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首页> 外文期刊>Archive of Applied Mechanics >Power transmission and suppression characteristics of stiffened Mindlin plate under different boundary constraints
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Power transmission and suppression characteristics of stiffened Mindlin plate under different boundary constraints

机译:不同边界约束下加筋Mindlin板的动力传递与抑制特性

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摘要

The dynamic power transmission characteristics of a finite stiffened Mindlin plate subject to different boundary conditions are analytically studied. The stiffened plate is modeled as a coupled structure comprising a plate and stiffeners. Dynamic responses calculated by the analytical solutions are verified through comparison of the results with those generated using the finite element method. The computed results show that Mindlin plate and Timoshenko beam theory is more suitable for studying dynamic power of the stiffened plate over a broad frequency range than classical plate and beam theory. The stiffness and inertia characteristics of the Mindlin plate can be enhanced using the stiffeners, which can significantly affect the dynamic response, especially in low-frequency range. It can be also noticed that the stop band in the low-frequency range can become wider by increasing the number and dimension (height and width) of the stiffeners, so vibratory power of the stiffened Mindlin plate in the low-frequency range can be greatly reduced.
机译:通过分析研究了边界条件不同时加筋的Mindlin板的动力传递特性。加劲板被建模为包括一个板和加劲肋的耦合结构。通过将结果与使用有限元方法生成的结果进行比较,可以验证分析解决方案计算出的动态响应。计算结果表明,与传统的板和梁理论相比,Mindlin板和Timoshenko梁理论更适合于在较宽的频率范围内研究加筋板的动力。使用加强筋可以增强Mindlin板的刚度和惯性特性,这可以显着影响动态响应,尤其是在低频范围内。还可以注意到,通过增加加强筋的数量和尺寸(高度和宽度),低频范围内的阻带可以变宽,因此,低频范围内加筋的Mindlin板的振动功率可以大大提高减少。

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