Figure A1. The quasi-cleavages, which are characteristics of fatigue
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Illustration of the fatigue crack propagation mechanism in ductile and
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Hydrogen embrittlement studies of hot-stamped boron steel with different prior austenite grain sizes
Characteristics and micromechanisms of fish-eye crack initiation of a Ti-6Al-4V alloy in very high cycle fatigue regime - ScienceDirect
The fatigue crack growth behavior of hydrogenated 9Cr‐1Mo steel: An experimental and numerical study - Bharati - Fatigue & Fracture of Engineering Materials & Structures - Wiley Online Library
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Characteristics and micromechanisms of fish-eye crack initiation of a Ti-6Al-4V alloy in very high cycle fatigue regime - ScienceDirect
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The fatigue crack growth behavior of hydrogenated 9Cr‐1Mo steel: An experimental and numerical study - Bharati - Fatigue & Fracture of Engineering Materials & Structures - Wiley Online Library
Influence of Hold Time on Dwell Fatigue Behavior in IMI834 Disc Forging
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Crack initiation mechanisms and life prediction of GH4169 superalloy in the high cycle and very high cycle fatigue regime - ScienceDirect
Deformation mechanism of various Sn-xBi alloys under tensile tests