Assuming that the thermo-elastic creep response of the material is governed by Norton's law and material properties, except Poisson's ratio, are considered as a function of the radius of the spherical vessel, an analytical solution is presented for calculation of stresses and displacements of axisymmetric thick-walled spherical pressure vessels made of functionally graded materials. This analytical solution could be used to study the time and temperature dependence of stresses in spherical vessels made of functionally graded materials. Creep stresses and displacements are plotted against dimensionless radius and time for different values of the powers of the material properties
In the present paper, we have studied the temperature and pressure dependent creep stress analysis o...
In this paper, we present an accurate method to carry out elastic analysis of thick-walled spherical...
The present study aims to provide a deeper understanding for the thermo-mechanical analysis of spher...
Assuming that the thermo-elastic creep response of the material is governed by Norton's law and mate...
In the present study, time-dependent thermoelastic creep response for isotropic rotating thick-walle...
Time-dependent creep analysis is presented for the calculation of stresses and displacements of axis...
In this paper, a theoretical solution for time-dependent thermo-elastic creep analysis of a function...
Assuming that the thermo-creep response of the material is governed by Norton's law, an analytical s...
Assuming that the thermo-creep response of the material is governed by Norton’s law, an analytical s...
Abstract In this paper, exact closed-form solutions for displacement and stress components of thick-...
In this paper, exact closed-form solutions for displacement and stress components of thick-walled fu...
Abstract In this paper closed form analytical solution for stress components of thick spherical shel...
International audienceIn this work, a thick-walled spherical vessel made of nonhomogeneous materials...
In the present study, assuming that the thermo-elastic creep response of the material is governed by...
AbstractAssuming that the thermo-creep response of the material is governed by Norton’s law, an anal...
In the present paper, we have studied the temperature and pressure dependent creep stress analysis o...
In this paper, we present an accurate method to carry out elastic analysis of thick-walled spherical...
The present study aims to provide a deeper understanding for the thermo-mechanical analysis of spher...
Assuming that the thermo-elastic creep response of the material is governed by Norton's law and mate...
In the present study, time-dependent thermoelastic creep response for isotropic rotating thick-walle...
Time-dependent creep analysis is presented for the calculation of stresses and displacements of axis...
In this paper, a theoretical solution for time-dependent thermo-elastic creep analysis of a function...
Assuming that the thermo-creep response of the material is governed by Norton's law, an analytical s...
Assuming that the thermo-creep response of the material is governed by Norton’s law, an analytical s...
Abstract In this paper, exact closed-form solutions for displacement and stress components of thick-...
In this paper, exact closed-form solutions for displacement and stress components of thick-walled fu...
Abstract In this paper closed form analytical solution for stress components of thick spherical shel...
International audienceIn this work, a thick-walled spherical vessel made of nonhomogeneous materials...
In the present study, assuming that the thermo-elastic creep response of the material is governed by...
AbstractAssuming that the thermo-creep response of the material is governed by Norton’s law, an anal...
In the present paper, we have studied the temperature and pressure dependent creep stress analysis o...
In this paper, we present an accurate method to carry out elastic analysis of thick-walled spherical...
The present study aims to provide a deeper understanding for the thermo-mechanical analysis of spher...