期刊
INTERNATIONAL JOURNAL OF FRACTURE
卷 235, 期 2, 页码 179-195出版社
SPRINGER
DOI: 10.1007/s10704-022-00624-4
关键词
Fatigue crack-growth; Uncertainty quantification; Material scattering; Variability; Damage tolerance; Life prediction; Stochastic
This study presents a robust stochastic framework for predicting fatigue crack growth in a round bar. By considering multiple sources of uncertainty, the lifespan distribution for the bar is derived, covering the uncertainties typically encountered in structural integrity assessments. The sensitivity analysis of input variables provides insights into their influences on life predictions.
The reliability of the damage tolerance approach to engineering design is affected by numerous sources of uncertainty that can lead to unsafe predictions, in turn jeopardizing the safety of structures. This work presents a robust stochastic framework for fatigue crack-growth predictions applied to a round bar under tension-compression loading conditions. Multi-source uncertainties were taken into account to derive the lifespan distribution for the bar in such a way to cover the uncertainties typically appearing in a structural integrity assessment. The sensitivity of each input variable was obtained and the influences of variables on the life predictions were derived and ranked accordingly.
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