Khan M Iqbal, Sial Sardar Umer, Abbas Yassir M, Fares Galal
Department of Civil Engineering, College of Engineering, King Saud University, P.O. Box 800, Riyadh 11421, Saudi Arabia.
Materials (Basel). 2023 Jul 21;16(14):5135. doi: 10.3390/ma16145135.
A strain-hardening cementitious composite (SHCC) is a modern engineered material offering exceptional ductility and durability. A potential application of SHCCs for crack control and to improve structural members' load-bearing capabilities is due to its superior properties. In this study, SHCCs were used to enhance the load-carrying capacity and the cracking behavior of precast RC beams. In the bottom tension region of RC beams, the SHCCs of different layer thicknesses (0%, 15%, 30%, and 45% of section height) were cast. Laboratory-scale beams were used in 4-point bending tests. SHCC-layered RC beams showed improved flexural performance compared to control RC beams. Among retrofitted beams, the one with an SHCC layer of 30% of the section height was found to be the most efficient pertaining to strength, ductility, and cracking control. In this study, the flexural response of composite beams was also predicted using an analytical approach. The average difference between predicted and measured moment capacities was less than 10%.
应变硬化水泥基复合材料(SHCC)是一种具有出色延展性和耐久性的现代工程材料。由于其卓越的性能,SHCC在裂缝控制和提高结构构件承载能力方面具有潜在应用价值。在本研究中,使用SHCC来提高预制钢筋混凝土梁的承载能力和开裂性能。在钢筋混凝土梁的底部受拉区域,浇筑了不同层厚(截面高度的0%、15%、30%和45%)的SHCC。实验室规模的梁用于四点弯曲试验。与对照钢筋混凝土梁相比,SHCC层叠钢筋混凝土梁的抗弯性能有所改善。在加固梁中,发现SHCC层厚度为截面高度30%的梁在强度、延性和裂缝控制方面最为有效。在本研究中,还采用解析方法预测了组合梁的弯曲响应。预测弯矩能力与实测弯矩能力之间的平均差异小于10%。