A new frequency domain method for random fatigue life estimation in a wideband stationary Gaussian random process was proposed for application in fatigue analysis. Simulations of the power spectral densities of different types were firstly performed; the simulated results showed that the accuracy and applicability for the current frequency domain methods are not only related to the spectral type but also associated with the types of the analysed materials. Compared with the current methods, the proposed method, in which the rainflow amplitude obeys Nakagami distribution, has better universality and could significantly reduce the error for the random fatigue life estimation with simulated and actual spectra. Verified application in cast‐steel fatigue life analysis were performed between random fatigue life and constant amplitude fatigue life. It is shown that the fatigue life analysis under random load cannot be ignored and the proposed new method can serve as a recommended method.

A new frequency domain method for random fatigue life estimation in a wide-band stationary Gaussian random process / Han, Qinghua; Li, Jia; Xu, Jie; Ye, Fei; Carpinteri, Alberto; Lacidogna, Giuseppe. - In: FATIGUE & FRACTURE OF ENGINEERING MATERIALS & STRUCTURES. - ISSN 8756-758X. - STAMPA. - 42:1(2019), pp. 97-113. [10.1111/ffe.12875]

A new frequency domain method for random fatigue life estimation in a wide-band stationary Gaussian random process

Carpinteri, Alberto;Lacidogna, Giuseppe
2019

Abstract

A new frequency domain method for random fatigue life estimation in a wideband stationary Gaussian random process was proposed for application in fatigue analysis. Simulations of the power spectral densities of different types were firstly performed; the simulated results showed that the accuracy and applicability for the current frequency domain methods are not only related to the spectral type but also associated with the types of the analysed materials. Compared with the current methods, the proposed method, in which the rainflow amplitude obeys Nakagami distribution, has better universality and could significantly reduce the error for the random fatigue life estimation with simulated and actual spectra. Verified application in cast‐steel fatigue life analysis were performed between random fatigue life and constant amplitude fatigue life. It is shown that the fatigue life analysis under random load cannot be ignored and the proposed new method can serve as a recommended method.
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11583/2724322
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