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Effect of heat treatment on microstructure and thermal properties of Cu-based shape memory ribbons (CROSBI ID 308915)

Prilog u časopisu | izvorni znanstveni rad | međunarodna recenzija

Kožuh, Stjepan ; Ivanić, Ivana ; Holjevac Grgurić, Tamara ; Gojić, Mirko Effect of heat treatment on microstructure and thermal properties of Cu-based shape memory ribbons // Kemija u industriji : časopis kemičara i tehnologa Hrvatske, 71 (2022), 9-10; 591-600

Podaci o odgovornosti

Kožuh, Stjepan ; Ivanić, Ivana ; Holjevac Grgurić, Tamara ; Gojić, Mirko

engleski

Effect of heat treatment on microstructure and thermal properties of Cu-based shape memory ribbons

The aim in this work was to investigate the change in microstructure, phase transformation temperatures, and thermal properties due to the quenching of the investigated Cu-Al-Mn and Cu-Al- Mn-Ti alloys in ribbons form. This paper presents the results of microstructure analysis and thermal properties of Cu-Al-Mn and Cu-Al-Mn-Ti shape memory alloys produced in form of ribbons by melt spinning technique. The microstructural analysis was carried out before and after quenching. After casting of the investigated alloys annealing at 900 °C for 30 min was performed, followed by water quenching. The microstructural analysis was carried out by optical and scanning electron microscopy equipped with an energy dispersive spectrometer and by X-ray diffractometer. Thermodynamic calculation of a ternary Cu-Al-Mn system in equilibrium condition was performed using Thermo-Calc 5 software. Phase transformation temperatures were determined by differential scanning calorimetry and by electrical resistance measuring. The results of microstructural analysis show the presence of martensite microstructures before and after quenching in the Cu-Al-Mn alloy, while in the Cu-Al-Mn-Ti alloy martensite microstructure exists only after quenching. Phase transformation temperatures were decreased after quenching and titanium addition.

Cu-Al-Mn, Cu-Al-Mn-Ti, shape memory alloys, microstructure characterization, thermal analysis, X-ray spectroscopy

Glavni autor: Stjepan Kožuh, Ivana Ivanić

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Podaci o izdanju

71 (9-10)

2022.

591-600

objavljeno

0022-9830

1334-9090

Povezanost rada

Kemijsko inženjerstvo, Metalurgija