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Signal-Based Acoustic Emission Techniques in Civil Engineering

机译:土木工程中基于信号的声发射技术

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摘要

The acoustic emission (AE) technique can be a useful method for the investigation of local damage in materials. One of the advantages compared to other techniques is the recording of the damage process during the entire load history without any disturbance to the specimen. Differences between the traditional parameter-based and newer signal-based techniques are described along with some examples of measurements to study the steel-concrete interaction in reinforced-concrete cubes. Signal-based procedures, such as accurate 3D localization of damage sources, solutions for fault plane orientation, and moment tensor inversion, are described with respeci to applications in civil engineering. The more quantitative analysis of the signals is based on a 3D localization of AE sources (hypocenters) and the recordings obtained from a sensor network. Using moment tensor inversion methods, the radiation pattern of acoustic emission sources and the seismic moment (as an equivalent to the emitted energy), as well as the type (Mode Ⅰ, Mode Ⅱ, and mixed modes) and orientation of the cracks, can be determined.
机译:声发射(AE)技术可能是研究材料中局部损坏的有用方法。与其他技术相比,优点之一是可以记录整个载荷历史过程中的损坏过程,而不会对样品造成任何干扰。描述了传统的基于参数的技术和基于新型信号的技术之间的差异,以及一些测量示例,以研究钢筋混凝土立方体中的钢-混凝土相互作用。特别针对土木工程中的应用,描述了基于信号的过程,例如损坏源的精确3D定位,故障平面方向的解决方案以及矩张量反转。对信号的更定量分析是基于AE源(震源)的3D定位以及从传感器网络获得的记录。使用矩张量反演方法,声发射源的辐射方向图和地震矩(等效于发射能量),以及裂纹的类型(模式Ⅰ,模式Ⅱ和混合模式)和取向可以被确定。

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