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An Efficient Experimental Methodology for the Assessment of the Dynamic Behaviour of Resilient Elements

机译:一种高效的实验方法用于评估弹性元素的动态行为

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摘要

The assessment of the dynamic behaviour of resilient elements can be performed using the indirect method as described in the standard ISO 10846-3. This paper presents a methodology for control the error on the estimation of the frequency response functions (FRF) required for the application of the indirect method when sweep sine excitation is used. Based on a simulation process, this methodology allows for the design of the sweep sine excitation parameters, i.e., the sweep rate and the force amplitude, to control three types of errors associated to the experimentally obtained FRF in the presence of background noise: a general error of the FRF in a selected frequency range, and the errors associated to the amplitude and the frequency of the FRF resonance peak. The signal processing method used can be also tested with this methodology. The methodology has been tested in the characterisation of two different resilient elements: an elastomer and a coil spring. The simulated error estimations has been found to be in good agreement with the errors found in the measured FRF. Furthermore, it is found that for large signal-to-noise ratios, both sweep rate and force amplitude significantly affect the FRF estimation error, while, for small signal-to-noise ratios, only the force amplitude can control the error efficiently. The current methodology is specially interesting for laboratory test rigs highly used for the dynamic characterisation of resilient elements which are required to operate efficiently, since it can be used for minimising test times and providing quality assurance. Moreover, the application of this methodology would be specially relevant when characterisation is done in noisy environments.
机译:可以使用如标准ISO 10846-3中所述的间接方法来执行弹性元件的动态行为的评估。本文介绍了一种控制在使用扫描正弦激励时应用间接方法所需的频率响应函数(FRF)所需的误差的方法。基于仿真过程,该方法允许设计扫描正弦激励参数,即扫描率和力幅度,以控制与实验上的FRF相关联的三种类型的误差在背景噪声的存在下:一般选择频率范围内的FRF误差,以及与FRF共振峰值的幅度和频率相关的误差。使用的信号处理方法也可以用这种方法测试。在两个不同的弹性元件的表征中测试了该方法:弹性体和螺旋弹簧。已发现模拟误差估计与测量的FRF中的错误很好。此外,发现对于大的信噪比,扫描率和力幅度都显着影响FRF估计误差,而对于小的信噪比,只有力幅度可以有效地控制误差。目前的方法专门对高度用于动态表征的实验室试验器,该方法是有效运行所需的弹性元件的动态特征,因为它可用于最小化测试时间并提供质量保证。此外,这种方法的应用在嘈杂环境中表征时会特别相关。

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