Z Li, Y Xu, D Huang - International Journal of Mechanical Sciences, 2021 - Elsevier
An efficient approach to obtain accurate solutions for free vibration of functionally graded beams (FGB) with variable cross-sections and resting on Pasternak elastic foundations is …
Purpose In this paper, free vibration and buckling characteristics of axially functionally graded, tapered and rotating Euler–Bernoulli and Timoshenko beams with different end …
This paper investigates the lateral buckling of simply supported nonprismatic I-beams with axially varying materials by a novel finite element formulation. The material properties of the …
M Soltani - Mechanics of Advanced Composite Structures, 2020 - journals.semnan.ac.ir
In this study, an efficient finite element model with two degrees of freedom per node is developed for buckling analysis of axially functionally graded (AFG) tapered Timoshenko …
A Teter, Z Kolakowski - Composite Structures, 2023 - Elsevier
The problem of a stability loss in compressed Euler columns with variable gradation of material properties along their length is addressed. Axial gradation causes that the cross …
VN Burlayenko - Continuum Mechanics and Thermodynamics, 2021 - Springer
A finite element model based on continuum shell elements available in ABAQUS software has been developed for the free vibration analysis of FGM sandwich panels. Applications to …
M Soltani, B Asgarian - Iranian Journal of Science and Technology …, 2021 - Springer
In this paper, a finite element model is developed for lateral–torsional stability analysis of axially functionally graded beams with tapered bi-symmetric I-section subjected to various …
Purpose The study aims to analyze the free vibration behavior of functionally graded porous beams with non-uniform rectangular cross-sections, investigating four distinct porosity …