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Detection of Dynamic Modulus and Crack Properties of Asphalt Pavement Using a Non-Destructive Ultrasonic Wave Method

机译:非破坏性超声波法检测沥青路面动态模量和裂纹特性

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摘要

Non-destructive ultrasonic testing has attained popularity due to its robustness and cost-effectiveness in monitoring the structural health and performance evaluation of pavements, thus replacing traditional methods. This paper presents the application of an explicit finite element method for the modeling of ultrasonic wave propagation through asphalt concrete. Prior to modeling, non-destructive ultrasonic testing was conducted on four different types of asphalt concrete (AC-13, SMA-13, AC-20, and AM-20). Based on acoustic information (wave velocity) obtained in non-destructive testing (NDT) and density, the dynamic moduli of these asphalt concretes were evaluated and used in numerical modeling of ultrasonic wave propagation using the commercial software package ABAQUS. The ultrasonic wave results obtained by numerical modeling were compared with experimental results. This comparison showed a good fit between the finite element (FE) results and the experimental results and confirmed a good FE approach for ultrasonic wave propagation. In addition, the influence of varying dynamic moduli, density, varying location, and crack size/depth on ultrasonic wave propagation was analyzed.
机译:由于其鲁棒性和成本效益来监测人行道的结构性健康和性能评估,因此无损超声波检测实现了普及,从而取代了传统方法。本文介绍了一种明确的有限元方法,通过沥青混凝土模拟超声波传播建模。在建模之前,在四种不同类型的沥青混凝土(AC-13,SMA-13,AC-20和AM-20)上进行无损超声波检测。基于在非破坏性测试(NDT)和密度中获得的声学信息(波速),评估这些沥青混凝土的动态模量,并使用商业软件包ABAQUS的超声波传播的数值模拟。将通过数值建模获得的超声波结果与实验结果进行了比较。这种比较显示有限元(Fe)结果与实验结果之间的良好恰当,并确认了超声波传播的良好Fe方法。另外,分析了不同动态模量,密度,不同位置和裂纹大小/深度对超声波传播的影响。

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