Estimating and tracking crack growth dynamics is essential for fatigue failure prediction. A new experimental system— coupling structural and crack growth dynamics—was used to show fatigue damage accumulation is different under chaotic (i.e., deterministic) and stochastic (i.e., random) loading, even when both excitations possess the same spectral and statistical signatures. Furthermore, the conven-tional rain-flow counting method considerably overestimates damage in case of chaotic forcing. Important nonlinear loading characteristics, which can explain the observed discrepancies, are identified and suggested to be included as loading parameters in new macroscopic fatigue models
The rainflow counting algorithm for material fatigue is both simple to implement and extraordinarily...
In an earlier research, experimental evidence was given on the ability to use Piezo Wafer Active Sen...
International audienceThis chapter focuses on piecewise‐deterministic models for fatigue crack propa...
Estimating and tracking crack growth dynamics is essential for fatigue failure prediction. A new exp...
Predicting fatigue life is still an unresolved challenge in engineering practice. One of the problem...
Predicting fatigue life is still an unresolved challenge in engineering practice. One of the problem...
The problem of estimating the fatigue damage in randomly vibrating structures with uncertain paramet...
Fatigue crack propagation is a stochastic phenomenon due to the inherent uncertainties originating f...
A novel fatigue testing apparatus, its design, testing, and dynamical characterization are described...
The coupling of vibration and fatigue crack growth in a simply supported uniform Euler–Bernoulli bea...
International audienceAbstract In this paper probabilistic analysis of a fatigue crack growth proces...
An equivalent constant amplitude fatigue loading (Miner's stress) is developed for stationary random...
Efficient methods are described here to predict the stochastic accumulation of fatigue damage due to...
The basic goal of this study is to find an alternate, more efficient method of simulating stochastic...
Fatigue damage due to random stress histories is typically estimated by either Rainflow range counti...
The rainflow counting algorithm for material fatigue is both simple to implement and extraordinarily...
In an earlier research, experimental evidence was given on the ability to use Piezo Wafer Active Sen...
International audienceThis chapter focuses on piecewise‐deterministic models for fatigue crack propa...
Estimating and tracking crack growth dynamics is essential for fatigue failure prediction. A new exp...
Predicting fatigue life is still an unresolved challenge in engineering practice. One of the problem...
Predicting fatigue life is still an unresolved challenge in engineering practice. One of the problem...
The problem of estimating the fatigue damage in randomly vibrating structures with uncertain paramet...
Fatigue crack propagation is a stochastic phenomenon due to the inherent uncertainties originating f...
A novel fatigue testing apparatus, its design, testing, and dynamical characterization are described...
The coupling of vibration and fatigue crack growth in a simply supported uniform Euler–Bernoulli bea...
International audienceAbstract In this paper probabilistic analysis of a fatigue crack growth proces...
An equivalent constant amplitude fatigue loading (Miner's stress) is developed for stationary random...
Efficient methods are described here to predict the stochastic accumulation of fatigue damage due to...
The basic goal of this study is to find an alternate, more efficient method of simulating stochastic...
Fatigue damage due to random stress histories is typically estimated by either Rainflow range counti...
The rainflow counting algorithm for material fatigue is both simple to implement and extraordinarily...
In an earlier research, experimental evidence was given on the ability to use Piezo Wafer Active Sen...
International audienceThis chapter focuses on piecewise‐deterministic models for fatigue crack propa...