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Effects of Ambient Temperature and Relative Humidity on Subsurface Defect Detection in Concrete Structures by Active Thermal Imaging

机译:主动热成像技术研究环境温度和相对湿度对混凝土结构地下缺陷检测的影响

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Active thermal imaging is an effective nondestructive technique in the structural health monitoring field, especially for concrete structures not exposed directly to the sun. However, the impact of meteorological factors on the testing results is considerable and should be studied in detail. In this study, the impulse thermography technique with halogen lamps heat sources is used to detect defects in concrete structural components that are not exposed directly to sunlight and not significantly affected by the wind, such as interior bridge box-girders and buildings. To consider the effect of environment, ambient temperature and relative humidity, these factors are investigated in twelve cases of testing on a concrete slab in the laboratory, to minimize the influence of wind. The results showed that the absolute contrast between the defective and sound areas becomes more apparent with an increase of ambient temperature, and it increases at a faster rate with large and shallow delaminations than small and deep delaminations. In addition, the absolute contrast of delamination near the surface might be greater under a highly humid atmosphere. This study indicated that the results obtained from the active thermography technique will be more apparent if the inspection is conducted on a day with high ambient temperature and humidity.
机译:主动热成像技术在结构健康监测领域是一种有效的非破坏性技术,尤其是对于未直接暴露在阳光下的混凝土结构。但是,气象因素对测试结果的影响是相当大的,应进行详细研究。在这项研究中,使用卤素灯热源的脉冲热成像技术来检测未直接暴露在阳光下并且不受风的影响较大的混凝土结构部件中的缺陷,例如内部桥梁箱梁和建筑物。为了考虑环境,环境温度和相对湿度的影响,在实验室的混凝土板上进行的十二种测试案例中对这些因素进行了研究,以最大程度地减小风的影响。结果表明,随着环境温度的升高,缺陷区域和声音区域之间的绝对对比度变得更加明显,并且在较大和较浅的分层中,与较小和较深的分层相比,缺陷的绝对对比度增加得更快。此外,在高度潮湿的环境下,表面附近分层的绝对对比度可能更大。这项研究表明,如果在环境温度和湿度较高的一天进行检查,从主动热成像技术获得的结果将更加明显。

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