Interaction curves for vibration and buckling of thin-walled composite box beams with arbitrary lay-ups under constant axial loads and equal end moments are presented. This model is based on the classical lamination theory, and accounts for all the structural coupling coming from material anisotropy. The governing differential equations are derived from the Hamilton’s principle. The resulting coupling is referred to as triply flexural–torsional coupled vibration and buckling. A displacement-based one-dimensional finite element model with seven degrees of freedoms per node is developed to solve the problem. Numerical results are obtained for thin-walled composite box beams to investigate the effects of axial force, bending moment, fiber orie...
This paper presents a general analytical model for free vibration of thin-walled composite beams wit...
A general analytical model based on shear-deformable beam theory has been developed to study the fle...
A general analytical model based on shear-deformable beam theory has been developed to study the fle...
Interaction curves for vibration and buckling of thin-walled composite box beams with arbitrary lay-...
A general analytical model applicable to flexural–torsional coupled vibration of thin-walled composi...
A general analytical model applicable to flexural–torsional coupled vibration of thin-walled composi...
A finite element model with seven degrees of freedom per node is developed to study vibration and bu...
A finite element model with seven degrees of freedom per node is developed to study vibration and bu...
A finite element model with seven degrees of freedom per node is developed to study vibration and bu...
Buckling of an axially loaded thin-walled laminated composite is studied. A general analytical model...
Buckling of an axially loaded thin-walled laminated composite is studied. A general analytical model...
Free vibration of axially loaded thin-walled composite beams with arbitrary lay-ups is presented. Th...
A general analytical model based on shear-deformable beam theory has been developed to study the fle...
Free vibration of a thin-walled laminated composite beam is studied. A general analytical model appl...
This paper presents a general analytical model for free vibration of thin-walled composite beams wit...
This paper presents a general analytical model for free vibration of thin-walled composite beams wit...
A general analytical model based on shear-deformable beam theory has been developed to study the fle...
A general analytical model based on shear-deformable beam theory has been developed to study the fle...
Interaction curves for vibration and buckling of thin-walled composite box beams with arbitrary lay-...
A general analytical model applicable to flexural–torsional coupled vibration of thin-walled composi...
A general analytical model applicable to flexural–torsional coupled vibration of thin-walled composi...
A finite element model with seven degrees of freedom per node is developed to study vibration and bu...
A finite element model with seven degrees of freedom per node is developed to study vibration and bu...
A finite element model with seven degrees of freedom per node is developed to study vibration and bu...
Buckling of an axially loaded thin-walled laminated composite is studied. A general analytical model...
Buckling of an axially loaded thin-walled laminated composite is studied. A general analytical model...
Free vibration of axially loaded thin-walled composite beams with arbitrary lay-ups is presented. Th...
A general analytical model based on shear-deformable beam theory has been developed to study the fle...
Free vibration of a thin-walled laminated composite beam is studied. A general analytical model appl...
This paper presents a general analytical model for free vibration of thin-walled composite beams wit...
This paper presents a general analytical model for free vibration of thin-walled composite beams wit...
A general analytical model based on shear-deformable beam theory has been developed to study the fle...
A general analytical model based on shear-deformable beam theory has been developed to study the fle...