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- W3094112811 endingPage "100762" @default.
- W3094112811 startingPage "100762" @default.
- W3094112811 abstract "A comprehensive review is conducted on the very high cycle (VHC) and gigacycle (GC) fatigue of fiber-reinforced composite materials. The main objective was to conduct a benchmarking survey of high-frequency fatigue test methods that have been introduced by different research groups for testing beyond 107 loading cycles. Therefore, test methods are classified into two major groups, i.e. axial and bending tests. Axial fatigue tests were performed whether by conventional servo-hydraulic or by ultrasonic testing machines. For bending tests, three approaches have been taken into account. Firstly, conducting cantilever bending fatigue tests using a shaker-based actuator. Secondly, testing by an ultrasonically actuated three-point bending test set-up, and finally, using an electro-dynamically actuated four-point bending test device. The measures that are taken to mitigate challenges of testing at high-frequencies are put forward. The effect of loading frequency and temperature rise on fatigue behavior is investigated. VHC fatigue damage mechanisms are scrutinized for different composite materials, layup configurations, and testing approaches. Considering the importance of modeling in the design stage, the models that have been developed so far for predicting fatigue behavior of composite materials in the VHC and GC fatigue regimes, are presented. Finally, by performing a gap analysis, new perspectives required to be investigated more deeply are nominated." @default.
- W3094112811 created "2020-10-29" @default.
- W3094112811 creator A5002780446 @default.
- W3094112811 creator A5012243773 @default.
- W3094112811 creator A5039132011 @default.
- W3094112811 creator A5090947085 @default.
- W3094112811 date "2021-05-01" @default.
- W3094112811 modified "2023-10-04" @default.
- W3094112811 title "Very high cycle and gigacycle fatigue of fiber-reinforced composites: A review on experimental approaches and fatigue damage mechanisms" @default.
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