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Phase Equilibria of the Ag-Al-Au Ternary System and Interfacial Reactions in the Au-xAg/Al Couples at 450 °C

The phase equilibria of the Ag-Al-Au ternary system and the solid-state reaction couple for the Au-xAg/Al system were investigated isothermally at 450 °C. By investigating the Ag-Al-Au ternary system and its isothermal section, this study aims to provide a clearer understanding of the phase stabilit...

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Autores principales: Ramadhani, Mavindra, Laksono, Andromeda Dwi, Liang, Chien-Lung, Yang, Chiao-Yi, Chen, Kuo-Jung, Yen, Yee-Wen, Hsiao, Hsien-Ming
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10673222/
https://www.ncbi.nlm.nih.gov/pubmed/38005125
http://dx.doi.org/10.3390/ma16227196
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author Ramadhani, Mavindra
Laksono, Andromeda Dwi
Liang, Chien-Lung
Yang, Chiao-Yi
Chen, Kuo-Jung
Yen, Yee-Wen
Hsiao, Hsien-Ming
author_facet Ramadhani, Mavindra
Laksono, Andromeda Dwi
Liang, Chien-Lung
Yang, Chiao-Yi
Chen, Kuo-Jung
Yen, Yee-Wen
Hsiao, Hsien-Ming
author_sort Ramadhani, Mavindra
collection PubMed
description The phase equilibria of the Ag-Al-Au ternary system and the solid-state reaction couple for the Au-xAg/Al system were investigated isothermally at 450 °C. By investigating the Ag-Al-Au ternary system and its isothermal section, this study aims to provide a clearer understanding of the phase stability and interfacial reactions between different phases. This information is crucial for designing materials and processes in electronic packaging, with the potential to reduce costs and improve reliability. There were seven single-phase regions, thirteen two-phase regions, and six three-phase regions, with no ternary intermetallic compound (IMC) formed in the isothermal section of the Ag-Al-Au ternary system. When the Au-25 wt.% Ag/Al couple was aged at 450 °C for 240–1500 h, the AuAl(2), Au(2)Al, and Au(4)Al phases formed at the interface. When the Ag contents increased to 50 and 75 wt.%, the Ag(2)Al, AuAl(2), and Au(4)Al phases formed at the interface. When the aging time increased from 240 h to 1500 h, the total IMC thickness in all Au-xAg/Al couples became thicker, but the types of IMCs formed at the interface did not change. The total IMC thickness also increased with the increase in the Ag content. When the Ag content was greater than 25 wt.%, the Au(2)Al phase was converted into the Ag(2)Al phase. The IMC growth mechanism in all of the couples followed a reaction-controlled process.
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spelling pubmed-106732222023-11-16 Phase Equilibria of the Ag-Al-Au Ternary System and Interfacial Reactions in the Au-xAg/Al Couples at 450 °C Ramadhani, Mavindra Laksono, Andromeda Dwi Liang, Chien-Lung Yang, Chiao-Yi Chen, Kuo-Jung Yen, Yee-Wen Hsiao, Hsien-Ming Materials (Basel) Article The phase equilibria of the Ag-Al-Au ternary system and the solid-state reaction couple for the Au-xAg/Al system were investigated isothermally at 450 °C. By investigating the Ag-Al-Au ternary system and its isothermal section, this study aims to provide a clearer understanding of the phase stability and interfacial reactions between different phases. This information is crucial for designing materials and processes in electronic packaging, with the potential to reduce costs and improve reliability. There were seven single-phase regions, thirteen two-phase regions, and six three-phase regions, with no ternary intermetallic compound (IMC) formed in the isothermal section of the Ag-Al-Au ternary system. When the Au-25 wt.% Ag/Al couple was aged at 450 °C for 240–1500 h, the AuAl(2), Au(2)Al, and Au(4)Al phases formed at the interface. When the Ag contents increased to 50 and 75 wt.%, the Ag(2)Al, AuAl(2), and Au(4)Al phases formed at the interface. When the aging time increased from 240 h to 1500 h, the total IMC thickness in all Au-xAg/Al couples became thicker, but the types of IMCs formed at the interface did not change. The total IMC thickness also increased with the increase in the Ag content. When the Ag content was greater than 25 wt.%, the Au(2)Al phase was converted into the Ag(2)Al phase. The IMC growth mechanism in all of the couples followed a reaction-controlled process. MDPI 2023-11-16 /pmc/articles/PMC10673222/ /pubmed/38005125 http://dx.doi.org/10.3390/ma16227196 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Ramadhani, Mavindra
Laksono, Andromeda Dwi
Liang, Chien-Lung
Yang, Chiao-Yi
Chen, Kuo-Jung
Yen, Yee-Wen
Hsiao, Hsien-Ming
Phase Equilibria of the Ag-Al-Au Ternary System and Interfacial Reactions in the Au-xAg/Al Couples at 450 °C
title Phase Equilibria of the Ag-Al-Au Ternary System and Interfacial Reactions in the Au-xAg/Al Couples at 450 °C
title_full Phase Equilibria of the Ag-Al-Au Ternary System and Interfacial Reactions in the Au-xAg/Al Couples at 450 °C
title_fullStr Phase Equilibria of the Ag-Al-Au Ternary System and Interfacial Reactions in the Au-xAg/Al Couples at 450 °C
title_full_unstemmed Phase Equilibria of the Ag-Al-Au Ternary System and Interfacial Reactions in the Au-xAg/Al Couples at 450 °C
title_short Phase Equilibria of the Ag-Al-Au Ternary System and Interfacial Reactions in the Au-xAg/Al Couples at 450 °C
title_sort phase equilibria of the ag-al-au ternary system and interfacial reactions in the au-xag/al couples at 450 °c
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10673222/
https://www.ncbi.nlm.nih.gov/pubmed/38005125
http://dx.doi.org/10.3390/ma16227196
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