An investigation was conducted to describe topologically close packed (TCP) phase instability as a function of composition in the advanced Ni-base superalloy Rene N6. TCP phases are detrimental to overall high-temperature performance of Ni-base superalloys because of their brittle nature and because they deplete the Ni-rich matrix of potent solid solution strengthening elements. Thirty-four variations of polycrystalline Rene N6 determined from a design-of-experiments approach were cast and homogenized at 1315"C for 80 hours followed by exposure at 10930C for 400 hours to promote TCP formation. The alloys had the following composition ranges in atomic percent: Co 10.61 to 16.73%, Mo 0.32 to 1.34%, W 1.85 to 2.52%, Re 1.80 to 2.1 1 %, Ta 2.36...
Microstructural instability involving the formation of topologically close-packed (TCP) phases is re...
Microstructural instability involving the formation of topologically close-packed (TCP) phases is re...
Microstructural instability involving the formation of topologically close-packed (TCP) phases is re...
Topologically close packed (TCP) phase instability in third generation Ni-base superalloys is unders...
Nickel- (Ni-) base superalloy single crystals represent the state-of-the-art for turbine engine airf...
A previous study by Ritzert et al. on the formation and prediction of topologically closed packed (T...
The ability to quantify accurately the formation of topologically close-packed phases in nickel-base...
Superalloy design can prove to be a very complex and challenging task, as certain elemental addition...
Single crystal nickel-based superalloys are used in modern gas turbines because of their remarkable ...
The precipitation of topologically close-packed (TCP) phases in single-crystal superalloys is highly...
The precipitation of topologically close-packed (TCP) phases in single-crystal superalloys is highly...
ATI 718Plus® is a nickel-based superalloy developed to replace Inconel 718 in aero engines for stati...
Microstructural instability involving the formation of topologically close-packed (TCP) phases is re...
Topologically close packed (TCP) phases and their precipitation during service are commonly assumed ...
The high-temperature strength of Ni-base superalloys may be strongly improved by alloying with Re. O...
Microstructural instability involving the formation of topologically close-packed (TCP) phases is re...
Microstructural instability involving the formation of topologically close-packed (TCP) phases is re...
Microstructural instability involving the formation of topologically close-packed (TCP) phases is re...
Topologically close packed (TCP) phase instability in third generation Ni-base superalloys is unders...
Nickel- (Ni-) base superalloy single crystals represent the state-of-the-art for turbine engine airf...
A previous study by Ritzert et al. on the formation and prediction of topologically closed packed (T...
The ability to quantify accurately the formation of topologically close-packed phases in nickel-base...
Superalloy design can prove to be a very complex and challenging task, as certain elemental addition...
Single crystal nickel-based superalloys are used in modern gas turbines because of their remarkable ...
The precipitation of topologically close-packed (TCP) phases in single-crystal superalloys is highly...
The precipitation of topologically close-packed (TCP) phases in single-crystal superalloys is highly...
ATI 718Plus® is a nickel-based superalloy developed to replace Inconel 718 in aero engines for stati...
Microstructural instability involving the formation of topologically close-packed (TCP) phases is re...
Topologically close packed (TCP) phases and their precipitation during service are commonly assumed ...
The high-temperature strength of Ni-base superalloys may be strongly improved by alloying with Re. O...
Microstructural instability involving the formation of topologically close-packed (TCP) phases is re...
Microstructural instability involving the formation of topologically close-packed (TCP) phases is re...
Microstructural instability involving the formation of topologically close-packed (TCP) phases is re...