作者
Andrew J Detor, Richard DiDomizio, Reza Sharghi-Moshtaghin, Ning Zhou, Rongpei Shi, Yunzhi Wang, Donald P McAllister, Michael J Mills
发表日期
2018/3
期刊
Metallurgical and Materials Transactions A
卷号
49
页码范围
708-717
出版商
Springer US
简介
Next-generation gas turbines will require disk materials capable of operating at 923 K (650 °C) and above to achieve efficiencies well beyond today’s 62 pct benchmark. This temperature requirement marks a critical turning point in materials selection. Current turbine disk alloys, such as 706 and 718, are limited by the stability of their major strengthening phase, γ′′, which coarsens rapidly beyond 923 K (650 °C) resulting in significant degradation in properties. More capable γ′ strengthened superalloys, such as those used in jet engine disks, are also limited due to the sheer size of gas turbine hardware; the γ′ phase overages during the slow cooling rates inherent in processing thick-section parts. In the present work, we address this fundamental gap in available superalloy materials. Through careful control of Al, Ti, and Nb levels, we show that fine (<100 nm) γ′ and compact γ′/γ′′ coprecipitate …
引用总数
2018201920202021202220232024581299155
学术搜索中的文章
AJ Detor, R DiDomizio, R Sharghi-Moshtaghin, N Zhou… - Metallurgical and Materials Transactions A, 2018