Lattice modelling of complete acoustic emission waveforms in the concrete fracture process

IF 5.3 2区 工程技术 Q1 MECHANICS Engineering Fracture Mechanics Pub Date : 2025-05-13 Epub Date: 2025-03-15 DOI:10.1016/j.engfracmech.2025.111040
Yubao Zhou , Beyazit Bestami Aydin , Fengqiao Zhang , Max A.N. Hendriks , Yuguang Yang
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Abstract

The next generation of acoustic emission (AE) applications in concrete structural health monitoring (SHM) relies upon a reliable and quantitative relationship between AE measurements and corresponding AE sources. To achieve this, it is a prerequisite to accurately model the whole AE process that is a multiscale coupling process between local material fracturing and induced elastic wave propagation at structural level. Such a complex process, however, cannot be well addressed in currently available modelling methods. To fill this research gap, this study proposes a lattice modelling approach that achieves for the first time the explicit simulation of complete waveforms of transient AE signals induced by concrete fracture. The proposed approach incorporates an explicit time integration technique with a novel proportional-integral-derivative (PID) control algorithm for reducing spurious oscillations and a Rayleigh damping-based calculation and calibration method for the attenuation of AE waves. In this paper, the proposed lattice modelling approach is implemented to simulate the concrete Mode-I fracturing process in a three-point bending test. Besides the mechanical behaviors and AE hit number, a comparison was conducted between numerically and experimentally obtained AE waveforms. The AE waveforms and their attenuation characteristics simulated by the proposed lattice modelling method turn out to be comparable to experimental results. The proposed approach is of significance for a deep understanding of AE-related fracture mechanisms and a more reliable application of AE technique.
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混凝土断裂过程中完整声发射波形的点阵模拟
下一代声发射(AE)在混凝土结构健康监测(SHM)中的应用依赖于声发射测量与相应的声发射源之间可靠的定量关系。要实现这一目标,必须准确模拟整个声发射过程,即局部材料断裂与结构水平上诱导弹性波传播的多尺度耦合过程。然而,目前可用的建模方法无法很好地解决这样一个复杂的过程。为了填补这一研究空白,本研究提出了一种晶格建模方法,首次实现了混凝土断裂引起的瞬态声发射信号完整波形的显式模拟。该方法结合了显式时间积分技术、用于减少杂散振荡的新型比例-积分-导数(PID)控制算法和用于声发射衰减的基于瑞利阻尼的计算和校准方法。本文将提出的点阵建模方法应用于三点弯曲试验中混凝土i型断裂过程的模拟。除了力学行为和声发射命中数外,还对数值和实验得到的声发射波形进行了比较。该方法模拟的声发射波形及其衰减特性与实验结果基本吻合。该方法对深入了解声发射相关断裂机制和更可靠地应用声发射技术具有重要意义。
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来源期刊
CiteScore
8.70
自引率
13.00%
发文量
606
审稿时长
74 days
期刊介绍: EFM covers a broad range of topics in fracture mechanics to be of interest and use to both researchers and practitioners. Contributions are welcome which address the fracture behavior of conventional engineering material systems as well as newly emerging material systems. Contributions on developments in the areas of mechanics and materials science strongly related to fracture mechanics are also welcome. Papers on fatigue are welcome if they treat the fatigue process using the methods of fracture mechanics.
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