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Stochastic modeling of fatigue crack dynamics for on-line failure prognostics
150
Citations
14
References
1996
Year
EngineeringLife PredictionMechanical EngineeringFracture MechanicsDeterioration ModelingFatigue Crack DynamicsReliability EngineeringMechanicsReal-time ComputationSystems EngineeringService Life PredictionStructural Health MonitoringReliability PredictionLow-cycle FatigueStochastic ModelingReliability ModellingNonlinear Stochastic ModelPredictive MaintenanceStructural MechanicsMechanics Of MaterialsFailure Prediction
This paper presents a nonlinear stochastic model of fatigue crack dynamics for real-time computation of the time-dependent damage rate and accumulation in mechanical structures. The model configuration allows construction of a filter for estimation of the current damage state and prediction of the remaining service life based on the underlying principle of extended Kalman filtering instead of solving the Kolmogorov forward equation. This approach is suitable for online damage sensing, failure prognosis, life prediction, reliability analysis, decision-making for condition-based maintenance and operation planning, and life extending control in complex dynamical systems. The model results have been verified by comparison with experimentally generated statistical data of time-dependent fatigue cracks in specimens made of 2024-T3 aluminum alloy.
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