local buckling of plates using the spline finite strip method
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abstract
the spline finite strip method (s.f.s.m.) for buckling analysis of plates and plate assemblies subjected to longitudinal compression and bending, transverse compression as well as shear is described. the method allows for the boundary conditions. local buckling coefficients of plates with different boundary conditions under compression, bending and shear are calculated. convergence studies with increasing number of section knots are described. the method is also applied to study the elastic local buckling interaction of bending and shear for plates with different aspect ratios.
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Local Buckling of Plates Using The Spline Finite Strip Method
The spline finite strip method (S.F.S.M.) for buckling analysis of plates and plate assemblies subjected to longitudinal compression and bending, transverse compression as well as shear is described. The method allows for the boundary conditions. Local buckling coefficients of plates with different boundary conditions under compression, bending and shear are calculated. Convergence studies with...
full textLocal Buckling of Plates Using The Spline Finite Strip Method
The spline finite strip method (S.F.S.M.) for buckling analysis of plates and plate assemblies subjected to longitudinal compression and bending, transverse compression as well as shear is described. The method allows for the boundary conditions. Local buckling coefficients of plates with different boundary conditions under compression, bending and shear are calculated. Convergence studies with...
full textBuckling of functionally graded stiffened and unstiffened plates using finite strip method
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full textBuckling of thin composite plates reinforced with randomly oriented, straight single-walled carbon nanotubes using B3-Spline finite strip method
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full textbuckling of functionally graded stiffened and unstiffened plates using finite strip method
this paper deals with local buckling analysis of rectangular functionally graded material plates using finite strip method and based on classical plate theory. the modulus of elasticity of the plate is assumed to vary according to a power-law distribution in terms of the volume fractions of the constituents. the principle of minimum total potential energy is employed to obtain stiffness and sta...
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Journal title:
روش های عددی در مهندسی (استقلال)جلد ۱۶، شماره ۲، صفحات ۳۹-۴۹
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