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Steel detection in reinforced concrete wall by microwave infrared thermography

机译:微波红外热像仪检测钢筋混凝土墙中的钢材

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This paper presents a NDT by infrared thermography with a microwave excitation system. The advantages of such stimulation lie in the volumetric absorption of incoming waves which lead to a greater sounded depth. The device generating the microwaves was made of a commercial magnetron 800 W at 2.45 GHz associated with a pyramidal horn antenna. This method was applied to detect the steel reinforcements (deformed bar 12 mm of diameter placing at every 10 cm) in a concrete specimen (1 m × 1 m × 6.5 cm) with a concrete cover of 3.8 cm. The specimen was heated with an average power of 600 W for 5 min. An infrared camera was placed on the same side as the stimulated surface and thermograms were recorded at regular intervals. The whole assembly was placed in a protective enclosure against high frequency electromagnetic fields. The method based on a contrast algorithm was used to analyze the thermogram series. The result shows a higher temperature rise in front of the steel reinforcement areas. The effect of microwave caused an increase in moderate temperature does not lead to alteration of inspected concrete.
机译:本文提出了红外热成像与微波激发系统的无损检测。这种刺激的优点在于进入波的体积吸收,这导致更大的探测深度。产生微波的设备是由商用磁控管800 W在2.45 GHz处制成的,该磁控管与角锥天线相连。该方法用于检测钢筋覆盖层为3.8 cm的混凝土试样(1 m×1 m×6.5 cm)中的钢筋(每10 cm直径12 mm的变形钢筋)。样品以600 W的平均功率加热5分钟。将红外热像仪放置在受激表面的同一侧,并定期记录热分析图。整个组件放置在一个防护罩中,以防高频电磁场。使用基于对比算法的方法分析热谱图序列。结果表明,在钢筋区域的前面温度升高更高。微波的影响导致中等温度的升高并不会导致受检混凝土的变化。

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