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A 3D parameter correction technique for damage assessment of structural reinforced concrete beams by acoustic emission

机译:用于声发射评估结构钢筋混凝土梁损伤的3D参数校正技术

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摘要

Deterioration of ultrasonic signals obtained from nonhomogeneous mediums due to dispersion and attenuation is a crucial problem affecting the validities of elastic-wave-based nondestructive testing methods. Concrete, which is the main construction material, is also an excessively heterogeneous material as it consists of cement, water, aggregate and other admixtures. Because Acoustic Emission (AE) is known to be an appropriate method for detecting active damages nondestructively in concrete structures, enhancement of this technique is important for more reliable inspections.This paper describes development of a 3D Parameter Correction Technique (3D-PCT) and first application of AE parameter correction in reinforced concrete (RC). The technique was applied to plain and CFRP-strengthened RC beam specimens. Accordingly, AE data obtained from three-point-bending tests were localized, their signals and also amplitude and energy parameters were corrected in 3D space and parameter analyzes were conducted. By applying 3D-PCT for RC; corrected results were obtained, some AE parameter relations were altered and activity type classification was improved. Moreover, accordance with mechanical observations was enhanced. (C) 2019 Elsevier Ltd. All rights reserved.
机译:从非均匀介质获得的超声信号由于色散和衰减而恶化是影响基于弹性波的非破坏性测试方法有效性的关键问题。混凝土是主要的建筑材料,也是一种非均质材料,因为它由水泥,水,骨料和其他外加剂组成。由于众所周知,声发射(AE)是一种无损检测混凝土结构中主动损伤的合适方法,因此增强此技术对于更可靠的检查非常重要。本文介绍了3D参数校正技术(3D-PCT)的发展,首先介绍AE参数校正在钢筋混凝土中的应用该技术应用于普通和CFRP加固的RC梁标本。因此,对从三点弯曲测试获得的AE数据进行定位,在3D空间中校正其信号以及振幅和能量参数,并进行参数分析。通过将3D-PCT应用于RC;获得更正的结果,改变了一些AE参数关系,并改善了活动类型分类。此外,根据机械观察得到增强。 (C)2019 Elsevier Ltd.保留所有权利。

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