Synergistic Effects of Boron and Rare Earth Elements on the Microstructure and Stress Rupture Properties in a Ni-Based Superalloy

Author:

Tian Qiang1,Huang Shuo1,Qin Heyong1,Duan Ran1,Wang Chong2,Lian Xintong3

Affiliation:

1. Central Iron and Steel Research Institute Co., Ltd., Beijing 100081, China

2. School of Materials Science and Engineering, Northeastern University, Shenyang 110819, China

3. School of Materials Science and Engineering, Shanghai University, Shanghai 200444, China

Abstract

The synergistic effects of boron (B) and rare earth (RE) elements on the microstructure and stress rupture properties were investigated in a Ni-based superalloy. The stress rupture lifetime at 650 °C/873 MPa significantly increased with the addition of B as a single element. Furthermore, the stress rupture lifetime reached its peak (303 h), with a certain amount of B and RE added together in test alloys. Although the grain size and morphology of the γ′ phase varied a little with the change in B and RE addition, they were not considered to be the main reasons for stress rupture performance. The enhancement in stress rupture lifetime was mostly attributed to the segregation of the B and RE elements, which increased the binding force of the grain boundary and improved its strength and plasticity. In addition, the enrichment of B and RE inhabited the precipitation of carbides along grain boundaries. Furthermore, nano-scale RE precipitates containing sulfur (S) and phosphorus (P) were observed to be distributed along the grain boundaries. The purification of grain boundaries by B and RE elements was favorable to further improve the stress rupture properties.

Funder

National Key Research and Development Program of China

Publisher

MDPI AG

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