Gas phase embrittlement and the nucleation of creep cavities
Author:
Publisher
Elsevier BV
Subject
General Engineering
Reference17 articles.
1. Embrittlement of Engineering Alloys;Woodford,1983
2. The role of sulfur in the air embrittlement of nickel and its alloys
3. Grain Boundary Penetration of Oxygen in Nickel and the Effect of Boron Additions
4. The mechanism of cavity formation during high temperature oxidation of nickel
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1. Influence of local mechanical loading paths on the oxidation assisted crack initiation of alloy 718;Materials Science and Engineering: A;2012-01
2. Prediction of creep–fatigue crack growth rates in inert and active environments in an aluminium alloy;International Journal of Fatigue;2009-11
3. Oxygen enhanced crack growth in nickel-based superalloys and materials damage prognosis;Engineering Fracture Mechanics;2009-03
4. Influence of Interstitials Content on the Sensitivity of Alloy 718 to Oxidation Assisted Intergranular Fracture;Materials Science Forum;2008-09
5. Gas phase embrittlement and time dependent cracking of nickel based superalloys;Energy Materials;2006-03
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