School of Environment and Civil Engineering, Dongguan University of Technology, Dongguan 523808, China.
State Key Laboratory of Coastal and Offshore Engineering, Dalian University of Technology, Dalian 116024, China.
Sensors (Basel). 2019 Jan 4;19(1):159. doi: 10.3390/s19010159.
To extend understanding of the bonding behavior of fiber reinforced polymer (FRP) and steel bars in self-compacting concrete (SCC), an experimental series consisting of 36 direct pull-out tests monitored by acoustic emission (AE) were performed in this paper. The test variables involved rebar type, bar diameter, embedded length, and polypropylene (PP) fiber volume content. For each test, the pull-out force and free end slip were continuously measured and compared with the corresponding AE signals. It was found that the proposed AE method was effective in detecting the debonding process between the FRP/steel bars and the hosting concrete. The AE signal strength exhibited a good correlation with the actual bond stress-slip relationship measured in each specimen. Based on the AE location technique, the invisible non-uniform distribution of bonding stress along the bar was further revealed, the initial location of damage and the debonding process were captured. Additionally, the contribution of bar-to-concrete load-bearing mechanism (chemical adhesion, friction, and mechanical interlocking) to sustain the pull-out force was effectively clarified by studying the collected signals in the frequency domain of AE methods. The experimental results demonstrate that the proposed AE method has potential to detect the debonding damage of FRP/steel bar reinforced SCC structures accurately.
为了更深入地了解自密实混凝土(SCC)中纤维增强聚合物(FRP)与钢筋的粘结行为,本文进行了一项由 36 个声发射(AE)监测的直接拔出试验的实验系列。试验变量涉及钢筋类型、钢筋直径、埋置长度和聚丙烯(PP)纤维体积含量。对于每个试验,都连续测量了拔出力和自由端滑移,并与相应的 AE 信号进行了比较。结果表明,所提出的 AE 方法在检测 FRP/钢筋与基体混凝土之间的脱粘过程方面非常有效。AE 信号强度与每个试件中实测的粘结应力-滑移关系具有很好的相关性。基于 AE 定位技术,进一步揭示了粘结应力沿钢筋的不可见非均匀分布,捕捉到了初始损伤位置和脱粘过程。此外,通过研究 AE 方法的频率域中采集的信号,有效阐明了钢筋与混凝土之间的承载机制(化学粘结、摩擦和机械嵌合)对维持拔出力的贡献。实验结果表明,所提出的 AE 方法具有准确检测 FRP/钢筋增强 SCC 结构脱粘损伤的潜力。