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NASA NTRS · Conference Paper
Constitutive modelling of single crystal and directionally solidified superalloys
Attribution
This is the abstract and citation. Full text lives at NASA NTRS — we link out rather than host. All credit to the authors and Legacy CDMS.
Abstract
Verbatim from NASA NTRS. Not paraphrased, not summarized.
The trend towards improved engine efficiency and durability places increasing demands on materials that operate in the hot section of the gas turbine engine. These demands are being met by new coatings and materials such as single crystal and directionally solidified nickel-base superalloys which have greater creep/fatigue resistance at elevated temperatures and reduced susceptibility to grain boundary creep, corrosion and oxidation than conventionally cast alloys. Work carried out as part of a research program aimed at the development of constitutive equations to describe the elevated temperature stress-strain-time behavior of single crystal and directionally solidified turbine blade superalloys is discussed. The program involves both development of suitable constitutive models and their verification through elevated temperature tension-torsion testing of single crystals of PWA 1480.
Authors
- Jordan, E. H. Connecticut Univ.
- Walker, K. P. Engineering Science Software, Inc., Smithfield
Citation: Jordan, E. H., Walker, K. P. (2019). Constitutive modelling of single crystal and directionally solidified superalloys. Legacy CDMS. NASA NTRS ID 19890003541. https://ntrs.nasa.gov/citations/19890003541 ↗