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Effect of sudden load decrease on the fatigue crack growth in cold drawn prestressing steel
This paper analyzes the overload retardation effect (ORE) on the fatigue crack growth (FCG) of cold drawn prestressing steel when different loading sequences are used. The ORE is more intense for elevated load decrease or for low initial stress intensity factor (SIF) range ΔK0. A transient stage can be observed in the Paris curve (da/dN–ΔK) when the KmaxΔK value suddenly decreases, associated with the ORE and with the evolution of the plastic zone and compressive residual stresses near the crack tip. In tests with Kmax decrease, a small zone appears related to FCG initiation, with a fatigue fractography resembling the tearing topography surface (TTS) mode, and associated with a decrease of crack tip opening displacement (CTOD).
Effect of sudden load decrease on the fatigue crack growth in cold drawn prestressing steel
This paper analyzes the overload retardation effect (ORE) on the fatigue crack growth (FCG) of cold drawn prestressing steel when different loading sequences are used. The ORE is more intense for elevated load decrease or for low initial stress intensity factor (SIF) range ΔK0. A transient stage can be observed in the Paris curve (da/dN–ΔK) when the KmaxΔK value suddenly decreases, associated with the ORE and with the evolution of the plastic zone and compressive residual stresses near the crack tip. In tests with Kmax decrease, a small zone appears related to FCG initiation, with a fatigue fractography resembling the tearing topography surface (TTS) mode, and associated with a decrease of crack tip opening displacement (CTOD).
Effect of sudden load decrease on the fatigue crack growth in cold drawn prestressing steel
Toribio Quevedo, Jesús Andrés (Autor:in) / González Martín, Beatriz (Autor:in) / Matos Franco, Juan Carlos (Autor:in) / Ayaso Yáñez, Francisco Javier (Autor:in)
08.02.2017
doi:10.1016/j.ijfatigue.2015.01.007
Aufsatz (Zeitschrift)
Elektronische Ressource
Englisch
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