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Acoustic emission activity of CFRP-strengthened reinforced concrete beams after freeze-thaw cycling

机译:冻融循环后CFRP加固钢筋混凝土梁的声发射活性

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摘要

The interface between a concrete surface and carbon fiber-reinforced polymer (CFRP) in an adhesively bonded system gradually deteriorates over time from being subjected to environmental conditions. The condition of the reinforced concrete (RC) structure strengthened with CFRP is not visible from outside the CFRP and, thus, it is difficult to quantify any deterioration or defects that may affect the structural integrity of the infrastructure. In order to evaluate the performance of CFRP-strengthened reinforced concrete beams that have been exposed to freeze-thaw cycling, an acoustic emission technique is used in this study to monitor the damage evolution in reinforced concrete beams that have been strengthened in shear mode using CFRP. This study investigates eleven reinforced concrete beams with and without shear strengthening by CFRP. Two types of CFRP, i.e., sheets and plates, were considered. The beam specimens were subjected to four-point bending after being exposed to 30, 60,120, and 400 cycles, respectively. The temperature range was from -18 ℃ to 4 ℃ The results indicate that acoustic emission activities (i.e., event counts, energy, amplitude, frequency, and b-values) are able to reflect the responses of strengthened reinforced concrete beams that have been exposed to freeze-thaw cycling. Low acoustic emission b-values were obtained after 400 freeze-thaw cycles, regardless of the CFRP type that was used.
机译:粘结系统中的混凝土表面与碳纤维增强聚合物(CFRP)之间的界面会随着时间的流逝逐渐受环境条件的影响而变差。从CFRP外部看不到用CFRP加固的钢筋混凝土(RC)结构的状况,因此很难量化可能影响基础设施结构完整性的任何劣化或缺陷。为了评估已经受冻融循环的CFRP加固钢筋混凝土梁的性能,本研究中使用了声发射技术来监测使用CFRP进行剪切模式加固的钢筋混凝土梁的损伤演化。 。这项研究研究了CFRP加固和不加固的11条钢筋混凝土梁。考虑了两种类型的CFRP,即板和板。在分别经受30、60、120和400次循环后,梁试样经受了四点弯曲。温度范围为-18℃至4℃。结果表明,声发射活动(即事件计数,能量,振幅,频率和b值)能够反映已暴露的钢筋混凝土梁的响应。冻融循环。不管使用哪种CFRP类型,经过400次冻融循环后均获得了低声发射b值。

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