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Experimental study on bond behavior between heat-damaged recycled asphalt pavement concrete and NSM-CFRP strips

机译:热损伤再生沥青路面混凝土和NSM-CFRP条带粘合行为的实验研究

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In this work, the effect of high temperature on the bond behavior between Recycled Asphalt Pavement (RAP) concrete and Fiber Reinforced Polymer (FRP) was studied. The use of RAP in concrete construction has been developed and utilized recently due to its various economic and environmental features. Nevertheless, very few studies have examined the bonding performance and failure mode between RAP concrete and FRP. A total of 46 asphalt pavement concrete specimens with three different concrete compressive strength were cast and tested under pullout test. The specimens were prepared using different RAP aggregate content and were subjected to elevated temperatures within a range from 23 °C to 600 °C. The heat damaged specimens were repaired using two Near-Surface Mounted Carbon Fiber Reinforced Polymer (NSM-CFRP) strips spaced at 50 mm with three different bonded lengths. According to the experimental results of the pullout test, RAP concrete specimens showed lower bonding strength and slippage than Natural Aggregate (NA) concrete specimens. Furthermore, specimens exposed to elevated temperatures showed a significant decrease in bonding strength and a significant increase in slippage. Results also indicated that as the temperature increased, specimens with high RAP aggregate content failed at higher slippage compared to specimens with low RAP aggregate content with the same compressive strength. Moreover, the relationships between bond load and strain of (CFRP) strips were established and discussed in the results. The failure mode in all specimens was concrete separation.
机译:在这项工作中,研究了高温对再生沥青路面(RAP)混凝土和纤维增强聚合物(FRP)之间的粘合行为的影响。由于其各种经济和环境特征,最近已经开发并利用了具体建设中的说唱。然而,很少有研究检测了RAP混凝土和FRP之间的粘接性能和失效模式。在拉出试验下,共铸造和测试了46个沥青路面混凝土样本,并在拔展试验下进行测试。使用不同的RAP骨料含量制备样品,并在23℃至600℃的范围内进行升高的温度。使用两个近表面安装的碳纤维增强聚合物(NSM-CFRP)条间隔在50mm处的带有三种不同的粘合长度的粘接长度来修复热损坏样品。根据拉出试验的实验结果,RAP混凝土试样显示出比天然骨料(NA)混凝土样本较低的粘接强度和滑动。此外,暴露于升高温度的标本显示粘合强度显着降低和滑动的显着增加。结果还表明,随着温度的增加,与具有相同抗压强度低的RAP骨料含量的试样相比,具有高的RAP骨料含量的试样齿失效。此外,在结果中建立并讨论了粘合载荷和(CFRP)条带的键合和菌株之间的关系。所有标本中的故障模式都是混凝土分离。

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