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Erschienen in: Shape Memory and Superelasticity 1/2017

03.01.2017 | SPECIAL ISSUE: NOVEL SHAPE MEMORY ALLOYS, BEHAVIOR AND PROCESSING, INVITED PAPER

Composition, Constitution and Phase Transformation Behavior in Thin-Film and Bulk Ti–Ni–Y

verfasst von: D. König, P. Frowein, A. Wieczorek, J. Frenzel, S. Hamann, G. Eggeler, A. Ludwig

Erschienen in: Shape Memory and Superelasticity | Ausgabe 1/2017

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Abstract

Advanced engineering applications require new and improved shape memory alloys in bulk and thin-film form. While many Ti–Ni-based systems have been studied so far, the Ti–Ni–Y materials system was not studied in detail concerning its bulk and thin-film shape memory properties. For this reason, a Ti–Ni–Y thin-film materials library focussing on compositions close to Ni50Ti50 was fabricated by combinatorial magnetron sputtering. This library was characterized by high-throughput methods and the compositional range where phase transformations occur was identified. Ti–Ni–Y thin films exhibit a very narrow hysteresis width ∆T and allow to precisely adjust ∆T. Based on the promising results of Ti–Ni–Y thin films, which can be directly applied in microsystems, bulk alloys were fabricated in order to explore how thin-film and bulk properties of different Ti–Ni–Y compositions correlate. It turned out that Ti–Ni–Y bulk materials show different phase transformation properties compared to thin films, most importantly higher ∆T. The differences between thin-film and bulk material are discussed.

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Metadaten
Titel
Composition, Constitution and Phase Transformation Behavior in Thin-Film and Bulk Ti–Ni–Y
verfasst von
D. König
P. Frowein
A. Wieczorek
J. Frenzel
S. Hamann
G. Eggeler
A. Ludwig
Publikationsdatum
03.01.2017
Verlag
Springer International Publishing
Erschienen in
Shape Memory and Superelasticity / Ausgabe 1/2017
Print ISSN: 2199-384X
Elektronische ISSN: 2199-3858
DOI
https://doi.org/10.1007/s40830-016-0098-4

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