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The probabilistic S N curves were also extended to super-long life regime.
Extended probabilistic S N curves were lower than fatigue limits in super-long life regime.
Fatigue tests were conducted in a long life regime by using an ultrasonic fatigue testing machine.
However, in the long life regime (>106 cycles), crack initiation became significant.
The PUR system uses an applied pre-stress force to reduce the mean stress level (and stress ratio) to shift an existing fatigue-susceptible metallic detail from the 'at risk' finite life regime to the 'safe' infinite life regime.
Based on the life distribution model and Basquin's equation, probabilistic S N curves in middle-long life regime were obtained.
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And everyone will have different chances of surviving their own particular life regimes.
Failure mechanisms in different life regimes and the effects of heat treatment and surface finish were also evaluated.
An overview of critical variables that affect fatigue failure with respect to steel components in ultralong life regimes is presented.
The model was used to determine Young's modulus, pre-stress level and dimensions of the CFRP laminates such that the metallic detail is shifted from a 'finite-life' regime to the 'infinite-life' regime.
In addition, tension-compression fatigue testing at room temperature revealed that these steels show no noticeable degradation in fatigue strengths in hydrogen gas, especially in the relatively long-life regime.
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