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Phenomenological analysis of thermomechanical training in an Fe-based shape memory alloy

Fumihito Nishimura and Kikuaki Tanaka
Computational Materials Science 12 (1) 26 (1998)
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The influence of deformation on the microstructure and transformation temperatures of Fe–Mn–Si–Cr–Ni shape memory alloys

G.J Arruda, V.T.L Buono and M.S Andrade
Materials Science and Engineering: A 273-275 528 (1999)
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Factors influencing martensite transitions in Fe-based shape memory alloys

Elena Mihalache, Bogdan Pricop, Marius-Gabriel Suru, et al.
MATEC Web of Conferences 33 04002 (2015)
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O efeito do tamanho de grão austenítico no número de orientações das variantes de martensita em ligas inoxidáveis com efeito de memória de forma

Jorge Otubo, Paulo Roberto Mei, Nelson Batista de Lima, Marilene Morelli Serna and Eguiberto Gallego
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Advances in Shape Memory Materials

Takeshi Iwamoto and Bo Cao
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Relationship between thermomechanical treatment, microstructure and α′ martensite in stainless Fe-based shape memory alloys

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Materials Science and Engineering: A 273-275 533 (1999)
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Proceedings of the International Conference on Martensitic Transformations: Chicago

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A new application of Fe-28Mn-6Si-5Cr (mass%) shape memory alloy, for self-adjustable axial preloading of ball bearings

V Paleu, G Gurău, R I Comăneci, et al.
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Study of tensile behaviour of Fe base shape memory alloys during mechanical cycling

L Ciurca, N-M Lohan, B Pricop and L G Bujoreanu
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Structural-Morphological Fluctuations Induced by Thermomechanical Treatment in a Fe – Mn – Si Shape Memory Alloy

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A comparative analysis of different shape memory alloy actuator configurations

Paulo Cesar C Monteiro, Luciana Loureiro da Silva Monteiro, Marcelo A Savi, et al.
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