Huang Yingying, Kong Dewen, Li Yi, Zhou Shenghui, Shu Jing, Wu Bing
Guizhou University, Guiyang, China.
Sci Rep. 2024 Apr 8;14(1):8224. doi: 10.1038/s41598-024-59020-8.
Herein, a practical ultra-high-performance concrete (UHPC) was created by adding two different shapes of steel fibers and curing them at ambient temperature using palygorskite-nanofiber (PN) as the modifier. The compressive strength, flexural strength, water absorption capacity, and porosity were analyzed to determine the effects of the steel fibers and PNs on the UHPC mechanical and physical properties. The steel fibers and PNs were found to improve these properties. The UHPC mechanical properties were outstanding at 1.5% fiber dosage, while physical properties were excellent at 1.0% fiber dosage. The mechanical and physical characteristics of UHPC were preferably at a PN dosage of 0.2% and the fiber dosage of 1.0%. The compressive and flexural strengths of straight-steel-fiber UHPC were 145.57 and 19.67 MPa, respectively, i.e., 42.0 and 109.4% higher than those of the reference specimens (i.e., those without fibers or PNs); the water absorption capacity and porosity decreased by 50.1 and 60.7%, respectively. The compressive and flexural strengths of hooked-end-steel-fiber UHPC were 18.3 and 96.0% higher than those of the reference specimens, respectively, and the water absorption capacity and porosity decreased by 43.2 and 29.8%, respectively. These results could provide vital information for the promotion and practical application of UHPC.
在此,通过添加两种不同形状的钢纤维,并使用坡缕石纳米纤维(PN)作为改性剂在环境温度下养护,制备了一种实用的超高性能混凝土(UHPC)。分析了抗压强度、抗弯强度、吸水能力和孔隙率,以确定钢纤维和PN对UHPC力学和物理性能的影响。结果发现,钢纤维和PN改善了这些性能。当纤维用量为1.5%时,UHPC的力学性能优异;当纤维用量为1.0%时,其物理性能良好。当PN用量为0.2%且纤维用量为1.0%时,UHPC的力学和物理特性最佳。直钢纤维UHPC的抗压强度和抗弯强度分别为145.57和19.67MPa,即分别比参考试件(即无纤维或PN的试件)高42.0%和109.4%;吸水能力和孔隙率分别降低了50.1%和60.7%。钩端钢纤维UHPC的抗压强度和抗弯强度分别比参考试件高18.3%和96.0%,吸水能力和孔隙率分别降低了43.2%和29.8%。这些结果可为UHPC的推广和实际应用提供重要信息。