ICME Design of a Castable, Creep-Resistant, Single-Crystal Turbine Alloy

被引:0
作者
Jiadong Gong
David Snyder
Thomas Kozmel
Chris Kern
James E. Saal
Ida Berglund
Jason Sebastian
Gregory Olson
机构
[1] QuesTek Innovations LLC,Department of Materials Science and Engineering
[2] Northwestern University,undefined
来源
JOM | 2017年 / 69卷
关键词
Integrate Computational Material Engineering; Coarsen Rate Constant; Integrate Computational Material Engineering; Integrate Computational Material Engineering Approach; Liquid Buoyancy;
D O I
暂无
中图分类号
学科分类号
摘要
To improve the efficiency of advanced power systems, integrated computational materials engineering (ICME) tools are being developed at QuesTek Innovations LLC for the design of high-performance alloys for gas turbine. In this article, we detail progress on the design of a low-Re, castable, creep-resistant, single-crystal Ni-based superalloy (QTSX). CALPHAD-based indicators for castability (liquid buoyancy) and creep resistance (γ′ coarsening rate constant) were simultaneously employed to predict an optimum alloy composition. Component-level QTSX trail castings have been fabricated, and characterization of the castings has demonstrated freckle-free solidification and creep resistance comparable to CMSX4 and ReneN5, which validates this accelerated ICME approach.
引用
收藏
页码:880 / 885
页数:5
相关论文
共 11 条
[1]  
Olson GB(1997)undefined Science 277 1237-undefined
[2]  
Olson GB(2014)undefined Scripta Mater. 70 25-undefined
[3]  
Kuehmann CJ(2010)undefined JOM 62 1-undefined
[4]  
Fink P(2009)undefined Mater. Sci. Technol. 25 213-undefined
[5]  
Miller J(1994)undefined Scripta Metall. Mater. 30 905-undefined
[6]  
Konitzer D(1996)undefined Metall. Mater. Trans. A 27 937-undefined
[7]  
Dyson BF(undefined)undefined undefined undefined undefined-undefined
[8]  
Morral JE(undefined)undefined undefined undefined undefined-undefined
[9]  
Purdy GR(undefined)undefined undefined undefined undefined-undefined
[10]  
Kuehmann C(undefined)undefined undefined undefined undefined-undefined