International Journal of Fatigue · 2021 · 17 citations · 28 references
EngineeringMechanical EngineeringFatigue Crack GrowthDynamic Crack PropagationDamage MechanismMicrostructure-strength RelationshipInspection IntervalsLaser PowderMaterials SciencePowder MetallurgyPart-through CracksCritical Aerospace PartsStructural Health MonitoringSolid MechanicsLow-cycle FatigueMicrostructureCrack FormationDamage EvolutionMechanics Of MaterialsFracture Mechanics
Critical aerospace parts require damage tolerance analysis to determine the inspection intervals in-service. Such analyses, based on linear fracture mechanics, require that the fatigue crack growth (FCG) rate relation to the stress intensity factor range is applicable independent of geometry and stress. FCG rates for laser powder bed fusion Ti6Al4V material for conventional compact tension (CT) specimens have therefore been compared to FCG rates for specimens with a crack configuration more technically relevant from an industrial and engineering perspective. The FCG rates corresponded very well and data obtained with CT-specimens can therefore be considered relevant for general damage tolerance predictions.
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Stefan Leuders, M. Thöne, Andre Riemer et al. · International Journal of Fatigue · 2012 · 1.4K citations
Materials Science, Materials Engineering, Advanced Laser Processing +11