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ACS nano, ISSN 1936-0851, 08/2017, Volume 11, Issue 8, pp. 7702 - 7709
Monte Carlo methods | Materials Science(all) | phase diagrams | Physics and Astronomy(all) | colloidal particles | Laves phases | hard tetramers | photonic crystals | sedimentation | Engineering(all) | Physical Sciences | Chemistry | Materials Science | Nanoscience & Nanotechnology | Technology | Materials Science, Multidisciplinary | Science & Technology - Other Topics | Chemistry, Multidisciplinary | Chemistry, Physical | Science & Technology
Journal Article
Materials letters, ISSN 0167-577X, 11/2015, Volume 158, Issue C, pp. 233 - 236
Phase transformation | Microstructure | TEM | Mo-containing stainless steels | Physical Sciences | Materials Science | Technology | Materials Science, Multidisciplinary | Physics | Science & Technology | Physics, Applied | Precipitation (Meteorology) | Intermetallic compounds | Structure | Analysis | Alloys | Crystals | Precipitation | Phase transformations | Austenitic stainless steels | Laves phase | Molybdenum base alloys | Molybdenum | Crystal structure | MATERIALS SCIENCE
Journal Article
Materials transactions, ISSN 1345-9678, 2018, Volume 59, Issue 4, pp. 546 - 555
Quasi-ternary phase diagram | Phase equilibrium | Size factor | Materials Science | Technology | Materials Science, Multidisciplinary | Metallurgy & Metallurgical Engineering | Science & Technology | Intermetallic compounds | Metals | Intermetallic phases | Nickel aluminides | Molybdenum | Aluminum oxide | Substitutes | Oxidation resistance | Niobium base alloys | Laves phase | Phase equilibria | Chromium | Nickel compounds | Phase stability
Journal Article
Acta materialia, ISSN 1359-6454, 01/2018, Volume 143, pp. 141 - 155
Journal Article
Intermetallics, ISSN 0966-9795, 11/2020, Volume 126, p. 1
Phase transformation | βo phase | Microstructural evolution | Laves | Diffusion | γ-TiAl | Beta phase | Chemical precipitation | Hot workability | Aluminum | Isothermal annealing | Alloys | High temperature | Precipitates | Phase transitions | Titanium base alloys | Laves phase | Evolution | Platelets | Manganese
Journal Article
Journal of physics. Condensed matter, ISSN 0953-8984, 10/2012, Volume 24, Issue 43, p. 435701
Physics, Condensed Matter | Physical Sciences | Physics | Science & Technology | Condensed matter: electronic structure, electrical, magnetic, and optical properties | Superconducting materials (excluding high-tc compounds) | Exact sciences and technology | Superconductivity | Metals, alloys and compounds (a15, 001c15, laves phases, chevrel phases, borocarbides, etc.)
Journal Article
Journal of the Physical Society of Japan, ISSN 0031-9015, 3/2010, Volume 79, Issue 3, pp. 033704 - 033704-4
RT | Zn | Caged structure | Superconductivity | Structural phase transition | Physics, Multidisciplinary | Physical Sciences | Physics | Science & Technology | Condensed matter: electronic structure, electrical, magnetic, and optical properties | Superconducting materials (excluding high-tc compounds) | Exact sciences and technology | Metals, alloys and compounds (a15, 001c15, laves phases, chevrel phases, borocarbides, etc.)
Journal Article
Journal of materials science, ISSN 0022-2461, 9/2016, Volume 51, Issue 17, pp. 7843 - 7860
Polymer Sciences | Materials Science, general | Mechanics | Characterization and Evaluation of Materials | Material Science | Continuum Mechanics and Mechanics of Materials | Crystallography | Materials Science | Technology | Materials Science, Multidisciplinary | Science & Technology | Grain boundaries | Stoichiometry | Intermetallic compounds | Aluminum | Orientation relationships | Decomposition | Mu phase | High temperature | Superalloys | Niobium | Lamellar structure | Aging | Stability | Chemical precipitation | Three phase | Alloys | Aging (metallurgy) | Molybdenum | Precipitates | Phase decomposition | Domains | Solid solutions | Laves phase | Nickel | Microstructure | Cellular structure | Cobalt base alloys | Precipitation
Journal Article
Journal of alloys and compounds, ISSN 0925-8388, 04/2017, Volume 702, pp. 258 - 265
Journal Article
Journal of alloys and compounds, ISSN 0925-8388, 01/2020, Volume 814, p. 151777
Cobalt high-temperature alloys | Phase diagram | Crystal structure | Physical Sciences | Chemistry | Materials Science | Technology | Materials Science, Multidisciplinary | Metallurgy & Metallurgical Engineering | Chemistry, Physical | Science & Technology | Electron probe microanalysis | Phase diagrams | Three phase | X ray powder diffraction | Ternary systems | Laves phase | Phase equilibria | Differential thermal analysis | Electron probes
Journal Article
Journal of materials research, ISSN 0884-2914, 12/2018, Volume 33, Issue 24, pp. 4329 - 4339
Article | intermetallics | microstructure | spark plasma sintering | Laves phase | Materials Science | Technology | Materials Science, Multidisciplinary | Science & Technology | Grain boundaries | Grain size | Temperature distribution | Alloy powders | Alloys | High temperature | Phase transitions | Solidification | Fracture toughness | Spark plasma sintering | Microscopy | Evolution | Plasma sintering | Microstructure | Diffusion | Methods
Journal Article
Journal of magnetism and magnetic materials, ISSN 0304-8853, 01/2021, Volume 517, p. 167236
Journal Article
Materials characterization, ISSN 1044-5803, 02/2015, Volume 100, pp. 192 - 206
X-ray diffraction | Differential scanning calorimetry | Alloy 718 | Gas Tungsten Arc welding | Laves phase | Materials Science | Materials Science, Characterization & Testing | Technology | Materials Science, Multidisciplinary | Metallurgy & Metallurgical Engineering | Science & Technology | Calorimetry | Alloys | Nickel base alloys | Welded joints | Weld metal | Solid solutions | Filler metal | Gas tungsten arc welding | Aging (metallurgy) | Superalloys | Microstructure | Molybdenum | Age hardening | SOLID SOLUTIONS | MOLYBDENUM | X-RAY DIFFRACTION | LAVES PHASES | GAS TUNGSTEN-ARC WELDING | MATERIALS SCIENCE | SEGREGATION | MODIFICATIONS | ALLOYS | CALORIMETRY | FILLER METALS | MICROSTRUCTURE | WELDED JOINTS
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