Microstructure Evolution of Dendrite and Eutectic in Undercooled Al70ge30 Alloy

20 Pages Posted: 20 Feb 2024

See all articles by Shunmeng Zhang

Shunmeng Zhang

Yunnan University

Kai Xiong

Yunnan University

Ruixia Yang

affiliation not provided to SSRN

Xuan Zhou

Yunnan University

Junjie He

Yunnan University

Yingwu Wang

Yunnan University

Hua Dai

Kunming Institute of Precious Metals

Yong Mao

Yunnan University

Abstract

Al-Ge eutectic alloy, as a desirable bonding material, has been widely used in microelectromechanical systems (MEMS) packaging. The bonding property of Al-Ge eutectic alloy is closely related to their microstructures. However, the microstructure evolution and underlying mechanisms in undercooled eutectic Al-Ge alloys remain unclear. In this work, Al70Ge30 alloy was prepared and subjected to undercooling using a cycled superheating purification technology. The maximum undercooling can reach 90 K (0.13TL). The solidified Al70Ge30 alloy exhibits concomitant dendrites and eutectics microstructure. The dendrites undergo rapid refinement at low undercooling and subsequently maintain nearly constant size as undercooling increases. Intriguingly, undercooling has a significant influence on eutectic microstructures. The eutectic microstructure transformed from feather structures to fishbone structures as undercooling increases then transformed into a line-like structure in eutectic cells. The evolution mechanisms of dendrites and eutectic structures are further elucidated based on several classical thermodynamic models. This study can provide theoretical and experimental guidance for the microstructure evolution of undercooled eutectic alloys with similar eutectic structures.

Keywords: Al-Ge alloy, undercooled, dendritic growth, eutectic evolution

Suggested Citation

Zhang, Shunmeng and Xiong, Kai and Yang, Ruixia and Zhou, Xuan and He, Junjie and Wang, Yingwu and Dai, Hua and Mao, Yong, Microstructure Evolution of Dendrite and Eutectic in Undercooled Al70ge30 Alloy. Available at SSRN: https://ssrn.com/abstract=4732187 or http://dx.doi.org/10.2139/ssrn.4732187

Shunmeng Zhang

Yunnan University ( email )

Kunming, 650091
China

Kai Xiong (Contact Author)

Yunnan University ( email )

Kunming, 650091
China

Ruixia Yang

affiliation not provided to SSRN ( email )

No Address Available

Xuan Zhou

Yunnan University ( email )

Kunming, 650091
China

Junjie He

Yunnan University ( email )

Kunming, 650091
China

Yingwu Wang

Yunnan University ( email )

Kunming, 650091
China

Hua Dai

Kunming Institute of Precious Metals ( email )

China

Yong Mao

Yunnan University ( email )

Kunming, 650091
China

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