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    基于能谱分布的复合材料气瓶损伤模态声发射信号量化识别方法

    Quantitative identification method of acoustic emission signals for damage modes of composite gas cylinders based on energy spectrum distribution

    • 摘要: 针对复合材料气瓶典型损伤信号特征各异、难以区分的问题,对预制缺陷的复合材料Ⅲ型气瓶进行水压试验的声发射监测分析。首先,划分复合材料Ⅲ型气瓶损伤阶段,提取典型损伤信号;然后以提取到的损伤信号为对象,统计声发射特征参量范围;最后,通过连续小波变换及小波包分解,绘制小波包能量分布直方图,定义多频段能量占比特征参数P1P2,分析基体开裂信号SK、纤维断裂信号SD的频段占比规律。试验结果表明,小波包能量谱的分布规律能较好表征复合材料Ⅲ型气瓶的损伤类型,当信号满足P1>0.73、P2<0.10时,损伤信号为SK信号;信号满足P1<0.27、P2>0.42时,损伤信号为SD信号。结论可为复合材料气瓶安全检测提供参考。

       

      Abstract: Analysis were conducted on acoustic emission monitoring of water pressure test for composite material type Ⅲ gas cylinders with prefabricated defects, addressing the problem of different and difficult to distinguish typical damage signal characteristics of composite material gas cylinders. Firstly, the damage stages of composite material type Ⅲ gas cylinders were divided and typical damage signals were extracted. Taking the extracted damage signal as the object, the range of acoustic emission characteristic parameters was statistically analyzed; By using continuous wavelet transform and wavelet packet decomposition, a histogram of the energy distribution of wavelet packets was drawn, and the characteristic parameters P1 of multi frequency band energy proportion P2 was defined, the proportion of SK frequency band for matrix cracking signal and SD frequency band for fiber fracture signal were analyzed. Experimental results showed that the distribution pattern of wavelet packet energy spectrum could better characterize the damage type of composite material type Ⅲ gas cylinders. When the signal satisfied P1>0.73 and P2<0.10, the damage signal was SK signal. When the damage signal satisfied P1<0.27 and P2>0.42, the damage signal was an SD signal. The results could provide certain reference value for the safety inspection of composite gas cylinders.

       

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