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Concise formula for the critical buckling stresses of an elastic plate under biaxial compression and shear
Authors:Y.Z. Chen  Y.Y. Lee  Q.S. Li
Affiliation:a School of Civil Engineering, Wuhan University, Wuhan, 430072, China
b City University of Hong Kong, Department of Building and Construction, Kowloon Tong, Hong Kong
Abstract:This study aims to develop a concise formula for the critical buckling stresses of a simply supported plate under biaxial compression and shear. The critical stresses are obtained for different aspect ratios using classical plate theory and the Ritz method. The four-dimensional critical stress formula, which is expressed in terms of the three in-plane stresses and the aspect ratio, is developed empirically according to the two-dimensional relationships between the in-plane stresses. The findings that are of interest are: (1) the critical stress relationship is linear for the aspect ratios within the range 1 to View the MathML source and nonlinear for the aspect ratios within the range View the MathML source to 5; and (2) as shear stress approaches its critical value, the critical stress relationship becomes increasingly linear and less dependent on aspect ratio.
Keywords:Plate buckling   Critical stress   Compression and shear loads
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