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The effect of phase angle on crack growth mechanisms under thermo-mechanical fatigue loading

Jonathan Jones, Mark Whittaker, R.J. Lancaster, Christopher Hyde, James Rouse, Benedikt Engel, S. Pattison, Svjetlana Stekovic, C. M. Jackson, H. Y. Li

2020International Journal of Fatigue33 citationsDOIOpen Access PDF

Topics & Concepts

SuperalloyFractographyMaterials scienceParis' lawIntergranular corrosionPhase (matter)MetallurgyComposite materialIntergranular fracturePhase angle (astronomy)Transgranular fractureMicrostructureCrack closureFracture mechanicsChemistryOrganic chemistryPhysicsAstronomyFatigue and fracture mechanicsHigh Temperature Alloys and CreepHigh-Velocity Impact and Material Behavior
The effect of phase angle on crack growth mechanisms under thermo-mechanical fatigue loading | Litcius