Lattice continuum and diffusional creep
Explore this paper's citation graph
Summary
The lattice continuum theory developed here represents a natural and intuitive framework for the analysis of diffusion in crystals and lattice growth/loss at the boundaries and formally decouples from elasticity but at the cost of a complicated boundary condition.
- Type
- article
- Published
- 2016-04-01
- Cited by
- 12
- References
- 26
- Access
- Open access
- OpenAlex
- https://openalex.org/W2342324606
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:43798300
Keywords
Eigenstrain, Creep, Lattice diffusion coefficient, Materials science, Diffusion creep
References
- Inelastic Deformation of Metals: Models, Mechanical Properties, and Metallurgy
- Deformation-Mechanism Maps: The Plasticity and Creep of Metals and Ceramics
- Interfaces in crystalline materials
- Micromechanics of diffusional creep
- A lattice-based micromechanical continuum formulation for stress-driven mass transport in polycrystalline solids
- Constraints on the diffusive cavitation of isolated grain boundary facets in creeping polycrystals
- Micromechanics of defects in solids
- Molecular-dynamics study of a three-dimensional one-component model for distortive phase transitions
- Structure-energy correlation for grain boundaries in F.C.C. metals—I. Boundaries on the (111) and (100) planes
- A linear theory of thermochemical equilibrium of solids under stress
- Identifiying creep mechanisms at low stresses
- Elastic-Plastic Deformation at Finite Strains
- SURFACE AND INTERFACE STRESS EFFECTS IN THIN FILMS
- Quasi–incompressible Cahn–Hilliard fluids and topological transitions
- Irreversible thermodynamics of creep in crystalline solids
- Thermochemical equilibrium of multiphase solids under stress
- Constrained creep cavitation of grain boundary facets
- Minimal kinematic boundary conditions for simulations of disordered microstructures
- Field theory and diffusion creep predictions in polycrystalline aggregates
- A fast numerical method for computing the linear and nonlinear mechanical properties of composites
Cited by
- Dislocation Creep: Climb and Glide in the Lattice Continuum
- On the mechanisms of stress relaxation and intensification at the lithium/solid-state electrolyte interface
- Is crystal plasticity non-conservative? Lessons from large deformation continuum dislocation theory
- Diffusion-induced stress concentrations in diffusional creep
- A model of thermal creep and annealing in finite domains based on coupled dislocation climb and vacancy diffusion
- Coupled chemo-mechanical modeling of point-defect diffusion in a crystal plasticity fast Fourier transform framework
- Towards an enhanced understanding of Li mechanics in Li metal anodes
- Stress relaxation behavior and mechanism of a TC21 titanium alloy with bimodal and basket-weave microstructure during aging process
- The second Gibbs paradox.
- Limitations on the computational analysis of creep failure models: A review
- Physical Foundations of Mesoscale Continua
- Creep-Fatigue Design of RAFM Steels Using Physics-Informed and Data-Driven Surrogate Models with Multi-Objective Optimisation
Related papers
- The Contribution of Grain-Boundary Diffusion to Creep at Low Stresses
- The influence of pipe diffusion on the creep of fine-grained materials
- Creep behavior of alpha-iron single crystals under the stress lower than the yield stress
- Plastic Deformation of Fine‐Grained Alumina (Al2O3): I, Interface‐Controlled Diffusional Creep
- Effects of pipe diffusion on the creep behaviour of dry olivine
- Molecular Dynamics Simulation on Creep Behavior of Nanocrystalline TiAl Alloy
- Creep of polycrystalline alumina, pure and doped with transition metal impurities