Gong Yongfan, Hua Qian, Wu Zhengguang, Yu Yahui, Kang Aihong, Chen Xiao, Dong Hu
College of Civil Science and Engineering, Yangzhou University, Yangzhou 225100, China.
Jiangsu Ruiwo Construction Group Co., Ltd., Yangzhou 225600, China.
Materials (Basel). 2024 Jul 4;17(13):3299. doi: 10.3390/ma17133299.
Ultra High-Performance Concrete (UHPC) is a cement-based composite material with great strength and durability. Fibers can effectively increase the ductility, strength, and fracture energy of UHPC. This work describes the impacts of individual or hybrid doping of basalt fiber (BF) and steel fiber (SF) on the mechanical properties and microstructure of UHPC. We found that under individual doping, the effect of BF on fluidity was stronger than that of SF. Moreover, the compressive, flexural, and splitting tensile strength of UHPC first increased and then decreased with increasing BF dosage. The optimal dosage of BF was 1%. At a low content of fiber, UHPC reinforced by BF demonstrated greater flexural strength than that reinforced by SF. SF significantly improved the toughness of UHPC. However, a high SF dosage did not increase the strength of UHPC and reduced the splitting tensile strength. Secondly, under hybrid doping, BF was partially substituted for SF to improve the mechanical properties of hybrid fiber UHPC. Consequently, when the BF replacement rate increased, the compressive strength of UHPC gradually decreased; on the other hand, there was an initial increase in the fracture energy, splitting tensile strength, and flexural strength. The ideal mixture was 0.5% BF + 1.5% SF. The fluidity of UHPC with 1.5% BF + 0.5% SF became the lowest with a constant total volume of 2%. The microstructure of hydration products in the hybrid fiber UHPC became denser, whereas the interface of the fiber matrix improved.
超高性能混凝土(UHPC)是一种具有高强度和耐久性的水泥基复合材料。纤维可以有效提高超高性能混凝土的延展性、强度和断裂能。本文描述了玄武岩纤维(BF)和钢纤维(SF)单独掺杂或混杂掺杂对超高性能混凝土力学性能和微观结构的影响。我们发现,在单独掺杂时,玄武岩纤维对流动性的影响比钢纤维更强。此外,超高性能混凝土的抗压强度、抗折强度和劈裂抗拉强度随玄武岩纤维掺量的增加先升高后降低。玄武岩纤维的最佳掺量为1%。在低纤维含量下,玄武岩纤维增强的超高性能混凝土表现出比钢纤维增强的超高性能混凝土更高的抗折强度。钢纤维显著提高了超高性能混凝土的韧性。然而,高钢纤维掺量并未提高超高性能混凝土的强度,反而降低了劈裂抗拉强度。其次,在混杂掺杂时,用玄武岩纤维部分替代钢纤维以改善混杂纤维超高性能混凝土的力学性能。因此,当玄武岩纤维替代率增加时,超高性能混凝土的抗压强度逐渐降低;另一方面,断裂能、劈裂抗拉强度和抗折强度最初有所增加。理想的配合比是0.5%玄武岩纤维 + 1.5%钢纤维。在总体积恒定为2%的情况下,1.5%玄武岩纤维 + 0.5%钢纤维的超高性能混凝土流动性最低。混杂纤维超高性能混凝土中水化产物的微观结构变得更致密,而纤维基体的界面得到改善。