Synergistic effect of microstructure and defects on the initiation of fatigue cracks in additively manufactured Inconel 718

[Display omitted] •Fatigue crack initiation is modeled by experimentally validated crystal plasticity.•Multiplying free slip distance and Schmid factor defines localization parameter (LP).•Persistent slip bands prefer to form at slip planes with highest LP in a grain.•Maximum LP in IN-718 correlates...

Ausführliche Beschreibung

Gespeichert in:
Bibliographische Detailangaben
Veröffentlicht in:International journal of fatigue 2022-09, Vol.162, p.107002, Article 107002
Hauptverfasser: Dodaran, Mohammad S., Muhammad, Muztahid, Shamsaei, Nima, Shao, Shuai
Format: Artikel
Sprache:eng
Schlagworte:
Online-Zugang:Volltext
Tags: Tag hinzufügen
Keine Tags, Fügen Sie den ersten Tag hinzu!
Beschreibung
Zusammenfassung:[Display omitted] •Fatigue crack initiation is modeled by experimentally validated crystal plasticity.•Multiplying free slip distance and Schmid factor defines localization parameter (LP).•Persistent slip bands prefer to form at slip planes with highest LP in a grain.•Maximum LP in IN-718 correlates well with both location and life of crack initiation.•Defects do not affect crack initiation unless they are large compared to grains. Fatigue cracks in additively manufactured (AMed) Inconel 718 (IN-718) in machined surface condition often initiate from persistent slip bands (PSBs) unlike other popular AM alloys such as 17-4 PH stainless steel or Ti-6Al-4V, where fatigue crack initiation is exclusively from volumetric defects; therefore, a competition between PSB- vs. defect- mediated crack initiation clearly exists. To shed light on the factors governing the competition, this study investigates the characteristics of cyclic strain localization, PSB formation, and crack initiation via crystal plasticity (CP) modeling of cyclic loading on polycrystalline aggregates which are then validated by experiments. A physics-based, free slip distance (FSD) dependent slip strength evolution law is proposed, which is shown to enable the CP model to simulate the heterogeneous strain distribution in IN-718. Implementing a crack initiation criterion based on strain contrast, the locations and lives for crack initiation can also be calculated. It is shown that both FSD and resolve shear stress influence the strain localization and crack initiation behaviors. The distribution of a localization parameter calculated based on the multiplication of FSD and Schmid factor within a grain is found to correlate well with the locations of PSBs. The maximum values of the localization parameters within a microstructure are shown to correlate well with the experimentally obtained crack initiation lives. The presence of volumetric defects in IN-718 generally do not impact strain localization behavior unless their size is large compared to the grain size.
ISSN:0142-1123
1879-3452
DOI:10.1016/j.ijfatigue.2022.107002