Abstract
This article studies changes observed on the R-phase thermoelastic behavior in a near-equiatomic Ti-Ni shape memory alloy. Three kinds of procedures have been performed: different treatments, thermomechanical cycling under constant loading in shape memory helical springs and thermal cycling in as-treated and trained samples. Several heat treatments were carried out to investigate evolution of the R-phase by differential scanning calorimetry (DSC). A heat treatment was chosen on which R-phase is absent. Shape memory springs were produced and submitted to a training process in an apparatus by tensioning the springs under constant loading. Thermal cycling in DSC was realized in as-treated and trained samples. Several aspects of one-step (B2→B19') and two-steps (B2→R→B19') martensitic transformations and R-phase formation and their evolution during tests were observed and discussed.
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Gonzaleza, C. H., Do Nascimento Oliveiraa, C. A., De Pinaa, E. A. C., Filhoa, S. L. U., De Araújo Filhoa, O. O., & De Araújob, C. J. (2010). Heat treatments and thermomechanical cycling influences on the R-Phase in Ti-Ni shape memory alloys. Materials Research, 13(3), 325–331. https://doi.org/10.1590/s1516-14392010000300008
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