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Detection of Internal flaws in structural concrete elements by Impact-Echo technique

机译:冲击回波技术检测结构混凝土构件内部缺陷

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This paper explains the application of Impact-Echo (IE) for the detection of flaws in structural concrete elements. The main objective of the paper is to detect the internal flaws such as cracks, voids, honeycombs etc. that cannot be observed by visual inspection. Studies have been carried out using a modified 'DOCtor' impact-echo system on a specially constructed NDT test specimen. The test specimen is designed and constructed at Structural Engineering Research Centre (SERC), Chennai, exclusively for the data generation and validation of different NDT techniques. Impact data is generated in a manual scanning mode. An average of two impacts has been taken at each point along the grid line. Impacts have been repeated in order to ensure repeatable or reproducible time domain waveforms. The waveforms have been recorded and the resulting frequency spectra have been generated by using Fourier Transformation Technique (FFT). Line (B-scan) and area (C-scan) scan images are made use of in analysing the impact data. It is observed from the analysis, that the impact-echo technique provides useful and reliable information in detecting the thickness and internal flaws such as cracks, voids etc.
机译:本文介绍了冲击回波(IE)在检测结构混凝土元素中的缺陷中的应用。本文的主要目的是检测无法通过肉眼检查发现的内部缺陷,例如裂缝,空隙,蜂窝等。已经使用改进的“ DOCtor”冲击回波系统对特殊构造的NDT测试样本进行了研究。测试样品是在钦奈的结构工程研究中心(SERC)设计和构建的,专门用于数据生成和不同NDT技术的验证。影响数据以手动扫描模式生成。沿网格线的每个点平均受到了两次影响。为了确保可重复或可重现的时域波形,已经重复了一些影响。通过使用傅里叶变换技术(FFT)记录了波形并生成了频谱。线(B扫描)和区域(C扫描)扫描图像用于分析冲击数据。从分析中可以看出,冲击回波技术在检测厚度和内部缺陷(例如裂缝,空隙等)时提供了有用且可靠的信息。

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