The interface energy theory developed by Huang et al. is further extended to incorporate the effect of the residual interface stresses on the effective specific heats of multiphase thermoelastic nanocomposites. First, a micromechanics-based method is employed to derive the expressions of the effective specific heats at constant-strain and constant-stress of the composites. Second, in order to take into account the influence of the interface stresses on the overall properties of the nanocomposites, a thermoelastic interface constitutive relation expressed in terms of the first Piola-Kirchhoff interface stresses and the Lagrangian description of the generalized Young-Laplace equations are presented. Finally, by means of the Helmholtz free ene...
The effects of physical, thermal and mechanical parameters on curing microthermal residual stresses ...
The making of composites has served as a working principle of achieving material properties beyond t...
Nowadays, since the materials science and technique have been further advanced to the characteristic...
The interface energy theory developed by Huang et al. is further extended to incorporate the effect ...
The surface/interface energy theory based on three configurations proposed by Huang et al. is used t...
Surface/interface effect plays a significant role in the study of the mechanical properties of nano ...
In this paper, a fundamental framework of micromechanics for predicting the effective properties of ...
This paper studies the effective properties of multi-phase thermoelastic composites. Based on the He...
International audienceComposites made of semi-crystalline polymers and nanoparticles have a spheruli...
In this paper, the change of the elastic fields induced by the interface energies and the interface ...
Experimental observations have shown the size-dependent residual surface stresses on spherical nanop...
Currently, the advancement of nanotechnology provides new insights into the structures with the char...
Surfaces and interfaces can significantly influence the overall response of a solid body. Their beha...
The objective of this contribution is to explain the size effect in composites due to the interfacia...
We study the thermo-elastic properties of heterogeneous materials with imperfect interfaces. The int...
The effects of physical, thermal and mechanical parameters on curing microthermal residual stresses ...
The making of composites has served as a working principle of achieving material properties beyond t...
Nowadays, since the materials science and technique have been further advanced to the characteristic...
The interface energy theory developed by Huang et al. is further extended to incorporate the effect ...
The surface/interface energy theory based on three configurations proposed by Huang et al. is used t...
Surface/interface effect plays a significant role in the study of the mechanical properties of nano ...
In this paper, a fundamental framework of micromechanics for predicting the effective properties of ...
This paper studies the effective properties of multi-phase thermoelastic composites. Based on the He...
International audienceComposites made of semi-crystalline polymers and nanoparticles have a spheruli...
In this paper, the change of the elastic fields induced by the interface energies and the interface ...
Experimental observations have shown the size-dependent residual surface stresses on spherical nanop...
Currently, the advancement of nanotechnology provides new insights into the structures with the char...
Surfaces and interfaces can significantly influence the overall response of a solid body. Their beha...
The objective of this contribution is to explain the size effect in composites due to the interfacia...
We study the thermo-elastic properties of heterogeneous materials with imperfect interfaces. The int...
The effects of physical, thermal and mechanical parameters on curing microthermal residual stresses ...
The making of composites has served as a working principle of achieving material properties beyond t...
Nowadays, since the materials science and technique have been further advanced to the characteristic...