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A Nondestructive Testing Method for Crack in Carbon Fiber Reinforced Concrete with Infrared Thermography

机译:红外热成像碳纤维增强混凝土裂缝的无损检测方法

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Based on the functional characteristics of carbon fiber reinforced concrete (CFRC), an improved infrared nondestructive testing method, to detect crack in CFRC by using infrared thermography, is presented in this paper. The principle is that when a CFRC specimen is applied a low voltage, crack existing in the specimen will result in non-homogeneous surface temperature distribution due to the electro-thermal effect of the material. Monitoring the temperature difference on the surface, the crack under the observed surface can be inspected by using infrared thermography. In theory, the mechanism causing the temperature difference comes down to an unsteady heat transfer problem with internal energy sources. In the case of the thermo-physical property of CFRC as given, the sensitivity of this method to the depth of the crack is analyzed by numerical computation.
机译:基于碳纤维增强混凝土(CFRC)的功能特性,本文提出了一种改进的红外无损检测方法,以通过红外热成像检测CFRC中的裂缝。该原理是当CFRC样本被施加低电压时,由于材料的电热效应,样品中存在的裂纹将导致非均匀的表面温度分布。监测表面的温度差,可以通过使用红外热成像检查观察到的表面下的裂缝。理论上,导致温差的机制归结为内能源的不稳定传热问题。在给定的CFRC的热物理性的情况下,通过数值计算分析了该方法对裂缝深度的敏感性。

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