AbstractThe aim of the present paper is to study the thermoelastic interactions in an unbounded elastic medium with a spherical cavity in the context of four different theories of thermoelasticity, namely: the classical coupled dynamical thermoelasticity, the extended thermoelasticity, the temperature-rate-dependent thermoelasticity and the thermoelasticity without energy dissipation in a unified way. The cavity surface is assumed to be stress free and is subjected to a smooth and time-dependent-heating effect. The solutions for displacement, temperature and stresses are obtained with the help of the Laplace transform procedure. Firstly the short-time approximated solutions for four different theories have been obtained analytically. Then f...
Thermoelastic interactions in a linear, homogeneous and transversely isotropic unbounded body contai...
AbstractThe distribution of stresses due to step input of temperature at the boundary of a spherical...
AbstractThe temperature-rate dependent thermoelasticity theory is employed to study spherically symm...
AbstractThe aim of the present paper is to study the thermoelastic interactions in an unbounded elas...
Thermoelastic interactions caused in a homogeneous and isotropic unbounded body with a spherical cav...
Thermoelastic interactions caused in a homogeneous and isotropic unbounded body with a spherical cav...
Thermoelastic interactions caused in a homogeneous and isotropic unbounded body with a spherical cav...
Abstract. The linear theory of thermoelasticity without energy dissipation is employed to study wave...
Abstract. The linear theory of thermoelasticity without energy dissipation is employed to study wave...
Thermoelastic interactions caused in a homogeneous and isotropic unbounded body with a spherical cav...
AbstractThe distribution of stresses due to step input of temperature at the boundary of a spherical...
Thermoelastic interactions in a linear, homogeneous and transversely isotropic unbounded body contai...
Thermoelastic interactions in a linear, homogeneous and transversely isotropic unbounded body contai...
In this work, we study the thermoelastic interactions in an unbounded medium with a spherical cavity...
In this paper, a generalized dynamical theory of thermoelasticity is employed to study disturbances ...
Thermoelastic interactions in a linear, homogeneous and transversely isotropic unbounded body contai...
AbstractThe distribution of stresses due to step input of temperature at the boundary of a spherical...
AbstractThe temperature-rate dependent thermoelasticity theory is employed to study spherically symm...
AbstractThe aim of the present paper is to study the thermoelastic interactions in an unbounded elas...
Thermoelastic interactions caused in a homogeneous and isotropic unbounded body with a spherical cav...
Thermoelastic interactions caused in a homogeneous and isotropic unbounded body with a spherical cav...
Thermoelastic interactions caused in a homogeneous and isotropic unbounded body with a spherical cav...
Abstract. The linear theory of thermoelasticity without energy dissipation is employed to study wave...
Abstract. The linear theory of thermoelasticity without energy dissipation is employed to study wave...
Thermoelastic interactions caused in a homogeneous and isotropic unbounded body with a spherical cav...
AbstractThe distribution of stresses due to step input of temperature at the boundary of a spherical...
Thermoelastic interactions in a linear, homogeneous and transversely isotropic unbounded body contai...
Thermoelastic interactions in a linear, homogeneous and transversely isotropic unbounded body contai...
In this work, we study the thermoelastic interactions in an unbounded medium with a spherical cavity...
In this paper, a generalized dynamical theory of thermoelasticity is employed to study disturbances ...
Thermoelastic interactions in a linear, homogeneous and transversely isotropic unbounded body contai...
AbstractThe distribution of stresses due to step input of temperature at the boundary of a spherical...
AbstractThe temperature-rate dependent thermoelasticity theory is employed to study spherically symm...