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Compton back scatter imaging for mild steel rebar detection and depth characterization embedded in concrete

机译:康普顿背散射成像,用于检测低碳钢筋并嵌入混凝土中的深度特征

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摘要

A novel non-destructive Compton scattering technique is described to ensure the feasibility, reliability and applicability of detecting the reinforcing steel bar in concrete. The indigenously developed prototype system presented in this paper is capable of detecting the reinforcement of varied diameters embedded in the concrete and as well as up to 60 mm depth, with the aid of Caesium-137(~(137)Cs) radioactive source and a high resolution HPGe detector. The technique could also detect the inhomogeneities present in the test specimen by interpreting the material density variation caused due to the count rate. The experimental results are correlated using established techniques such as radiography and rebar locators. The results obtained from its application to locate the rebars are quite promising and also been successfully used for reinforcement mapping. This method can be applied, especially when the intrusion is located underneath the cover of the concrete or considerably at larger depths and where two sided access is restricted.
机译:描述了一种新颖的无损康普顿散射技术,以确保检测混凝土中钢筋的可行性,可靠性和适用性。本文介绍的由本地开发的原型系统能够借助Caesium-137(〜(137)Cs)放射源和放射性核素来检测嵌入到混凝土中的各种直径的钢筋以及高达60 mm的深度。高分辨率HPGe检测器。该技术还可以通过解释由于计数率引起的材料密度变化来检测试样中存在的不均匀性。使用诸如放射线照相术和钢筋定位器之类的既定技术将实验结果进行关联。从其用于定位钢筋的应用中获得的结果很有希望,并且也已成功地用于钢筋映射。可以应用此方法,尤其是当侵入物位于混凝土表层的下方或相当大的深度,并且两侧进入受​​到限制时。

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