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School days were truncated, grades combined and extras like sports and computers were gone.
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The fundamental relations, the modified Donnell type stability and compatibility equations of functionally graded truncated conical shells are obtained first.
The fundamental relations, the dynamic stability and compatibility equations of functionally graded truncated conical shells are obtained first.
Aero-thermoelastic analysis of a simply supported functionally graded truncated conical shell subjected to supersonic air flow is performed to predict the flutter boundaries.
A shear deformation shell theory including thickness stretching effects is used to formulate the minimization problem of the vibrational response of functionally graded truncated conical shells in different cases of boundary conditions.
This paper presents an analytical approach to investigate the mechanical buckling load of eccentrically stiffened functionally graded truncated conical shells surrounded by elastic medium and subjected to axial compressive load and external uniform pressure.
A 2D Unconstrained Third order Shear Deformation Theory (UTSDT) is used for the evaluation of tangential and normal stresses in moderately thick functionally graded truncated conical shells and panels subjected to meridian, circumferential and normal uniform loadings.
Dynamic buckling of functionally graded materials truncated conical shells subjected to normal impact loads is discussed in this paper.
The parametric vibration of shear deformable functionally graded (FG) truncated conical shells subjected to static and time dependent periodic uniform lateral pressures is studied.
In this study, the buckling of functionally graded (FG) truncated conical shells subjected to external pressures under mixed boundary conditions is investigated.
This paper presents a theoretical approach to solve vibration problems of functionally graded (FG) truncated conical shells under mixed boundary conditions.
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