2016, Friction stir welding and processing book series., ISBN 0128033592, xvi, 89 pages
Book
2014, 2014, ISBN 9783319070421, Volume 9783319070438, xii, 338 pages
This book lays out the fundamentals of friction stir welding and processing and builds toward practical perspectives. The authors describe the links between...
Friction stir welding | Mechanical engineering & materials | Building materials | Operating Procedures, Materials Treatment | Materials Science | Structural Materials | Continuum Mechanics and Mechanics of Materials
Friction stir welding | Mechanical engineering & materials | Building materials | Operating Procedures, Materials Treatment | Materials Science | Structural Materials | Continuum Mechanics and Mechanics of Materials
Book
2015, ISBN 1119082498
Web Resource
Materials Science and Engineering: A, ISSN 0921-5093, 11/2019, p. 138705
Journal Article
2017, Morgan Kaufmann Series in Data Management Systems, ISBN 9780128092927
Web Resource
2017, Morgan Kaufmann Series in Data Management Systems, ISBN 9780128092927
Web Resource
Materials Science & Engineering. A, Structural Materials : Properties, Microstructure and Processing, ISSN 0921-5093, 10/2018, Volume 736, p. 344
High-entropy alloys (HEAs) can offer exceptional strain-rate sensitivity (SRS) due to high lattice-friction and strong solid-solution strengthening, and in...
Grain size | High entropy alloys | Strain rate sensitivity | Friction | Solution strengthening | Barriers | Alloys | Dependence | Stacking fault energy | Microstructure | Grain refinement | Dislocations
Grain size | High entropy alloys | Strain rate sensitivity | Friction | Solution strengthening | Barriers | Alloys | Dependence | Stacking fault energy | Microstructure | Grain refinement | Dislocations
Journal Article
Materials Science & Engineering A, ISSN 0921-5093, 10/2018, Volume 736, p. 344
To access, purchase, authenticate, or subscribe to the full-text of this article, please visit this link: http://dx.doi.org/10.1016/j.msea.2018.09.009...
Alloys
Alloys
Journal Article
2016, Friction Stir Welding and Processing Book Series, ISBN 9780128094655
Web Resource
2013, ISBN 9781118605783
Web Resource
International Journal of Fatigue, ISSN 0142-1123, 04/2018, Volume 109, p. 1
The main objective of the present study was to examine the effect of grain size on the fatigue properties of 5024 Al alloy. Two ultrafine-grained (UFG) and one...
Grain size | Fatigue life | Aluminum base alloys | Deformation | Fracture mechanics | Fatigue testing machines | Fatigue | Fatigue failure | Crack propagation | Dislocation density | Fatigue tests | Intergranular structure | Properties (attributes) | Bending fatigue | Friction stir welding | Dependence | S N diagrams | Evolution | Bending machines | Microstructure | Friction stir processing | Crack initiation
Grain size | Fatigue life | Aluminum base alloys | Deformation | Fracture mechanics | Fatigue testing machines | Fatigue | Fatigue failure | Crack propagation | Dislocation density | Fatigue tests | Intergranular structure | Properties (attributes) | Bending fatigue | Friction stir welding | Dependence | S N diagrams | Evolution | Bending machines | Microstructure | Friction stir processing | Crack initiation
Journal Article
2017, ISBN 9780128120682
Web Resource
2017, ISBN 9780128120682
Web Resource
Materials & Design, ISSN 0264-1275, 11/2016, Volume 110, pp. 60 - 71
Friction stir welding under ambient cooling conditions, using tool rotation rate of 800 rpm and welding speed of 200 mm per minute was carried out on 2195 and...
Al-Cu-Li alloys | Differential scanning calorimetry | Transmission electron microscopy | Aging kinetics | Friction stir welding | AIRCRAFT | MATERIALS SCIENCE, MULTIDISCIPLINARY | HEAT-TREATMENT | STRENGTH | ALUMINUM-ALLOYS | MECHANICAL-PROPERTIES | PRECIPITATION | EVOLUTION | MICROSTRUCTURE | Grain boundaries | Welding | Hardness | Alloys | Vickers microhardness | Aluminum base alloys | AGING MECHANISMS | ALUMINUM ALLOYS (50 TO 99 AL) | COPPER ALUMINUM ALLOYS | JOINTS | Aging (metallurgy) | SILVER ALLOYS (50 TO 99 AG) | Welded joints | RECRYSTALLIZATION | WELDING | HARDNESS | Silver base alloys | FRICTION WELDING
Al-Cu-Li alloys | Differential scanning calorimetry | Transmission electron microscopy | Aging kinetics | Friction stir welding | AIRCRAFT | MATERIALS SCIENCE, MULTIDISCIPLINARY | HEAT-TREATMENT | STRENGTH | ALUMINUM-ALLOYS | MECHANICAL-PROPERTIES | PRECIPITATION | EVOLUTION | MICROSTRUCTURE | Grain boundaries | Welding | Hardness | Alloys | Vickers microhardness | Aluminum base alloys | AGING MECHANISMS | ALUMINUM ALLOYS (50 TO 99 AL) | COPPER ALUMINUM ALLOYS | JOINTS | Aging (metallurgy) | SILVER ALLOYS (50 TO 99 AG) | Welded joints | RECRYSTALLIZATION | WELDING | HARDNESS | Silver base alloys | FRICTION WELDING
Journal Article
Journal of Materials Engineering and Performance, ISSN 1059-9495, 03/2019, Volume 28, Issue 3, pp. 1661 - 1667
Journal Article
Journal of Materials Engineering and Performance, ISSN 1059-9495, 03/2019, Volume 28, Issue 3, p. 1661
Journal Article
International Journal of Plasticity, ISSN 0749-6419, 09/2019
Journal Article
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