Harmonic Equivalence of the Impulse Loads in Vibration Fatigue

Primož Ogrinec, J. Slavič, M. Boltežar
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引用次数: 4

Abstract

In vibration fatigue, three unique types of loads are typical: random, harmonic and impulse. In an application any of these loads are possible. A fatigue-life analysis is possible in the time and frequency domains using the frequency-response function of a structure. Recent studies demonstrated that the impulse loads influence the accuracy of a fatigue-life prediction in the frequency domain. The focus of this research is a theoretical study of an equivalent harmonic load to the impulse load on a single-degree-of-freedom system in order to investigate the feasibility of impulse loads in vibration testing. This research shows that there is a relationship between the impulse and harmonic loads that is related to the underlying dynamic properties (e.g., damping, natural frequency). Based on a theoretical analysis an experimental procedure was developed for both cases of excitation, which was able to confirm the theoretical analysis. Using the modal decomposition the single-degree-of-freedom approach can be generalized to multiple-degrees-of-freedom systems.
振动疲劳冲击载荷的谐波等效性
在振动疲劳中,有三种独特的载荷类型:随机载荷、谐波载荷和脉冲载荷。在应用程序中,任何一种负载都是可能的。利用结构的频响函数,可以在时域和频域进行疲劳寿命分析。近年来的研究表明,冲击载荷影响频率域疲劳寿命预测的准确性。为了探讨冲击载荷在单自由度系统振动测试中的可行性,本研究的重点是对冲击载荷在单自由度系统振动测试中的等效谐波载荷进行理论研究。这项研究表明,脉冲和谐波载荷之间存在着一种关系,这种关系与潜在的动态特性(例如,阻尼、固有频率)有关。在理论分析的基础上,提出了两种激励的实验方法,验证了理论分析的正确性。利用模态分解,单自由度方法可以推广到多自由度系统。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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