Liu Jie, Wang Haobo, Wei Yang, Han Daguang, Xiang Yunfei
College of Civil Engineering, Nanjing Forestry University, Nanjing 210037, China.
School of Civil Engineering, Southeast University, Nanjing 210096, China.
Materials (Basel). 2023 Oct 19;16(20):6773. doi: 10.3390/ma16206773.
The use of FRP materials to repair cracked/damaged steel structures has gradually been adopted by researchers. This paper investigates the repairing effect of bolted FRP plates for cracked steel plates based on experimental and numerical simulation methods. In the experimental investigation, the tensile strengths of six specimens, including three repaired specimens and three pure cracked steel specimens, were evaluated. The test outcomes indicated that the bolt repairing method significantly enhanced the tensile strengths of the cracked steel plates. As an example, the failure of a pure steel plate with a 1 mm width crack occurred at 813 N, whereas after being repaired, a tensile strength of 1298 N was observed. Based on finite element (FE) analysis, the influence of bolt preloads and interfacial friction coefficients were verified. The stress-relative ratio for specimens was contingent on the bolt preload magnitude and gradually decreased as the preload was augmented. By exploring the repairing effect for varied friction coefficients, it was concluded that using a higher bolt preload can aid in eliminating the performance discrepancy of the overall component caused by interface treatment errors.
纤维增强复合材料(FRP)材料用于修复开裂/受损钢结构已逐渐被研究人员采用。本文基于试验和数值模拟方法,研究了螺栓连接FRP板对钢板裂纹的修复效果。在试验研究中,评估了六个试件的抗拉强度,其中包括三个修复试件和三个纯裂纹钢板试件。试验结果表明,螺栓修复方法显著提高了裂纹钢板的抗拉强度。例如,一个宽度为1mm裂纹的纯钢板在813N时发生破坏,而修复后观察到的抗拉强度为1298N。基于有限元(FE)分析,验证了螺栓预紧力和界面摩擦系数的影响。试件的应力相对比取决于螺栓预紧力大小,并随着预紧力的增加而逐渐减小。通过探讨不同摩擦系数下的修复效果,得出结论:采用较高的螺栓预紧力有助于消除因界面处理误差导致的整体构件性能差异。