Thermokinetic Simulation of Precipitation in NiTi Shape Memory Alloys

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Abstract

Considering classical nucleation theory and evolution equations for the growth and composition change of precipitates, we simulate the evolution of the precipitates structure in the classical stages of nucleation, growth and coarsening using the solid-state transformation Matcalc software. The formation of Ni3Ti, Ni4Ti3 or Ni3Ti2 precipitate is the key to hardening phenomenon of the alloys, which depends on the nickel solubility in the bulk alloys. The microstructural evolution of metastable Ni4Ti3 and Ni3Ti2 precipitates in Ni-rich TiNi alloys is simulated by computational thermokinetics, based on thermodynamic and diffusion databases. The simulated precipitate phase fractions are compared with experimental data.

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Cirstea, C. D., Karadeniz-Povoden, E., Kozeschnik, E., Lungu, M., Lang, P., Balagurov, A., & Cirstea, V. (2017). Thermokinetic Simulation of Precipitation in NiTi Shape Memory Alloys. In IOP Conference Series: Materials Science and Engineering (Vol. 209). Institute of Physics Publishing. https://doi.org/10.1088/1757-899X/209/1/012057

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