DocumentCode :
2030090
Title :
Ab-Initio Molecular Dynamics Simulations of Molten Ni-Based Superalloys
Author :
Asta, Mark ; Trinkle, Dallas ; Woodward, Christopher
Author_Institution :
Dept. of Chem. Eng. & Mater. Sci., California Univ., Davis, CA
fYear :
2006
fDate :
26-29 June 2006
Firstpage :
177
Lastpage :
181
Abstract :
In the casting of single-crystal turbine blades, the composition (c) and temperature (T) dependencies of the liquid-phase molar volume (V (c, T)) play a critical role in driving convective instabilities and the associated formation of solidification defects. In support of an effort aimed at the development of validated mathematical criteria for predicting the formation of solidification defects in Ni-based superalloys, ab-initio molecular dynamics (AIMD) simulations have been performed to calculate atomic volumes of Ni-Al-W melts. For elemental Ni and binary Ni-Al and Ni-W compositions, AIMD-calculated volumes agree to within 0.5-1.5% of recently measured values. For ternary Ni-Al-W melts, where direct experimental measurements are unavailable, AIMD results are in excellent agreement with the predictions of a proposed parametrization for V (c, T) in multicomponent superalloys. The results thus help to establish the accuracy of this proposed model in its application to the Ni-Al-W system
Keywords :
ab initio calculations; chemistry computing; molecular dynamics method; superalloys; Ni; Ni-Al; Ni-Al-W; Ni-W; ab-initio molecular dynamics simulations; atomic volumes; molten superalloys; multicomponent superalloys; Blades; Casting; Computational modeling; Force measurement; Materials science and technology; Permeability; Predictive models; Solid modeling; Temperature dependence; Turbines;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
HPCMP Users Group Conference, 2006
Conference_Location :
Denver, CO
Print_ISBN :
0-7695-2797-3
Type :
conf
DOI :
10.1109/HPCMP-UGC.2006.1
Filename :
4134051
Link To Document :
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