Deformation Behavior, Structure and Properties of an Equiatomic Ti–Ni Shape Memory Alloy Compressed in a Wide Temperature Range

In the present work, flow curves of an equiatomic Ti–Ni shape memory alloy after deformation by compression in the temperature range from 100 to 900 °C at a strain rate of 1 s −1 and up to a true strain ( e ) of 0.9 were obtained. The phase composition, mechanical and functional properties after com...

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Veröffentlicht in:Transactions of the Indian Institute of Metals 2021-10, Vol.74 (10), p.2419-2426
Hauptverfasser: Komarov, Victor, Khmelevskaya, Irina, Karelin, Roman, Postnikov, Ivan, Korpala, Grzegorz, Kawalla, Rudolf, Prahl, Ulrich, Yusupov, Vladimir, Prokoshkin, Sergey
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Sprache:eng
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Zusammenfassung:In the present work, flow curves of an equiatomic Ti–Ni shape memory alloy after deformation by compression in the temperature range from 100 to 900 °C at a strain rate of 1 s −1 and up to a true strain ( e ) of 0.9 were obtained. The phase composition, mechanical and functional properties after compression to e  = 0.5 were studied. The boundaries of the temperature ranges of the development of dynamic softening processes were determined, as follows: dynamic recovery in 100–300 °C range; dynamic polygonization in 300–500 °C range and dynamic recrystallization above 500 °C. An optimum deformation temperature range in terms of accumulation of high strains and achieving improved functional properties is 300–500 °C. It has also been found that post-deformation annealing at temperatures above the deformation temperature leads to the decrease in the B2-austenite lattice defectness and to a significant increase in shape recovery characteristics.
ISSN:0972-2815
0975-1645
DOI:10.1007/s12666-021-02355-x