Exact Solutions for Vibration of Multi-Span Rectangular Mindlin Plates

Author:

Xiang Y.1,Wei G. W.2

Affiliation:

1. Center for Construction Technology and Research, University of Western Sydney, Penrith South DC NSW 1797, Australia

2. Department of Computational Science, National University of Singapore, Singapore 117543

Abstract

This paper presents the first-known exact solutions for the vibration of multi-span rectangular Mindlin plates with two opposite edges simply supported. The Levy type solution method and the state-space technique are employed to develop an analytical approach to deal with the vibration of rectangular Mindlin plates of multiple spans. Exact vibration frequencies are obtained for two-span square Mindlin plates with varying span ratios and two-, three- and four-equal-span rectangular Mindlin plates. The influence of the span ratios, the number of spans and plate boundary conditions on the vibration behavior of square and rectangular Mindlin plates is examined. The presented exact vibration results may serve as benchmark solutions for such plates.

Publisher

ASME International

Subject

General Engineering

Reference27 articles.

1. Veletsos, A. S., and Newmark, N. M., 1956, “Determination of Natural Frequencies of Continuous Plates Hinged Along Two Opposite Edges,” ASME J. Appl. Mech., 23, pp. 97–102.

2. Ungar, E. E. , 1961, “Free Oscillations of Edge-Connected Simply Supported Plate Systems,” ASME J. Eng. Ind., 83, pp. 434–440.

3. Bolotin, V. V. , 1961, “A Generalization of the Asymptotic Method of the Eigenvalue Problems for Rectangular Regions (in Russian),” Inzh. Z., 3, pp. 86–92.

4. Moskalenko, V. N., and Chen, D. L., 1965, “On the Natural Vibrations of Multispan Plates (in Russian),” Prik. Mekh., 1, pp. 59–66.

5. Cheung, Y. K., and Cheung, M. S., 1971, “Flexural Vibrations of Rectangular and Other Polygonal Plates,” J. Eng. Mech. Div., 97, pp. 391–411.

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