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Damage Detection in Compressed Natural Gas (CNG) Cylinders Based on Auxiliary Mass Induced Frequency Shift

机译:基于辅助质量感应移频的压缩天然气(CNG)气瓶损伤检测

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摘要

This paper proposes a new damage detection method for cylindrical shell structures based on the frequency shift induced by an auxiliary mass. The natural frequency of a cylindrical shell changes when an auxiliary mass is placed at different positions on its surface. In fact, when the auxiliary mass is approaching the damage resulting in a decrease of local stiffness, the natural frequencies will drop drastically. This is because the auxiliary mass increases the local mass. That is, the auxiliary mass can enhance the influence of the damage on the dynamic characteristics of the cylindrical shell, and therefore, it can be used to probe the damage by traversing it over the entire surface of the cylindrical shell. On the other hand, the sudden drop of natural frequencies induced by the auxiliary mass approaching the damage can be considered as an anomaly since the frequencies usually change smoothly under the assumption that intact cylindrical shell is homogeneous and smooth. To detect the anomaly, a new damage index is proposed based on the curvature of frequency shift, which only uses the information from the damaged cylindrical shell. The proposed method is then tested on a damaged CNG cylinder; it demonstrates that it is more accurate and sensitive compared to other traditional vibration based damage detection methods which depend on mode shape instead.
机译:提出了一种基于辅助质量引起的频移的圆柱壳结构损伤检测新方法。当辅助质量放置在其表面上的不同位置时,圆柱壳的固有频率会发生变化。实际上,当辅助质量接近损坏而导致局部刚度降低时,固有频率将急剧下降。这是因为辅助质量增加了局部质量。即,辅助质量可以增强损坏对圆柱壳的动态特性的影响,因此,可以通过在圆柱壳的整个表面上遍历辅助质量来检测损坏。另一方面,由于辅助质量接近损坏而引起的固有频率的突然下降可被认为是异常现象,因为在假定完整的圆柱壳均匀且光滑的前提下,频率通常会平滑变化。为了检测异常,基于频移的曲率提出了一种新的损伤指数,该指数仅使用来自受损圆柱壳的信息。然后在损坏的CNG气瓶上测试该方法。它表明,与其他传统的基于振型的基于振动的损伤检测方法相比,它更准确,更灵敏。

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