DDM requires Intel MPI library being installed on the machine. For each instance, SMP can be used in order to calculate the solution for this domain on several cores.
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Pettit, Oxidation of Ni-Cr-Al Alloys Between 10 ☌, J. Colas, High Temperature Oxidation of the Haynes 282© Nickel-Based Superalloy, Oxid. Young, High Temperature Oxidation and Corrosion of Metals, Elsevier, Oxford, 2008į.A. Pettit, Introduction to the High-Temperature Oxidation of Metals, Cambridge University Press, Cambridge, 2006ĭ.J. Reed et al., Oxidation and Coating Evolution in Aluminized Fourth Generation Blade, in The Minerals, Metals & Materials Society, pp.
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Thakur, Microstructural Responses of a Nickel-Base Cast IN-738 Superalloy to a Variety of Pre-weld Heat-Treatments. Reed, The Superalloys: Fundamentals and Applications, Cambridge University Press, Cambridge, 2006Ī. Therefore, the results suggest that the presence of high amounts of titanium (~3.44 wt.%) in IN738LC increased the oxidation kinetics by increasing the chromium scale growth rate and resulting in an oxidation rate constant of 2.79 × 10 −6 mg 2 cm −4 s −1. A JMatPro thermodynamic analysis showed that an increase in titanium content from 1 to 3.44 wt.% increased the chromium activity by 50%. The depletion of gamma prime ( γ′) phase leads to a precipitate-free zone formation in the subscale zone. In addition, the formation of a spinel composition adjacent to the external layer and a discontinuous needle-shaped alumina scale in the alloy subsurface zone were also observed. The oxidized samples were characterized using SEM and SEM/EDS, and the results show that the alloy is comprised of an outer dense chromia scale with titania proving Type II oxidation behavior. The results from the tests suggest that the alloy showed single-stage parabolic oxidation behavior during isothermal oxidation.
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The high-temperature isothermal oxidation behavior of the polycrystalline nickel-based superalloy IN738LC was investigated at 900 ☌ in air for up to 1000 h.