PG-EAM - Graduate Program in Aeronautical and Mechanical Engineering
PT EN
Article 2016

Effect of spun velocities and composition on the microstructure and transformation temperatures of TiNi shape memory ribbons

Authors

Cuellar, Enrique López
Pavón, Luis López
Mendoza, Esaú Nuñez
De Araújo, Carlos José
De Castro, Walman Benicio
Gonzalez, Cezar

Materials Research , vol. 19 , no. 5 , pp. 1132-1137

ISSN: 15161439

3
Citations
7
Authors

Abstract

Ti-50.13Ni and Ti-49.62Ni (at.%) shape memory alloy ribbons were fabricated by melt-spinning method at different circumferential wheel velocities. The effects of wheel velocity, chemical composition and heat treatments on microstructure and Transformation temperature were investigated. Differences in wheel velocity led to differences in cooling rate and sample dimension, as well as in phase transformation temperatures. Two heat treatment conditions were studied, 350°C for 1h and 350°C for 5h. In the samples produced at high wheel velocity and heat-Treated at 350°C for 5h, nanosized Ti-rich precipitates were observed in both chemical compositions. Cross-sectional microstructure was studied by optical microscopy; SEM was used to study the nanometric grains and nano precipitation. The transformation temperatures were analyzed by DSC.

Keywords

Melt-spinning process Ti rich nanoprecipitate Ti-Ni Shape memory alloys Ribbons Transformation temperature

Materials Science (all) (MATE) Condensed Matter Physics (PHYS) Mechanics of Materials (ENGI) Mechanical Engineering (ENGI)
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