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- Title
Mean‐stress sensitivity of an ultrahigh‐strength steel under uniaxial and torsional high and very high cycle fatigue loading.
- Authors
Schönbauer, Bernd M.; Ghosh, Sumit; Karr, Ulrike; Pallaspuro, Sakari; Kömi, Jukka; Frondelius, Tero; Mayer, Herwig
- Abstract
The influence of load ratio on the high and very high cycle fatigue (VHCF) strength of Ck45M steel processed by thermomechanical rolling integrated direct quenching was investigated. Ultrasonic fatigue tests were performed under uniaxial and torsional loading at load ratios of R = −1, 0.05, 0.3, and 0.5 with smooth specimens and specimens containing artificially introduced defects. Up to 2 × 105 cycles, failure originated from surface aluminate inclusions and pits under both loading conditions. The prevailing fracture mechanisms in the VHCF regime were interior crack initiation under uniaxial loading and surface shear crack initiation under torsional loading. The mean‐stress sensitivity and the fatigue strength were evaluated using fracture mechanics approaches. Equal fatigue limits for uniaxial and torsional loading were determined considering the size of crack initiating defects and the appropriate threshold condition for Mode‐I crack growth. Furthermore, the mean‐stress sensitivity is independent of loading condition and can be expressed by σwR=σwR=−1·1−R20.63 and τwR=τwR=−1·1−R20.63. Highlights: The uniaxial and torsional fatigue limit is equal for ultrahigh‐strength steels.The mean‐stress sensitivity is identical for uniaxial and torsional loading.The area‐parameter model predicts the fatigue limit in the presence of small defects.Ambient air is a chemically active environment for ultrahigh‐strength Ck45M steel.
- Subjects
HIGH cycle fatigue; TORSIONAL load; FATIGUE limit; FRACTURE mechanics; STEEL; SURFACE cracks; ULTRASONIC testing
- Publication
Fatigue & Fracture of Engineering Materials & Structures, 2022, Vol 45, Issue 11, p3361
- ISSN
8756-758X
- Publication type
Article
- DOI
10.1111/ffe.13767