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Delamination detection in reinforced concrete using thermal inertia

机译:利用热惯性检测钢筋混凝土中的分层

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Abstract: We investigated the feasibility of thermal inertia mapping for bridge deck inspections. Using pulsed thermal imaging, we heat-stimulated surrogate delaminations in reinforced concrete and asphalt-concrete slabs. Using a dual-band infrared camera system, we measured thermal inertia responses of Styrofoam implants under 5 cm of asphalt, 5 cm of concrete, and 10 cm of asphalt and concrete. We compared thermal maps from solar-heated concrete and asphalt-concrete slabs with thermal inertia maps from flash-heated concrete and asphalt-concrete slabs. Thermal inertia mapping is a tool for visualizing and quantifying subsurface defects. Physically, thermal inertia is a measure of the resistance of the bridge deck to temperature change. Experimentally, it is determined from the inverse slope of the surface temperature versus the inverse square root of time. Mathematically, thermal inertia is the square root of the product of thermal conductivity, density, and heat capacity. Thermal inertia mapping distinguishes delaminated decks which have below-average thermal inertias from normal or shaded decks.!32
机译:摘要:我们研究了热惯量映射在桥面板检查中的可行性。使用脉冲热成像,我们对钢筋混凝土和沥青混凝土板中的替代分层进行了热刺激。使用双波段红外摄像系统,我们在5 cm的沥青,5 cm的混凝土以及10 cm的沥青和混凝土下测量了聚苯乙烯泡沫塑料植入物的热惯性响应。我们将太阳能加热的混凝土和沥青混凝土板的热图与闪速加热的混凝土和沥青混凝土板的热惯性图进行了比较。热惯性映射是用于可视化和量化地下缺陷的工具。从物理上讲,热惯性是桥面板抵抗温度变化的量度。实验上,它是根据表面温度的反斜率与时间的反平方根确定的。从数学上讲,热惯性是导热系数,密度和热容量乘积的平方根。热惯性制图将分层后的甲板的热惯性低于平均水平,与普通或阴影甲板区分开!32

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