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首页> 外文期刊>Journal of Vibration and Acoustics >Using Ambient Vibrations to Detect Loosening of a Composite-to-Metal Bolted Joint in the Presence of Strong Temperature Fluctuations
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Using Ambient Vibrations to Detect Loosening of a Composite-to-Metal Bolted Joint in the Presence of Strong Temperature Fluctuations

机译:使用环境振动检测在温度波动较大的情况下复合材料到金属螺栓连接的松动

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摘要

We present an approach for detecting damage-induced nonlinearities in structures. The method first involves the creation of surrogate data sets conforming to an appropriate null hypothesis (no damage). The second step is to then compare some nonlinear "feature " extracted from the original data to those extracted from the surrogates. Statistically significant differences suggest evidence in favor of the alternative hypothesis, damage. Using this approach we show how loose connections can be detected using ambient "wave" forcing, conforming to the Pierson-Moskowitz distribution, as the source of excitation. We also demonstrate the ability of this technique to operate without a recorded baseline data set and in the presence of widely varying temperatures. The structure in this case is a thick, composite beam bolted to a steel frame. Data are collected using an optical strain sensing system. For this experiment we are able to reliably detect the presence of a loosened bolt.
机译:我们提出了一种检测结构中损伤引起的非线性的方法。该方法首先涉及创建符合适当零假设(无损坏)的替代数据集。第二步是然后比较从原始数据中提取的某些非线性“特征”与从替代物中提取的那些“特征”。统计上的显着差异表明,证据支持另一种假设,即损害。使用这种方法,我们展示了如何使用符合“ Pierson-Moskowitz”分布的环境“波”强迫作为激励源来检测松动的连接。我们还证明了该技术无需记录基线数据集并且在温度变化很大的情况下运行的能力。在这种情况下,结构是用螺栓固定在钢框架上的厚复合梁。使用光学应变感测系统收集数据。对于此实验,我们能够可靠地检测到螺栓松动的情况。

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