Bending of Elastically Restrained Rectangular Plates Under Uniform Pressure

Author:

Lakshmi Kantham C.

Abstract

In the bending and vibration of plates it is found that the values of maximum deflection and natural frequencies, respectively, vary considerably from the simply-supported to clamped edge conditions. For an estimation of these characteristics in the intermediate range a generalised boundary condition may be assumed, of which the simply-supported and clamped edges become limiting cases. While Bassali considers the ratio of edge moment to the cross-wise moment as a constant, Newmark, Lurie and Klein and other investigators, in their analyses of various structures, consider that moment and slope at an end are proportional.Here the definition of elastic restraint as given by Timoshenko, α=βM, is followed, where α is the slope at any edge, M the corresponding edge moment per unit length while β is the elastic restraint factor. β→0 and β→∞ represent the two limiting cases of simply-supported and clamped edge conditions.

Publisher

Cambridge University Press (CUP)

Reference8 articles.

1. Natural Frequencies of Rectangular Plates with Edges Elastically Restrained against Rotation;Joga Rao;Journal of the Aeronautical Sciences,1957

2. Winter G. , Hsu P.T. , Koo B. , and Loh M. H. (1948). Buckling of Trusses and Rigid Frames. Cornell University Engineering Experimental Station Bulletin No. 36, pp. 1-63, April 1948.

3. Bending of an Elastically Restrained Circular Plate under a Linearly Varying Load over an Eccentric Circle;Bassali;Proceedings of Cambridge Philosophical Society,1956

4. A Simple Approximate Formula for Effective End-Fixity of Columns

5. Determination of Effective End Fixity of Columns with Unequal Rotational End Restraints by Means of Vibration Test Data

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1. Organic Electrode Processes: Kinetics, Mechanisms, and Prospects for Commercial Development;Comprehensive Treatise of Electrochemistry;1983

2. Twenty-Second British Commonwealth Lecture;The Journal of the Royal Aeronautical Society;1967-03

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