On the Use of Kurtosis Control Methods in Shaker Testing for Fatigue Damage

振动器 峰度 结构工程 材料科学 法律工程学 复合材料 数学 工程类 统计 声学 振动 物理
作者
Alexander Steinwolf,Bram Cornelis,Bart Peeters,Herman Van der Auweraer,Alessandro Rivola,Marco Troncossi
出处
期刊:Journal of Testing and Evaluation [ASTM International]
卷期号:48 (1): 20180149-20180149 被引量:3
标识
DOI:10.1520/jte20180149
摘要

Random vibration testing with increased kurtosis introduces high peaks into shaker drive signals to simulate land vehicle vibration more accurately and also to shorten the required test time. Two methods of controlling kurtosis by phase manipulation in the inverse fast Fourier transform were implemented, tested, and compared. The first method generates high-kurtosis excitations with a gradual, smooth pattern of peak heights from low to high, and the second method produces isolated high peaks with intervals of stable background vibration between them. When applying a kurtosis increase for accelerated fatigue damage testing, the kurtosis control method must be able to pass high-kurtosis values from the generated shaker table vibration into the stress response of the unit under test. However, this is not always the case, and only one of the considered methods was capable of doing so. In the article, the fatigue damage spectrum model was used for an evaluation of the time to failure. An experimental study was carried out using operational vibration measured in a car. Shaker testing of cantilever specimens was performed for Gaussian, non-Gaussian, and accelerated non-Gaussian excitations.

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