Analytical random vibration analysis of boundary-excited thin rectangular plates
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 imp...
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sg-ntu-dr.10356-855272020-03-07T13:19:24Z Analytical random vibration analysis of boundary-excited thin rectangular plates Hosseinloo, Ashkan Haji. Yap, Fook Fah. Vahdati, Nader. School of Mechanical and Aerospace Engineering 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. 2013-11-12T05:51:54Z 2019-12-06T16:05:23Z 2013-11-12T05:51:54Z 2019-12-06T16:05:23Z 2013 2013 Journal Article HOSSEINLOO, A. H., YAP, F. F., & VAHDATI, N. (2013). Analytical random vibration analysis of boundary-excited thin rectangular plates.International Journal of Structural Stability and Dynamics, 13(03), 1250062-. https://hdl.handle.net/10356/85527 http://hdl.handle.net/10220/17605 10.1142/S0219455412500629 en International journal of structural stability and dynamics |
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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. |
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School of Mechanical and Aerospace Engineering |
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School of Mechanical and Aerospace Engineering Hosseinloo, Ashkan Haji. Yap, Fook Fah. Vahdati, Nader. |
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Article |
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Hosseinloo, Ashkan Haji. Yap, Fook Fah. Vahdati, Nader. |
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Hosseinloo, Ashkan Haji. Yap, Fook Fah. Vahdati, Nader. Analytical random vibration analysis of boundary-excited thin rectangular plates |
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Hosseinloo, Ashkan Haji. |
title |
Analytical random vibration analysis of boundary-excited thin rectangular plates |
title_short |
Analytical random vibration analysis of boundary-excited thin rectangular plates |
title_full |
Analytical random vibration analysis of boundary-excited thin rectangular plates |
title_fullStr |
Analytical random vibration analysis of boundary-excited thin rectangular plates |
title_full_unstemmed |
Analytical random vibration analysis of boundary-excited thin rectangular plates |
title_sort |
analytical random vibration analysis of boundary-excited thin rectangular plates |
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2013 |
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https://hdl.handle.net/10356/85527 http://hdl.handle.net/10220/17605 |
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