SC Cowin - Journal of biomechanics, 1999 - Elsevier
Poroelasticity is a well-developed theory for the interaction of fluid and solid phases of a fluid- saturated porous medium. It is widely used in geomechanics and has been applied to bone …
The combination of hybrid perovskite and Cu (In, Ga) Se2 (CIGS) has the potential for realizing high-efficiency thin-film tandem solar cells because of the complementary tunable …
Vibrational behavior of a functionally graded graphene nanoplatelets-reinforced porous nanocomposite (FG GNPs-RPN) annular microplate with piezoelectric/metallic coverings is …
Porous and nanocomposite materials are widely used in various engineering structures due to their exceptional thermos-mechanical properties. In this work, the poro-thermoelastic …
F Zhang, B Damjanac, S Maxwell - Rock Mechanics and Rock Engineering, 2019 - Springer
Naturally fractured rock mass is highly inhomogeneous and contains geological discontinuities at various length scales. Hydraulic fracture stimulation in such a medium …
Due to the vast usage of metal foam structures in branches of science, reinforcing them with nano-fillers makes them more convenient. Hence, in the current study, vibration …
D Chen, J Yang, S Kitipornchai - Composite Structures, 2015 - Elsevier
This paper presents the elastic buckling and static bending analysis of shear deformable functionally graded (FG) porous beams based on the Timoshenko beam theory. The …
C Miehe, S Mauthe - Computer Methods in Applied Mechanics and …, 2016 - Elsevier
The prediction of fluid-and moisture-driven crack propagation in deforming porous media has achieved increasing interest in recent years, in particular with regard to the modeling of …
Thermal buckling analysis of annular/circular microplates, which are made from functionally graded Graphene nanoplatelets (GNPs) reinforced porous nanocomposite is presented in …