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Oxygen-Enhanced Crack Growth

and Wei, R. P., Precipitation of Intragranular M23C6 Carbides in a Nickel Alloy Morphology and Crystallographic Feature, Scripta Met. et Mater., 30, 8 (1994), 1009-1014. [Pg.203]

Valerio, P., and Wei, R. P., Surface Enrichment and Grain Boundary Segregation of Niobium in Inconel 718 Single-and Poly-Crystals, Scripta Metall. et Materialia, 31, 3 (1994), 345-350. [Pg.203]

and Wei, R. P., Niobium Enrichment and Environmental Enhancement of Creep Crack Growth in Nickel-Base Superalloys, Scripta Metall. et Mater., 32, 8 (1995), 1169-1174. [Pg.203]


Oxygen-Enhanced Crack Growth in Nickel-Based Superalloys... [Pg.143]

Figure 8.34. Estimated dependence of oxygen-enhanced crack growth rates on y volnme fraction in y -strength-ened nickel-base alloys [37]. Figure 8.34. Estimated dependence of oxygen-enhanced crack growth rates on y volnme fraction in y -strength-ened nickel-base alloys [37].
Huang, Z. F., Oxygen Enhanced Crack Growth in Nickel-based Superalloys, Ph.D. Dissertation, Lehigh University (2002). [Pg.157]

Miller, C. F., Simmons, G. W., and Wei, R. P., Evidence for Internal Oxidation During Oxygen Enhanced Crack Growth in P/M Ni-based Superalloys, Scripta Materialia 48 (2003), 103-108. [Pg.204]


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Oxygen-Enhanced Crack Growth in Nickel-Based Superalloys

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