On the Mechanisms for Martensite Formation in YAG Laser Welded Austenitic NiTi

Extensive work has been reported on the microstructure of laser-welded NiTi alloys either superelastic or with shape memory effect, motivated by the fact that the microstructure affects the functional properties. However, some effects of laser beam/material interaction with these alloys have not yet...

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Veröffentlicht in:Shape memory and superelasticity : advances in science and technology 2016-03, Vol.2 (1), p.114-120
Hauptverfasser: Oliveira, J. P., Braz Fernandes, F. M., Miranda, R. M., Schell, N.
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Sprache:eng
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Zusammenfassung:Extensive work has been reported on the microstructure of laser-welded NiTi alloys either superelastic or with shape memory effect, motivated by the fact that the microstructure affects the functional properties. However, some effects of laser beam/material interaction with these alloys have not yet been discussed. This paper aims to discuss the mechanisms for the occurrence of martensite in the heat-affected zone and in the fusion zone at room temperature, while the base material is fully austenitic. For this purpose, synchrotron radiation was used together with a simple thermal analytic mathematical model. Two distinct mechanisms are proposed for the presence of martensite in different zones of a weld, which affects the mechanical and functional behavior of a welded component.
ISSN:2199-384X
2199-3858
DOI:10.1007/s40830-016-0058-z