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The primary goal of this study was to characterize the fretting fatigue crack initiation behavior in the presence of plasticity.
This study investigated the fretting fatigue crack initiation behavior of titanium alloy, Ti 6Al 4V.
Besides the cyclic elastoplastic characterization, the fatigue tests of smooth small size specimens allow the assessment of the fatigue crack initiation behavior of the materials.
The stress-state surrounding the dent is complicated and contributed to unusual fatigue crack initiation behavior in some GLARE variants.
The correlation between the microstructure and fatigue crack initiation behavior (in air and 0.9% NaCl solution) of ISO 5832-9 austainlesssteelless steel biomaterial was investigated.
Fatigue crack initiation behavior in duplex stainless steel was studied in the embrittled condition (aging at 475 °C for 100 h) by interrupting fatigue tests conducted at different Δσ/2 values, identifying the crack initiation sites and relating them to the crystallographic parameters obtained from electron back scattered diffraction scans.
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Starting from detected defect features, the fatigue behavior is studied numerically looking separately at the two fundamental phases, i.e. crack initiation and crack growth.
Stage V corresponds to crack initiation and propagation.
Fatigue crack initiation locations and minimum number of load cycles before failure initiation were determined.
It is shown that the crack growth has three phases, namely, cracking initiation, stable crack growth and unstable crack propagation.
Crack initiation and growth behavior are discussed.
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