Thermal image for monitoring crack forming process

Tetiana Venkel, J. Son, Jung Kim, Hyoung Lee, Gwanghee Heo
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Abstract

Thermal image is used to visualize the crack forming and progressing process in mortar prisms added with carbon fibers of five different percentages of 0.0 %, 0.5 %, 1.0 %, 1.5 % and 2.0% in volume, with the time variations of the surface temperature of the prisms while applying forces through a universal testing machine. The surface temperatures are smoothly increasing as the force increases but they reveal sudden temperature increases at the time of crack forming in the prisms. It turns that the sudden temperature increase in the prisms is appeared at the aggregated carbon fibers along the crack paths. The time of increasing matches closely to the crack on-set time determined by a panchromatic camera. Since the fibers along the crack path are more stressed for the given force because they resist more to the force than the mortar itself, their temperatures increase much more than the neighboring mortar. Hence the temperature variation in the aggregated fibers along the crack path informs before the actual crack appearance.
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用于裂纹形成过程监测的热图像
采用热成像技术,在万能试验机上观察了添加0.0%、0.5%、1.0%、1.5%和2.0%体积百分比碳纤维的砂浆棱柱在受力过程中裂纹的形成和发展过程,以及棱柱表面温度的时间变化。表面温度随力的增加而平稳升高,但在棱柱裂纹形成时,表面温度突然升高。结果表明,沿裂纹路径聚集的碳纤维出现了棱柱温度的突然升高。增加的时间与全色相机测定的裂纹开启时间非常接近。由于裂缝路径上的纤维在给定的力下受力更大,因为它们比砂浆本身承受更大的力,因此它们的温度比邻近的砂浆升高得多。因此,在实际裂纹出现之前,聚集纤维沿裂纹路径的温度变化就会被告知。
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