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Article cité :
R. Gotthardt
J. Phys. Colloques, 43 C4 (1982) C4-667-C4-671
Citations de cet article :
9 articles
Enhancement of damping capacity by deformation-induced martensitic transformation in Mg–Sc alloy
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Glassy and liquid vortex matter dynamics in faulted martensites
S. Kustov, E. Cesari and G. Gremaud Materials Science and Engineering: A 481-482 28 (2008) https://doi.org/10.1016/j.msea.2007.02.141
Low-temperature relaxation in faulted Cu-based martensites
S. Kustov, E. Cesari, S. Golyandin, et al. Materials Science and Engineering: A 432 (1-2) 34 (2006) https://doi.org/10.1016/j.msea.2006.04.138
Active and passive damping of noise and vibrations through shape memory alloys: applications and mechanisms
Jan Van Humbeeck and Sergey Kustov Smart Materials and Structures 14 (5) S171 (2005) https://doi.org/10.1088/0964-1726/14/5/001
The effect of shock-wave loading on transformation temperatures, elastic and anelastic properties of β1Cu-Al-Ni martensitic single crystals
S. Golyandin, S. Kustov, S. Nikanorov, et al. Philosophical Magazine A 82 (12) 2419 (2002) https://doi.org/10.1080/01418610208240044
Application of acoustic technique to determine the temperature range of quenched-in defect mobility in Cu-Al-Be β′1 martensitic phase
S Kustov, S Golyandin, K Sapozhnikov and M Morin Scripta Materialia 43 (10) 905 (2000) https://doi.org/10.1016/S1359-6462(00)00511-X
Strain amplitude-dependent anelasticity in Cu–Ni solid solution due to thermally activated and athermal dislocation–point obstacle interactions
S. Kustov, G. Gremaud, W. Benoit, et al. Journal of Applied Physics 85 (3) 1444 (1999) https://doi.org/10.1063/1.369276
SB Kustov, JV Humbeeck, I Hurtado, SN Golyandin and R De Batist 94 (1997) https://doi.org/10.1520/STP11741S
On the Morphology of Massive and Martensitic Phases with 2H Structure in Ni67 Cu8 Sn25 Alloy
Yuichiro Murakami and Sukeji Kachi Transactions of the Japan Institute of Metals 24 (11) 741 (1983) https://doi.org/10.2320/matertrans1960.24.741