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A new method for determining the crack classification criterion in acoustic emission parameter analysis

机译:一种确定声发射参数分析中裂缝分类标准的新方法

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摘要

At a microscopic scale, the failure of brittle materials results from crack initiation, propagation and coalescence. Acoustic emission (AE) technique, especially parameter analysis, has been widely applied to investigate cracking process and mechanism in civil engineering. However, crack classification in AE parameter analysis mostly derives from the empirical relation between the RA value and the average frequency, and the crack classification criterion, i.e., the optimal transition line between shear and tensile cracks in the parameter analysis has not been determined yet. Based on statistical analysis of dominant frequency characteristics of AE signals, a new method is proposed for determining the optimal transition line for crack classification in AE parameter analysis. Spectrum analyses of AE waveform data in the representative specimens are carried out to acquire the dominant frequency of AE waveforms. Proportions of waveforms distributed in low and high dominant frequency bands (L-type and H-type waveforms) are determined. The ratios of tensile and shear cracks, viewed as measurements, are determined by the statistical analysis of dominant frequency characteristics of AE waveforms. For a series of different transition line, the predicted ratios of tensile and shear cracks in AE parameter analysis are determined. The optimal transition line is determined to be the one corresponding to the least square difference between predicted data and measurements. The determined optimal transition line can be directly applied for crack classification in AE parameter analysis in the subsequent experiments of this brittle material. The reliability of the proposed method were validated by laboratory tests of rock subjected to compression. It can be found that the optimal transition line in the parameter analysis is approximately from 1:100 to 1:500 for brittle rock under compression. The findings in this study contributes to the enhancement of the accuracy and efficiency of AE source mechanism and damage process analysis.
机译:在显微尺度下,脆性材料的失效是由裂纹引发,传播和聚结产生的。声发射(AE)技术,尤其是参数分析,已被广泛应用于调查土木工程中的开裂过程和机制。然而,AE参数分析中的裂缝分类主要来自RA值和平均频率之间的经验关系,以及参数分析中的剪切和拉伸裂纹之间的最佳转变线尚未确定。基于AE信号的主导频率特性的统计分析,提出了一种新方法,用于确定AE参数分析中裂纹分类的最佳转换线。对代表性标本中的AE波形数据的频谱分析进行,以获取AE波形的显性频率。确定在低和高主导频带(L型和H型波形)中分布的波形的比例。通过AE波形的显性频率特性的统计分析来确定视为测量的拉伸和剪切裂缝的比率。对于一系列不同的过渡线,确定了AE参数分析中的拉伸和剪切裂缝的预测比率。确定最佳转换线是对应于预测数据和测量之间最小二乘差的差异。确定的最佳过渡线可以直接用于AE参数分析中的裂纹分类在这种脆性材料的后续实验中。所提出的方法的可靠性是通过对压缩进行压缩的岩石的实验室测试来验证。可以发现,在压缩下,参数分析中的最佳过渡线大约为1:100至1:500。本研究的调查结果有助于提高AE源机制的准确性和效率和损伤过程分析。

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