Yang Jun-Mo, Lee Jongeok, Chang Chunho
Department of Civil Engineering, Keimyung University, 1095 Dalgubeol-daero, Dalseo-gu, Daegu 42601, Republic of Korea.
Materials (Basel). 2023 May 12;16(10):3703. doi: 10.3390/ma16103703.
Textile-reinforced concrete (TRC) is highly anticipated as an alternative to reinforced concrete due to its ability to enable lightweight design, free formability, and improved ductility. In this study, TRC panel test specimens were fabricated and four-point loading flexural tests were performed to examine the flexural characteristics of TRC panels reinforced with carbon fabric, and to investigate the effect of the fabric reinforcement ratio, anchorage length, and surface treatment of fabric. Furthermore, the flexural behavior of the test specimens was numerically analyzed using the general section analysis concept of reinforced concrete and compared with the experimental results. Due to bond failure between the carbon fabric and the concrete matrix, the TRC panel showed a large decrease in flexural performance in terms of flexural stiffness, flexural strength, cracking behavior, and deflection. This low performance was improved by increasing the fabric reinforcement ratio, anchoring length, and sand-epoxy surface treatment of the anchorage. Comparing the numerical calculation results with the experimental results, the deflection of the experimental results was approximately 50% larger than the numerical calculation results. This is because the perfect bond between the carbon fabric and the concrete matrix failed, and slip occurred.
纺织增强混凝土(TRC)因其能够实现轻质设计、自由成型以及提高延性,作为钢筋混凝土的替代品备受期待。在本研究中,制作了TRC板试验试件,并进行了四点加载弯曲试验,以研究碳纤维织物增强TRC板的弯曲特性,探讨织物配筋率、锚固长度和织物表面处理的影响。此外,采用钢筋混凝土通用截面分析概念对试验试件的弯曲行为进行了数值分析,并与试验结果进行了比较。由于碳纤维织物与混凝土基体之间的粘结破坏,TRC板在弯曲刚度、弯曲强度、开裂行为和挠度方面的弯曲性能大幅下降。通过增加织物配筋率、锚固长度以及对锚固部位进行砂 - 环氧树脂表面处理,这种低性能得到了改善。将数值计算结果与试验结果进行比较,试验结果的挠度比数值计算结果大约大50%。这是因为碳纤维织物与混凝土基体之间的完美粘结失效,发生了滑移。