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An investigation of acoustic emission signal attenuation for monitoring of progressive failure in fiberglass reinforced composite laminates

机译:用于监测玻璃纤维增​​强复合材料层合板逐步破坏的声发射信号衰减的研究

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摘要

Glass fiber reinforced polymer (GFRP) laminates have a high damping characteristic which can retard ultra-high frequency guided wave signals from propagating along the plate. Owing to this, the identification of an effective area for sensor location is essential. Appropriate signal processing, including wavelet analysis was done, in order to observe the details of an acoustic emission (AE) signal which was emitted at a distance from it source. This study reveals that it is necessary to consider the near field and far field effects of AE signal attenuation, in particular, to determine a composite's micro failure characterization. Consequently, this attenuation behavior was used to develop the non-velocity based source mapping to monitor the progressive failure in composite laminates. This paper details the outcomes of the signal energy attenuation method with an improved algorithm for progressive failure monitoring in fiberglass reinforced composite laminates and the 'effective length' for better AE detection.
机译:玻璃纤维增​​强聚合物(GFRP)层压板具有很高的阻尼特性,可以抑制超高频导波信号沿板传播。因此,确定传感器位置的有效区域至关重要。为了观察声发射(AE)信号的细节,进行了适当的信号处理,包括小波分析,该声发射(AE)信号在距其源一定距离处发射。这项研究表明,有必要考虑AE信号衰减的近场和远场影响,尤其是确定复合材料的微失效特征。因此,该衰减行为用于开发基于非速度的源映射,以监视复合材料层压板中的渐进式破坏。本文详细介绍了信号能量衰减方法的结果,该方法采用改进的算法进行玻璃纤维增​​强复合材料层合板的渐进式故障监测,并提供“有效长度”以更好地检测AE。

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