Grain boundary orientation effects on deformation of Ta bicrystal nanopillars under high strain-rate compression
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- Type
- article
- Published
- 2014-02-07
- Cited by
- 32
- References
- 70
- Access
- Open access
- OpenAlex
- https://openalex.org/W2009976145
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:30658542
Keywords
Crystal twinning, Materials science, Nanopillar, Stacking fault, Nucleation
References
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- Near-ideal strength in gold nanowires achieved through microstructural design.
- Nanocrystals: The strongest size
- Softening of nanocrystalline metals at very small grain sizes
- Dislocation nucleation and defect structure during surface indentation
- Deformation twinning in explosively-driven tantalum
- Energy landscape of deformation twinning in bcc and fcc metals
- Plasticity in Cu(111)/Cu46Zr54 glass nanolaminates under uniaxial compression
- Competing grain-boundary- and dislocation-mediated mechanisms in plastic strain recovery in nanocrystalline aluminum
- Interplay of dislocation slip and deformation twinning in tantalum at high strain rates
- Deformation mechanisms in nanotwinned metal nanopillars.
- Molecular dynamics simulations of shock-induced plasticity in tantalum
- Grain boundary effects on cyclic deformation and fatigue damage
- Shock-induced deformation twinning and omega transformation in tantalum and tantalum–tungsten alloys
- Theory of Shear Banding in Metallic Glasses and Molecular Dynamics Calculations
- A unified approach to grain boundary sliding in creep and superplasticity
- Structural characterization of deformed crystals by analysis of common atomic neighborhood
- Size-dependent elasticity of nanowires: Nonlinear effects
- A simple empirical N-body potential for transition metals
- Stress induced grain boundary motion
Cited by
- Simulations of X-ray diffraction of shock-compressed single-crystal tantalum with synchrotron undulator sources.
- Melting curves and structural properties of tantalum from the modified-Z method
- Effects of tilt interface boundary on mechanical properties of Cu/Ni nanoscale metallic multilayer composites
- Deformation behaviour of body centered cubic iron nanopillars containing coherent twin boundaries
- Loading-path dependent deformation of nanocrystalline Ta under single- and double-shock, and quasi-isentropic compression
- Size-dependent plastic deformation of twinned nanopillars in body-centered cubic tungsten
- Twinning-induced plasticity (TWIP) and work hardening in Ti-based metallic glass matrix composites
- Intragranular void formation in shock-spalled tantalum: Mechanisms and governing factors
- Flow strength limit of nanocrystalline tantalum predicted with molecular dynamics simulations
- Shock wave propagation, plasticity, and void collapse in open-cell nanoporous Ta.
- Deducing density and strength of nanocrystalline Ta and diamond under extreme conditions from X-ray diffraction.
- Orientation and grain-boundary dependence of shock-induced plasticity and transformation in nanocrystalline Ti
- Unraveling the Role of Interfaces in the Deformation and Failure Behavior of Metallic Materials under Dynamic Loading Conditions
- Understanding and predicting damage and failure at grain boundaries in BCC Ta
- Shock deformation and spallation of Cu bicrystals with (1 1 1) twist grain boundaries
- Full strain tensor measurements with X-ray diffraction and strain field mapping: a simulation study.
- Texture evolution in nanocrystalline Ta under shock compression
- Twinning and rotational deformation of nanocrystalline NiTi under shock loading
- Effect of Annealing-Induced Tensions on the Mechanical Failure of Copper/Copper Interface in Wafer-to-Wafer Hybrid Bonding
- Micro-mechanical response of ultrafine grain and nanocrystalline tantalum
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