Micro-mechanism of the effect of grain size and temperature on the mechanical properties of polycrystalline TiAl
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- Type
- article
- Published
- 2019-02-15
- Cited by
- 44
- References
- 47
- OpenAlex
- https://openalex.org/W2900581804
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:139306549
Keywords
Materials science, Grain size, Crystallite, Grain boundary strengthening, Dislocation
References
- Molecular dynamics simulations of void shrinkage in γ-TiAl single crystal
- Analysis of activation energy evolution in thermo-kinetic process of nano-scale grain growth
- Topological framework for local structure analysis in condensed matter
- A Maximum in the Strength of Nanocrystalline Copper
- Canonical dynamics: Equilibrium phase-space distributions.
- Plastic flow of γ-TiAl-based polysynthetically twinned crystals: micromechanical modeling and experimental validation
- Nanomechanics of Hall-Petch relationship in nanocrystalline materials
- Effects of grain size and shape on mechanical properties of nanocrystalline copper investigated by molecular dynamics
- Roles of grain boundary and dislocations at different deformation stages of nanocrystalline copper under tension
- Elastic and tensile behavior of nanocrystalline copper and palladium
- A unified formulation of the constant temperature molecular dynamics methods
- Modelling the influence of grain-size-dependent solute drag on the kinetics of grain growth in nanocrystalline materials
- Interatomic potentials for atomistic simulations of the Ti-Al system
- Effects of microstructure on the deformation and fracture of γ-TiAl alloys
- Microstructural analysis on boundary sliding and its accommodation mode during superplastic deformation of Ti–6Al–4V alloy
- Effect of Stress Level on the High Temperature Deformation and Fracture Mechanisms of Ti-45Al-2Nb-2Mn-0.8 vol. pct TiB2: An In Situ Experimental Study
- Generalizations of OWA Operators
- Deformation of polysynthetically twinned crystals of TiAl with a nearly stoichiometric composition
- A modified model for hall-petch behavior in nanocrystalline materials
- What is behind the inverse Hall–Petch effect in nanocrystalline materials?
Cited by
- On the ductile damage of nanotwinned copper crystal with prolate void defect at the twin boundary
- Hall-Petch and inverse Hall-Petch relations in high-entropy CoNiFeAlxCu1-x alloys
- Modeling and investigation for atomic diffusion and mechanical properties of TiAl/Ti3Al interface: temperature effect
- Influence of Temperature on Mechanical Properties of Nanocrystalline 316L Stainless Steel Investigated via Molecular Dynamics Simulations
- Effects of grain size and temperature on mechanical properties of nano-polycrystalline Nickel-cobalt alloy
- Exact solution for thermal–mechanical post-buckling of functionally graded micro-beams
- Effects of temperature and grain size on the mechanical properties of polycrystalline quartz
- Triaxial tension-induced damage behavior of nanocrystalline NiTi alloy and its dependence on grain size
- Study of properties of fcc-Au-Fe alloys in macro- and nano-crystalline states under various P-T-conditions
- Temperature-dependent deformation processes in two-phase TiAl + Ti3Al nano-polycrystalline alloys
- Quantifying the High-Temperature Separation Behavior of Lamellar Interfaces in γ-Titanium Aluminide Under Tensile Loading by Molecular Dynamics
- Diffusion and mechanical properties of Ti2AlNb and TA15 interface: From experiments to molecular dynamics
- Crack propagation mechanism of titanium nano-bicrystal: a molecular dynamics study
- Temperature induced nano-scratch responses of γ-TiAl alloys revealed via molecular dynamics simulation
- Hall–Petch relationship in Ti3Al nano-polycrystalline alloys by molecular dynamics simulation
- Dynamic behavior and microstructural evolution of TiAl alloys tailored via phase and grain size
- Atomic-scale analysis of deformation behavior of face-centered cubic nanocrystalline high-entropy alloys with different grain sizes at high strain rates
- The effects of grain size and temperature on mechanical properties of CoCrNi medium-entropy alloy
- Atomic simulation of the effect of supersonic fine particle bombardment process parameters on the mechanical properties of polycrystalline γ-TiAl alloy
- Grain Distribution for Optimal Strength in Homogeneous and Gradient Nano‐Grained Coppers
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