A single theory for some quasi-static, supersonic, atomic, and tectonic scale applications of dislocations
DOI10.1016/j.jmps.2015.07.004zbMath1481.74097OpenAlexW1423839536MaRDI QIDQ2670203
Xiaohan Zhang, Amit Acharya, Noel J. Walkington, Jacobo Bielak
Publication date: 10 March 2022
Published in: Journal of the Mechanics and Physics of Solids (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1016/j.jmps.2015.07.004
field dislocation mechanicsdislocation pile-upPeierls stressdislocation dissociationdynamic dislocation fieldsdynamic rupturesupersonic dislocation
Theories of fracture and damage (74A45) Plastic materials, materials of stress-rate and internal-variable type (74C99)
Related Items (19)
Cites Work
- Unnamed Item
- Unnamed Item
- Unnamed Item
- Unnamed Item
- Mechanical response of multicrystalline thin films in mesoscale field dislocation mechanics
- New inroads in an old subject: plasticity, from around the atomic to the macroscopic scale
- Group elastic symmetries common to continuum and discrete defective crystals
- Constitutive analysis of finite deformation field dislocation mechanics
- Travelling wave solutions for a quasilinear model of field dislocation mechanics
- Elastic symmetries of defective crystals
- Shocks and slip systems: predictions from a mesoscale theory of continuum dislocation dynamics
- From dislocation motion to an additive velocity gradient decomposition, and some simple models of dislocation dynamics
- Singularity-free dislocation dynamics with strain gradient elasticity
- On criteria for dynamic adiabatic shear band propagation
- The Peierls stress in non-local elasticity
- A phase-field theory of dislocation dynamics, strain hardening and hysteresis in ductile single crystals.
- Stored energy functions for phase transitions in crystals
- Microcanonical entropy and mesoscale dislocation mechanics and plasticity
- A non-local formulation of the Peierls dislocation model
- A non-singular continuum theory of dislocations
- Size effects and idealized dislocation microstructure at small scales: predictions of a phenomenological model of mesoscopic field dislocation mechanics. I.
- Size effects and idealized dislocation microstructure at small scales: predictions of a phenomenological model of mesoscopic field dislocation mechanics. II.
- Dislocation dynamics: Short-time existence and uniqueness of the solution
- Second-order effects of dislocations in anisotropic crystals
- Inelastic constitutive relations for solids: An internal-variable theory and its application to metal plasticity
- Pile-Up Solutions for Some Systems of Conservation Laws Modelling Dislocation Interaction in Crystals
- Dislocation Dynamics at Low Temperatures
- New Perspectives in Plasticity Theory: Dislocation Nucleation, Waves, and Partial Continuity of Plastic Strain Rate
- Dynamic Fracture Mechanics
- Stability of a dislocation : Discrete model
- Dynamics of line singularities
- Metastable patterns in solutions of ut = ϵ2uxx − f(u)
- Driving forces and boundary conditions in continuum dislocation mechanics
- The motion of dislocations
- A dynamic discrete dislocation plasticity method for the simulation of plastic relaxation under shock loading
- A model of crystal plasticity based on the theory of continuously distributed dislocations
This page was built for publication: A single theory for some quasi-static, supersonic, atomic, and tectonic scale applications of dislocations