Modal driven load tailoring for efficient vibration fatigue assessment on non-stationary processes: A versatile approach exploiting the Fatigue Damage Spectrum
Author(s):
G. Curti, T. Dengler, M. Palmieri, A. Trapp, P. Wolfsteiner, F. Cianetti, K. Schneider
10.48447/VAL5-2024-045
VAL5 - Fifth International Conference on Material and Component Performance under Variable Amplitude Loading
2024
conference paper (PDF)
English
random vibration loading,non stationary loading,mission syntesis,fatigue damage spectrum,modal decomposition
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Modal driven load tailoring for efficient vibration fatigue assessment on non-stationary processes: A versatile approach exploiting the Fatigue Damage Spectrum
G. Curti, T. Dengler, M. Palmieri, A. Trapp, P. Wolfsteiner, F. Cianetti, K. Schneider
10.48447/VAL5-2024-045
VAL5 - Fifth International Conference on Material and Component Performance under Variable Amplitude Loading
2024
Publication type:
conference paper (PDF)
English
random vibration loading,non stationary loading,mission syntesis,fatigue damage spectrum,modal decomposition
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