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Explicit Green's functions for the interaction of a crack and a thermopiezoelectric dislocation (i.e., a thermal dislocation, a mechanical dislocation and an electric dipole located at the same point) are developed.
Explicit Green's functions for the interaction of a crack and a thermomagnetoelectroelastic dislocation (i.e., a thermal dislocation, a mechanical dislocation, an electric dipole and a magnetic dipole located at a same point) are presented.
The problem is reduced to two sets of coupled singular integral equations with the thermal dislocation and magnetoelectroelastic dislocation densities along the branched crack line as the unknown variables.
Green's functions are also presented for a thermal dislocation (heat vortex) and a conventional dislocation (or, referred as mechanical dislocation), which are formulated considering the cuts located at an arbitrary angle with respect to the x1 axis of the coordinate system (x1, x2, x3).
Similar(56)
The temporal evolution of microstructure during hot rolling of TRIP steel is simulated by the MC method incorporating thermal and dislocation density data from the continuum models.
The rolling, recrystallization and cooling of AgCl containing 1 5 μm glass spheres generates thermal misfit dislocations.
In this study, the relationship between thermal conductivity and dislocation density is examined using the 3 omega technique and free standing HVPE GaN substrates.
The kink pair theory is applied to model thermal activation of dislocation glide over the Peierls barrier below the athermal temperature Ta and to build a velocity law for this regime.
At low strain rates, and for a model Ti alloy considered at 20 °C, the strong experimentally observed rate-sensitive behaviour manifested as stress relaxation and creep is shown to be captured well by the new thermal activation discrete dislocation plasticity model, which otherwise simply cannot be captured by nucleation or mobility arguments.
The yield stress of these materials is adequately described by a model combining thermal nucleation of dislocations in the crystals with a Ree Eyring dependence for yielding in the amorphous phase, all with physically reasonable parameter values.
A set of Green's functions is proposed for the dislocations (conventional dislocation and thermal dislocation/heat vortex) in anisotropic bi-media.
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