Atomic-Scale Quantification of Grain Boundary Segregation in Nanocrystalline Material
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Linking stress-driven microstructural evolution in nanocrystalline aluminium with grain boundary doping of oxygen.Ultra-strong and damage tolerant metallic bulk materials: A lesson from nanostructured pearlitic steel wires.Three-dimensional nanostructure determination from a large diffraction data set recorded using scanning electron nanodiffraction.Evaluation of Analysis Conditions for Laser-Pulsed Atom Probe Tomography: Example of Cemented Tungsten Carbide.Weak-beam scanning transmission electron microscopy for quantitative dislocation density measurement in steels.Correlating Atom Probe Crystallographic Measurements with Transmission Kikuchi Diffraction Data.Multiscale architectured materials with composition and grain size gradients manufactured using high-pressure torsion.Core-shell nanoparticle arrays double the strength of steel.On the structure of grain/interphase boundaries and interfaces.Nanoscopic analysis of oxygen segregation at tilt boundaries in silicon ingots using atom probe tomography combined with TEM and ab initio calculations.Modern Focused-Ion-Beam-Based Site-Specific Specimen Preparation for Atom Probe Tomography.Grain Boundary Specific Segregation in Nanocrystalline Fe(Cr).Grain boundary mediated hydriding phase transformations in individual polycrystalline metal nanoparticles.Segregation-induced ordered superstructures at general grain boundaries in a nickel-bismuth alloy.Deformation-Induced Martensite: A New Paradigm for Exceptional Steels.Effect of Si on the Aging Behavior of Cold-Drawn Pearlitic Steel WiresInterface dominated cooperative nanoprecipitation in interstitial alloysSegregation stabilizes nanocrystalline bulk steel with near theoretical strengthFormation of nanosized grain structure in martensitic 100Cr6 bearing steels upon rolling contact loading studied by atom probe tomographyShear-Induced Mixing Governs Codeformation of Crystalline-Amorphous NanolaminatesGrowth of bainitic ferrite and carbon partitioning during the early stages of bainite transformation in a 2 mass% silicon steel studied byin situneutron diffraction, TEM and APT
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P2860
Atomic-Scale Quantification of Grain Boundary Segregation in Nanocrystalline Material
description
article publié dans la revue scientifique Physical Review Letters
@fr
im März 2014 veröffentlichter wissenschaftlicher Artikel
@de
scientific article published in Physical Review Letters
@en
wetenschappelijk artikel
@nl
наукова стаття, опублікована в березні 2014
@uk
name
Atomic-Scale Quantification of Grain Boundary Segregation in Nanocrystalline Material
@en
Atomic-Scale Quantification of Grain Boundary Segregation in Nanocrystalline Material
@nl
type
label
Atomic-Scale Quantification of Grain Boundary Segregation in Nanocrystalline Material
@en
Atomic-Scale Quantification of Grain Boundary Segregation in Nanocrystalline Material
@nl
prefLabel
Atomic-Scale Quantification of Grain Boundary Segregation in Nanocrystalline Material
@en
Atomic-Scale Quantification of Grain Boundary Segregation in Nanocrystalline Material
@nl
P2093
P2860
P1476
Atomic-scale quantification of grain boundary segregation in nanocrystalline material
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P2093
P2860
P304
P356
10.1103/PHYSREVLETT.112.126103
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P577
2014-03-27T00:00:00Z