The High Temperature Oxidation Behavior of a Superalloy Prepared by Vacuum Induction Melting and Electron Beam Smelting: A Comparative Study

20 Pages Posted: 2 May 2023

See all articles by Yijiala Yiliti

Yijiala Yiliti

Dalian University of Technology

G.Y. Dong

Dalian University of Technology

Xiaogang You

Dalian University of Technology

Yiquan Zhao

CATARC Component Technology (Tianjin) Co., Ltd

Wenjun Han

Dalian University of Technology

Liyang Dong

Dalian University of Technology

Yi-nong Wang

Dalian University of Technology - School of Materials Science and Engineering

Yi Li

Dalian University of Technology

Yi Tan

Dalian University of Technology

Abstract

In this paper, the high temperature oxidation behavior of superalloys prepared by the electron beam smelting (EBS) and vacuum induction melting (VIM) at 900°C and 1000°C is investigated. Experimental results indicate that EBS alloys show better oxidation resistance and oxide layer integrity. The relationship between the growth rates of Al2O3 and Ta2O5 and the oxygen partial pressure at the oxide/substrate interface is explained by the growth model of n-type semiconductor oxides. Lower oxygen partial pressure at the oxide/substrate interface due to the higher purity of the EBS alloys. This effectively slows down the growth rate of the n-type semiconductor oxides such as Al2O3 and Ta2O5 and thickening rates of the other n-type oxides, which ultimately leads to better oxidation resistance.

Keywords: High purity single crystal superalloys;High temperature oxidation behavior;Electron beam smelting

Suggested Citation

Yiliti, Yijiala and Dong, G.Y. and You, Xiaogang and Zhao, Yiquan and Han, Wenjun and Dong, Liyang and Wang, Yi-nong and Li, Yi and Tan, Yi, The High Temperature Oxidation Behavior of a Superalloy Prepared by Vacuum Induction Melting and Electron Beam Smelting: A Comparative Study. Available at SSRN: https://ssrn.com/abstract=4435986 or http://dx.doi.org/10.2139/ssrn.4435986

Yijiala Yiliti

Dalian University of Technology ( email )

Huiying Rd
DaLian, LiaoNing, 116024
China

G.Y. Dong

Dalian University of Technology ( email )

Huiying Rd
DaLian, LiaoNing, 116024
China

Xiaogang You (Contact Author)

Dalian University of Technology ( email )

Huiying Rd
DaLian, LiaoNing, 116024
China

Yiquan Zhao

CATARC Component Technology (Tianjin) Co., Ltd ( email )

Wenjun Han

Dalian University of Technology ( email )

Huiying Rd
DaLian, LiaoNing, 116024
China

Liyang Dong

Dalian University of Technology ( email )

Huiying Rd
DaLian, LiaoNing, 116024
China

Yi-nong Wang

Dalian University of Technology - School of Materials Science and Engineering ( email )

Yi Li

Dalian University of Technology ( email )

Huiying Rd
DaLian, LiaoNing, 116024
China

Yi Tan

Dalian University of Technology ( email )

Huiying Rd
DaLian, LiaoNing, 116024
China

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