Effects of B and Ce Grain Boundary Segregation on Precipitates in Super Austenitic Stainless Steel

Author:

Yang Song1,Ma Jinyao12,Chen Chao1ORCID,Zhang Caili1,Ren Junyu1,Jiang Zhouhua3,Fan Guangwei2,Han Peide1

Affiliation:

1. College of Materials Science and Engineering, Taiyuan University of Technology, Taiyuan 030024, China

2. Technical Center of Taiyuan Iron and Steel (Group) Company Ltd., Taiyuan 030024, China

3. School of Metallurgy, Northeastern University, Shenyang 110167, China

Abstract

In order to reduce the segregation of Cr and Mo and inhibit the precipitates, we added a small amount of B and Ce to traditional S31254 steel. Using an air-cooling and low-temperature diffusion treatment, the purpose was to control B and Ce at the grain boundary. The heat-treatment process could prompt co-segregation of B, precipitate-forming elements, and Ce at the grain boundary at 950 °C. After aging at 950 °C for different amounts of time, the diffusion treatment had an obvious inhibitory effect on the precipitates that caused them to become discontinuous, fine, and serrated. The B-containing serrated precipitates were only rich in Mo, while Cr was homogeneously distributed in the probed volume. A uniform distribution of Cr reduced the Cr-depleted zone in the area adjacent to the phase interface. Ce was observed to be segregated at the grain boundary. This showed that Ce could inhibit the formation of precipitates at the grain boundary. The serrated precipitates had an obvious resistance to intergranular corrosion.

Funder

National Natural Science Foundation of China

Publisher

MDPI AG

Subject

General Materials Science,Metals and Alloys

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