧的端部以及零位移面内边界条件。采用取决于加劲肋的数量,方向和位置的区域分解技术,以确保加劲肋周围有足够数量的计算点。由大挠度引起的几何非线性是通过考虑非线性应变-位移关系来解决的。数学公式基于能量原理的变分形式,并且遵循一种求解技术,其中静态分析用作后续动态研究的基础。该结果与其他研究人员的已发表结果相验证。动态行为已经以无量纲频率-振幅平面中的主干曲线的形式呈现。少数情况下会提供振动模式形状以及轮廓图。

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