Non-isothermal crystallization kinetics of a rapidly solidified as-cast TiZrHfNiCu high entropy bulk metallic glass
This paper aims to investigate the thermal behavior and crystallization kinetics of TiZrHfNiCu high entropy bulk metallic glass (HE-BMG) alloy using the standard procedure of Differential Scanning Calorimetric (DSC) annealing technique. The alloy was produced using an arc melting machine with a crit...
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my.iium.irep.886332024-02-26T06:50:10Z http://irep.iium.edu.my/88633/ Non-isothermal crystallization kinetics of a rapidly solidified as-cast TiZrHfNiCu high entropy bulk metallic glass Nordin, Norhuda Hidayah Mohamad, Faiz Syazwan Jamal, Nur Ayuni TA Engineering (General). Civil engineering (General) TA174 Engineering design TA401 Materials of engineering and construction TA630 Structural engineering (General) TP155 Chemical engineering This paper aims to investigate the thermal behavior and crystallization kinetics of TiZrHfNiCu high entropy bulk metallic glass (HE-BMG) alloy using the standard procedure of Differential Scanning Calorimetric (DSC) annealing technique. The alloy was produced using an arc melting machine with a critical diameter of 1.5 mm. The crystallization kinetics and phase transformation mechanism of TiZrHfNiCu HE-BMG was investigated under the isochronal condition at a single heating run based on the Johnson-Mehl- Avrami (JMA) theory. In isochronal heating, the apparent activation energy for glass transition and crystallization events was analyzed by Kissinger and Ozawa methods. The average activation energy value for crystallization of TiZrHfNiCu amorphous alloys in isochronal modes was 226.41 kJ/mol for the first crystallization and 297.72 kJ/mol for second crystallization stages. The crystallization mechanism of the first step was dominated by two- and three-dimensional growth with increasing nucleation rate, while the crystallization mechanism in the second stage was dominated by two-dimensional crystallization growth with a constant nucleation rate. The diffusion mechanism result proved the theory of sluggish atomic diffusion of HEA at elevated temperature. Scientific Research Publishing 2020-07-21 Article PeerReviewed application/pdf en http://irep.iium.edu.my/88633/7/88633_Non-Isothermal%20Crystallization%20kinetics%20of%20a.pdf Nordin, Norhuda Hidayah and Mohamad, Faiz Syazwan and Jamal, Nur Ayuni (2020) Non-isothermal crystallization kinetics of a rapidly solidified as-cast TiZrHfNiCu high entropy bulk metallic glass. World Journal of Engineering and Technology, 8. pp. 280-295. ISSN 2331-4222 E-ISSN 2331-4249 https://doi.org/10.4236/wjet.2020.83023 |
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TA Engineering (General). Civil engineering (General) TA174 Engineering design TA401 Materials of engineering and construction TA630 Structural engineering (General) TP155 Chemical engineering Nordin, Norhuda Hidayah Mohamad, Faiz Syazwan Jamal, Nur Ayuni Non-isothermal crystallization kinetics of a rapidly solidified as-cast TiZrHfNiCu high entropy bulk metallic glass |
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This paper aims to investigate the thermal behavior and crystallization kinetics of TiZrHfNiCu high entropy bulk metallic glass (HE-BMG) alloy using the standard procedure of Differential Scanning Calorimetric (DSC) annealing technique. The alloy was produced using an arc melting machine with a critical diameter of 1.5 mm. The crystallization kinetics and phase transformation mechanism of TiZrHfNiCu HE-BMG was investigated under the
isochronal condition at a single heating run based on the Johnson-Mehl- Avrami (JMA) theory. In isochronal heating, the apparent activation energy for glass transition and crystallization events was analyzed by Kissinger and Ozawa methods. The average activation energy value for crystallization of TiZrHfNiCu amorphous alloys in isochronal modes was 226.41 kJ/mol for the first crystallization and 297.72 kJ/mol for second crystallization stages. The crystallization mechanism of the first step was dominated by two- and three-dimensional growth with increasing nucleation rate, while the crystallization mechanism in the second stage was dominated by two-dimensional crystallization growth with a constant nucleation rate. The diffusion mechanism result proved the theory of sluggish atomic diffusion of HEA at elevated temperature. |
format |
Article |
author |
Nordin, Norhuda Hidayah Mohamad, Faiz Syazwan Jamal, Nur Ayuni |
author_facet |
Nordin, Norhuda Hidayah Mohamad, Faiz Syazwan Jamal, Nur Ayuni |
author_sort |
Nordin, Norhuda Hidayah |
title |
Non-isothermal crystallization kinetics of a
rapidly solidified as-cast TiZrHfNiCu high
entropy bulk metallic glass |
title_short |
Non-isothermal crystallization kinetics of a
rapidly solidified as-cast TiZrHfNiCu high
entropy bulk metallic glass |
title_full |
Non-isothermal crystallization kinetics of a
rapidly solidified as-cast TiZrHfNiCu high
entropy bulk metallic glass |
title_fullStr |
Non-isothermal crystallization kinetics of a
rapidly solidified as-cast TiZrHfNiCu high
entropy bulk metallic glass |
title_full_unstemmed |
Non-isothermal crystallization kinetics of a
rapidly solidified as-cast TiZrHfNiCu high
entropy bulk metallic glass |
title_sort |
non-isothermal crystallization kinetics of a
rapidly solidified as-cast tizrhfnicu high
entropy bulk metallic glass |
publisher |
Scientific Research Publishing |
publishDate |
2020 |
url |
http://irep.iium.edu.my/88633/7/88633_Non-Isothermal%20Crystallization%20kinetics%20of%20a.pdf http://irep.iium.edu.my/88633/ https://doi.org/10.4236/wjet.2020.83023 |
_version_ |
1792146417880399872 |
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13.209306 |