Kinetics of vacancy annealing upon time-linear heating applied to dilatometry
Author:
Funder
Austrian Science Fund
Publisher
Springer Science and Business Media LLC
Subject
Mechanical Engineering,Mechanics of Materials,General Materials Science
Link
http://link.springer.com/article/10.1007/s10853-017-1780-4/fulltext.html
Reference19 articles.
1. Sprengel W, Oberdorfer B, Steyskal EM, Würschum R (2012) Dilatometry—a powerful tool for the study of defects in ultrafine-grained metals. J Mater Sci 47:7921–7925. doi: 10.1007/s10853-012-6460-9
2. Steyskal EM, Oberdorfer B, Sprengel W, Zehetbauer M, Pippan R, Würschum R (2012) Direct experimental determination of grain boundary excess volume in metals. Phys Rev Lett 108:055504
3. Oberdorfer B, Setman D, Steyskal EM, Hohenwarter A, Sprengel W, Zehetbauer M, Pippan R, Würschum R (2014) Grain boundary excess volume and defect annealing of copper after high-pressure torsion. Acta Mater 68:189–195
4. Kotzurek J, Steyskal EM, Oberdorfer B, Hohenwarter A, Pippan R, Sprengel W, Würschum R (2016) Direct measurement of vacancy relaxation by dilatometry. Appl Phys Lett 109:021906
5. Kotzurek J, Sprengel W, Krystian M, Simic S, Pölt P, Hohenwarter A, Pippan R, Würschum R (2017) Structural anisotropy in equal-channel angular extruded nickel revealed by dilatometric study of excess volume. Int J Mater Res (formerly Z Metallkd) 108:81–88
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