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首页> 外文期刊>NDT & E International: Independent Nondestructive Testing and Evaluation >Experimental study of guided wave propagation and damage detection in large diameter pipe filled by different fluids
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Experimental study of guided wave propagation and damage detection in large diameter pipe filled by different fluids

机译:不同流体填充大直径管道引导波传播和损伤检测的实验研究

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A series of experiments on damage detection of large-diameter (88 mm diameter) pipe with and without liquid by guided waves have been conducted. Two types of liquid as water and machine oil are chosen to fill in pipe for detecting the influence of filler. The influences of liquid types on guided wave propagation, dispersion and attenuation characteristics have also been studied. The mode conversion phenomenon of reflection waves exists regardless filling state of pipe, but it is most serious in water-filled pipe, and weakest in vacant pipe. The defect wave signal could be distinguished from converted wave mode by time-frequency analysis, and the time frequency distributions of the two type signals are different. The relationship between defect length and defect reflect signal strength is linear in vacant pipe and nonlinear in liquid-filled pipe. With the defect length increasing, the defect signals of liquid-filled pipe increase too, but the rate of increment are reduced.
机译:已经进行了一系列关于通过引导波的大直径(直径88毫米)管道的损坏检测的实验。 选择两种类型的液体作为水和机油,以填充管道以检测填料的影响。 还研究了液体类型对引导波传播,分散和衰减特性的影响。 反射波的模式转换现象存在无论填充管道状态,但它在充水管中最严重,空气管道最弱。 可以通过时频分析将缺陷波信号与转换波模式区分开,并且两种类型信号的时间频率分布不同。 缺陷长度与缺陷反射信号强度之间的关系是空置管中空气管中的线性和液体填充管中的非线性。 随着缺陷长度的增加,液体填充管道的缺陷信号也增加,但增量速率降低。

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