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Acoustic emission propagation characteristics and damage source localization of asphalt mixtures

机译:沥青混合物的声发射传播特性及损伤源定位

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Fracture of asphalt materials has been a critical issue that affects the fatigue performance and service life of asphalt pavements. Acoustic emission (AE) technique, as a kind of non-destructive testing (NDT) method, can effectively detect minor damage in various materials. The objective of this paper was to propose a damage source localization method suitable for understanding the fracture behavior of asphalt mixtures by AE detection. Firstly, the pencil-lead-break (PLB) tests were conducted on asphalt mixture beams to explore the propagation characteristics of AE signals, and a reasonable layout scheme of AE sensors was determined for monitoring the AE process of asphalt mixtures. Secondly, the wavelet threshold denoising method was utilized to extract effective information from AE signals associated with the pencil-lead breaks on the surface of asphalt mixture beam by simultaneously considering the wavelet basis functions, decomposition levels and threshold rules. Finally, an effective time difference of arrival (TDOA) estimation method combining noise reduction, wavelet decomposition and cross-correlation processing was established to accurately locate the damage source of asphalt mixtures. The results show that there is less serious attenuation of amplitude and energy of AE parameters and frequency spectrum of AE waveforms within the range of 100 mm in asphalt mixtures. The larger signal-to-noise ratio (SNR) and the smaller root mean square error (RMSE) of denoised AE signals indicate that the threshold denoising method optimized by the Fruit Fly Optimization Algorithm (FOA) is more effective for AE detection of asphalt mixtures. The improved TDOA estimation method could obtain a minimum TDOA value, and the calculated locations of AE events are closer to the actual PLB points. (C) 2020 Elsevier Ltd. All rights reserved.
机译:沥青材料的骨折是影响沥青路面疲劳性能和使用寿命的关键问题。声发射(AE)技术作为一种非破坏性测试(NDT)方法,可以有效地检测各种材料的轻微损坏。本文的目的是提出一种损伤源定位方法,适用于通过AE检测理解沥青混合物的断裂行为。首先,在沥青混合束上进行铅笔铅断裂(PLB)试验以探索AE信号的传播特性,并确定AE传感器的合理布局方案用于监测沥青混合物的AE过程。其次,利用小波阈值去噪方法从与铅笔铅在沥青混合束表面上的AE信号中提取有效信息,通过同时考虑小波基函数,分解水平和阈值规则。最后,建立了结合降噪,小波分解和互相关处理的到达(TDOA)估计方法的有效时差(TDOA)估计方法,以精确定位沥青混合物的损伤来源。结果表明,在沥青混合物中100mm范围内的AE参数和AE波形频谱的幅度和能量的严重衰减较小。较大的信噪比(SNR)和去噪AE信号的较小的根均方误差(RMSE)表明通过果蝇优化算法(FOA)优化的阈值去噪方法对于AE检测沥青混合物的检测更有效。改进的TDOA估计方法可以获得最小TDOA值,并且AE事件的计算位置更接近实际PLB点。 (c)2020 elestvier有限公司保留所有权利。

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