Local Corrosion Behaviors in the Coarse-Grained Heat-Affected Zone in a Newly Developed Zr–Ti–Al–RE Deoxidized High-Strength Low-Alloy Steel

Author:

Yin Chao-Chao,Cheng Lin,Wang Zhi-Hui,Zhao Tian-LiangORCID,Cheng Shi,Hu Shu-E,Liu Zi-Cheng,Luo Deng,Xiao Da-Heng,Jin Xing,Liu Han-Kun,Wu Kai-Ming

Abstract

Oxide metallurgy technology can improve the microstructure of a coarse-grained heat-affected zone (CGHAZ) but introduces extra inclusions. Local corrosion behavior of the CGHAZ of a Zr–Ti–Al–RE deoxidized steel was investigated in this work using theoretical calculations and experimental verification. The modified inclusions have a (Zr–Mg–Al–Ca–RE)Ox core claded by a CaS and TiN shell. CaS dissolves first, followed by the oxide core, leaving TiN parts. This confirms that the addition of rare earth can reduce lattice distortion and prevent a galvanic couple between the inclusions and the matrix, while the chemical dissolution of CaS causes localized acidification, resulting in the pitting corrosion initiation.

Funder

National Natural Science Foundation of China

Taishan Industry Leading Talent Project

111 Project

Publisher

MDPI AG

Subject

General Materials Science

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