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Effects of thermal aging on phase transformation and microstructural characteristics of NiTi shape memory alloy
13
Citations
22
References
2019
Year
Materials EngineeringMaterials ScienceMagnetic Shape Memory AlloysEngineeringSuperalloyCorrosionMechanical EngineeringApplied PhysicsPhase TransformationAlloy DesignMicrostructural CharacteristicsAging TemperatureNiti SmaHot WorkingAlloy PhaseMicrostructure
In this study, the effects of aging temperature and time on microstructure and phase transformation behaviors of the NiTi shape memory alloy were investigated with the effects of precipitates. NiTi SMA was synthesized using powder metallurgy process followed by the solution annealing at 850alt;supagt;0alt;/supagt;C for 1 h. The thermal aging process has been executed on NiTi alloy in the temperature range of 450alt;supagt;0alt;/supagt;C-750alt;supagt;0alt;/supagt;C for 1 h, 3 h and 5 h respectively. It was found that the enhancement of transformation temperatures due to the formation of secondary phases during the transformation of cubic to monoclinic. The lenticular structured Nialt;subagt;4alt;/subagt;Tialt;subagt;3alt;/subagt; precipitate was mainly influenced the phase transformation by changing the Ni composition in the NiTi matrix. The significant changes were observed in the austenite and martensite finish temperatures with increasing the aging temperature and time. This study suggests that the NiTi SMA can be implemented in biomedical applications when heat treated at 650alt;supagt;0alt;/supagt;C for 5 h.
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