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Across the Picket Fence: Influence of Sampling Frequency in Automatic Impact Modal Testing

机译:穿过拾液围栏:采样频率在自动影响模态测试中的影响

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Automatic impact modal testing is a technique gaining momentum in recent years thanks to the popularization of Scanning Laser Doppler Vibrometry. These systems allow automatizing the output measurement of thousands of degrees of freedom in a short time. The use of automatic impact modal hammers allows automatizing the excitation input and broadband excitation without loading a structure with an extra mass or other drawbacks. However, the impact force repeatability is a prominent concern among test engineers, especially those who work with materials with non-proportional force/response ratios. Assessing the impact force repeatability of a given automatic modal hammer or test rig is necessary in order to ensure the right response level is measured impact after impact. The assessment procedure can be misleading if not done right. Studying the automatic modal hammer repeatability under typical modal test conditions invariably leads to impact signals strongly distorted by the so called picket fence effect. This results in impacts sampled by only 3-4 data points; insufficient to accurately describe the actual impact force signals and the short contact times between hammer tip and structure. In the reality, the impacts are of larger magnitudes and shorter contact times than what is shown by the analyzer in typical test conditions. This work studies the influence of the sampling frequency and the test structures used on the repeatability assessment of automatic impact modal hammers. Impact force signals are acquired in this work with enough resolution to eliminate the picket fence effect and truly evaluate how repeatable and reproducible automatic impacts are. The practicality of the procedure, which involves very large datasets and long testing times, is discussed. Guidelines are offered at the end of the paper for a successful repeatability and reproducibility assessment of automatic impact modal hammers.
机译:自动影响模态测试是近年来近年来动力的技术,这归功于扫描激光多普勒振动器的推广。这些系统允许在短时间内自动化数千度自由度的输出测量。使用自动撞击模态锤允许自动化激励输入和宽带励磁,而无需装载具有额外质量或其他缺点的结构。然而,影响力重复性是测试工程师之间的突出问题,特别是那些与非比例力/响应比的材料一起使用的人。评估给定的自动模锤或试验台的冲击力可重复性是必要的,以确保在撞击后测量右响应水平。如果没有正确,评估程序可能是误导性的。在典型的模态测试条件下,研究自动模态锤可重复性总是导致冲击信号通过所谓的栅栏围栏效应强烈扭曲。这导致仅采取3-4个数据点的影响;不足以准确地描述实际的冲击力信号和锤子尖端和结构之间的短接触时间。在现实中,影响的幅度较大,接触时间短于分析仪在典型测试条件下所示的时间。这项工作研究采样频率的影响和对自动撞击模晶型重复性评估的测试结构。在这项工作中获取冲击力信号,具有足够的分辨率以消除拾音器围栏效果,并真正评估如何可重复和可重复的自动影响。讨论了涉及非常大的数据集和长测试时间的程序的实用性。在本文末尾提供的指南,以实现自动影响模锤的成功可重复性和可重复性评估。

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