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A robust signal processing method for quantitative high-cycle fatigue crack monitoring using soft elastomeric capacitor sensors

机译:使用软弹性电容器传感器进行定量高周疲劳裂纹监测的可靠信号处理方法

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摘要

A large-area electronics (LAE) strain sensor, termed soft elastomeric capacitor (SEC), has shown great promise in fatigue crack monitoring. The SEC is capable to monitor strain changes over a large structural surface and undergo large deformations under cracking. Previous tests verified that the SEC can detect and localize fatigue cracks under low-cycle fatigue loading. In this paper, we further investigate the SEC's capability for monitoring high-cycle fatigue cracks, which are commonly seen in steel bridges. The peak-to-peak amplitude (pk-pk amplitude) of the SEC measurement is proposed as an indicator of crack growth. This technique is is robust and insensitive to long-term capacitance drift. To overcome the difficulty of identifying the pk-pk amplitude in time series due to high signal-to-noise ratio, a signal processing method is established. This method converts the measured SEC capacitance and applied load to power spectral densities (PSD) in the frequency domain, such that the pk-pk amplitudes of the measurements can be accurately extracted. Finally, the performance of this method is validated using a fatigue test of a compact steel specimen equipped with a SEC. Results show that the crack growth under high-cycle fatigue loading can be successfully monitored using the proposed signal processing method.
机译:称为软弹性体电容器(SEC)的大面积电子设备(LAE)应变传感器在疲劳裂纹监测中显示出巨大的希望。 SEC能够监视较大结构表面上的应变变化,并在破裂下经受较大的变形。先前的测试证明,SEC可在低周期疲劳载荷下检测并定位疲劳裂纹。在本文中,我们将进一步研究SEC监测高周疲劳裂纹的能力,这在钢桥中很常见。 SEC测量的峰峰幅度(pk-pk幅度)被建议作为裂纹扩展的指标。该技术是鲁棒的,并且对长期电容漂移不敏感。为了克服由于高信噪比而在时间序列中识别pk-pk幅度的困难​​,建立了一种信号处理方法。该方法将测得的SEC电容和施加的负载转换为频域中的功率谱密度(PSD),从而可以精确提取测量的pk-pk幅度。最后,使用装有SEC的紧凑型钢试样的疲劳试验验证了该方法的性能。结果表明,使用所提出的信号处理方法可以成功地监测高周疲劳载荷下的裂纹扩展。

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