The fatigue behavior of a C70250 alloy has been studied. The crack propagation behavior was investigated by performing fatigue crack propagation tests at load ratio R varying over the range 0.3–0.7. A considerable crack deflection and jagging was observed at low R-ratio. The study of the crack paths revealed that the closure effect is more relevant for R = 0.3. In this case the crack path is characterized by considerable peak heights and deflection angles and the closure effect is mainly related to the fracture surface mismatch. The main crack propagation micro-mechanisms observed are transgranular with few areas characterized by intergranular fracture.

Fatigue crack propagation in a C70250 alloy / Brotzu, A.; Di Cocco, V.; Felli, F.; Iacoviello, F.; Pilone, D.. - In: INTERNATIONAL JOURNAL OF FATIGUE. - ISSN 0142-1123. - 153:(2021). [10.1016/j.ijfatigue.2021.106499]

Fatigue crack propagation in a C70250 alloy

Brotzu A.;Felli F.;Pilone D.
2021

Abstract

The fatigue behavior of a C70250 alloy has been studied. The crack propagation behavior was investigated by performing fatigue crack propagation tests at load ratio R varying over the range 0.3–0.7. A considerable crack deflection and jagging was observed at low R-ratio. The study of the crack paths revealed that the closure effect is more relevant for R = 0.3. In this case the crack path is characterized by considerable peak heights and deflection angles and the closure effect is mainly related to the fracture surface mismatch. The main crack propagation micro-mechanisms observed are transgranular with few areas characterized by intergranular fracture.
2021
C70250 Cu alloy; crack closure; crack propagation; fatigue behavior
01 Pubblicazione su rivista::01a Articolo in rivista
Fatigue crack propagation in a C70250 alloy / Brotzu, A.; Di Cocco, V.; Felli, F.; Iacoviello, F.; Pilone, D.. - In: INTERNATIONAL JOURNAL OF FATIGUE. - ISSN 0142-1123. - 153:(2021). [10.1016/j.ijfatigue.2021.106499]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/1566948
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