Thermodynamic and Kinetic Simulations Used for the Study of the Influence of Precipitates on Thermophysical Properties in NiTiCu Alloys Obtained by Spark Plasma Sintering

Author:

Cirstea Cristiana Diana1ORCID,Povoden-Karadeniz Erwin23ORCID,Cirstea Vasile4,Tolea Felicia5ORCID,Kozeschnik Ernst3ORCID

Affiliation:

1. National Institute for Research and Development in Electrical Engineering ICPE-CA (INCDIE ICPE-CA), Splaiul Unirii 313, 030138 Bucharest, Romania

2. Christian Doppler Laboratory for Interfaces and Precipitation Engineering CDL-IPE, Institute of Materials Science and Technology, TU Wien, Getreidemarkt 9, 1060 Vienna, Austria

3. Institute of Materials Science and Technology, TU Wien, Getreidemarkt 9, 1060 Vienna, Austria

4. Military Equipments and Technology Research Agency, Aeroportului 16, 077025 Clinceni, Romania

5. National Institute of Materials Physics (INCDFM), 105 bis Atomistilor Str., 077125 Magurele, Romania

Abstract

The thermodynamic and kinetic simulations based on the re-assessment of the thermodynamic and kinetic database of the Ni-Ti-Cu system were employed to predict the phenomena of mechanical alloying, spark plasma sintering and thermal properties of the intriguing Ni-Ti-Cu system. Thermodynamic calculations are presented for the stable and unstable phases of NiTiCu materials and support a correlation with the evolving microstructure during the technological process. Also, the thermal conductivity, the thermal diffusivity and the specific heat of spark plasma sintered and aged Cu-alloyed NiTi-based shape memory alloys (NiTiCu) with two compositions, Ni45Ti50Cu5 and Ni40Ti50Cu10, are evaluated and the influence of mechanical alloying and precipitates on thermal properties is discussed. Measurements of these thermal properties were carried out from 25 °C up to 175 °C using the laser flash method, as well as differential scanning calorimetry. The thermal hysteresis of the 20 mm diameter samples was between 8.8 and 24.5 °C. The observed T0 temperatures from DSC experimental transformation features are in reasonable accordance with the thermodynamic predictions. The determined k values are between 20.04 and 26.87 W/m K and in agreement with the literature results. Moreover, this paper can provide some suggestions for the preparation of NiTiCu shape memory alloys and their applications.

Funder

Austrian Federal Ministry for Digital and Economic Affairs

Bilateral Collaboration Romania-Russia

Publisher

MDPI AG

Reference58 articles.

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3. Shape Memory NiTi and NiTiCu Alloys Obtained by Spark Plasma Sintering Process;Cirstea;Adv. Eng. Forum,2015

4. Dual-cluster model of Ti–Cu binary eutectic and composition interpretation of relevant amorphous alloys;Dong;AIP Adv.,2021

5. Martensitic transformation of Ti50(Ni50−xCux) and Ni50(Ti50−xZrx) shape-memory alloys;Yang;Sci. Rep.,2019

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