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ANALYTICAL RANDOM VIBRATION ANALYSIS OF BOUNDARY-EXCITED THIN RECTANGULAR PLATES

机译:边界激励薄矩形板的解析随机振动分析

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摘要

Fatigue life, stability and performance of majority of the structures and systems depend significantly on dynamic loadings applied on them. In many engineering cases, the dynamic loading is random vibration and the structure is a plate-like system. Examples could be printed circuit boards or jet impingement cooling systems subjected to random vibrations in harsh military environments. In this study, the response of thin rectangular plates to random boundary excitation is analytically formulated and analyzed. In the presented method, closed-form mode shapes are used and some of the assumptions in previous studies are eliminated; hence it is simpler and reduces the computational load. In addition, the effects of different boundary conditions, modal damping and excitation frequency range on dynamic random response of the system are studied. The results show that increasing both the modal damping ratio and the excitation frequency range will decrease the root mean square acceleration and the maximum deflection of the plate.
机译:大多数结构和系统的疲劳寿命,稳定性和性能在很大程度上取决于施加在其上的动态载荷。在许多工程案例中,动态载荷是随机振动,结构是板状系统。例如在恶劣的军事环境中受到随机振动的印刷电路板或喷射冲击冷却系统。在这项研究中,对矩形薄板对随机边界激励的响应进行了解析和分析。在提出的方法中,使用了封闭形式的模态形状,并且消除了先前研究中的一些假设;因此,它更简单并减少了计算量。此外,研究了不同边界条件,模态阻尼和激励频率范围对系统动态随机响应的影响。结果表明,增加模态阻尼比和激励频率范围将减小均方根加速度和板的最大挠度。

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