简介概要

Effect of boron addition on the microstructure and stress-rupture properties of directionally solidified superalloys

来源期刊:International Journal of Minerals Metallurgy and Materials2014年第11期

论文作者:Bao-ping Wu Lin-han Li Jian-xin Dong

文章页码:1120 - 1126

摘    要:This study is focused on the effect of boron addition, in the range of 0.0007wt% to 0.03wt%, on the microstructure and stress-rupture properties of a directionally solidified superalloy. With increasing boron content in the as-cast alloys, there is an increase in the fraction of the γ′/γ eutectic and block borides precipitate around the γ′/γ eutectic. At a high boron content of 0.03wt%, there is precipitation of lamellar borides. Upon heat treatment, fine block borides tend to precipitate at grain boundaries with increasing boron content. Overall, the rupture life of the directionally solidified superalloy is significantly improved with the addition of nominal content of boron. However, the rupture life decreases when the boron content exceeds 0.03wt%.

详情信息展示

Effect of boron addition on the microstructure and stress-rupture properties of directionally solidified superalloys

Bao-ping Wu1,2,Lin-han Li1,Jian-xin Dong1

1. School of Materials Science and Engineering, University of Science and Technology Beijing

摘 要:This study is focused on the effect of boron addition, in the range of 0.0007wt% to 0.03wt%, on the microstructure and stress-rupture properties of a directionally solidified superalloy. With increasing boron content in the as-cast alloys, there is an increase in the fraction of the γ′/γ eutectic and block borides precipitate around the γ′/γ eutectic. At a high boron content of 0.03wt%, there is precipitation of lamellar borides. Upon heat treatment, fine block borides tend to precipitate at grain boundaries with increasing boron content. Overall, the rupture life of the directionally solidified superalloy is significantly improved with the addition of nominal content of boron. However, the rupture life decreases when the boron content exceeds 0.03wt%.

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