Tang Xianyuan, Feng Chenzhuo, Chang Jin, Ma Jieling, Hu Xiansong
School of Construction and Traffic Engineering, Guilin University of Electronic Science and Technology, Guilin 541004, China.
Guangxi Key Laboratory of Intelligent Transportation, Guilin University of Electronic Science and Technology, Guilin 541004, China.
Materials (Basel). 2023 Aug 30;16(17):5960. doi: 10.3390/ma16175960.
In order to study the flexural performance of the combined structure of steel-pipe and steel slag powder ultra-high-performance concrete (UHPC), nine round steel-pipe beams filled with steel slag powder UHPC of different types were fabricated according to the orthogonal test method with the steel pipe type, coarse aggregate content, steel fiber admixture, and curing system as parameters. The broken ring morphology, deformation characteristics, deflection distribution, and flexural bearing capacity of the steel-pipe-UHPC beams were analyzed via a pure bending test and a finite element simulation. The results show that the damage morphology of the round steel-tube-UHPC beams prepared by using steel slag powder UHPC as the inner filling material was "bow damage" under the pure bending load, and the load capacity was higher. When the cross-sectional deflection reached L/30, the external load was still not reduced, and the steel-tube-steel-slag powder-UHPC beam had a better plastic deformation capacity and a later flexural bearing capacity. The type of steel tube had a significant influence on the flexural bearing capacity of the steel-tube-UHPC beam, and the larger the diameter of the steel tube section and the thicker the tube wall, the higher its flexural bearing capacity. The calculated ultimate flexural bearing capacity by the finite element software and the test results had a stable error between 5.6% and 11.2%, which indicates that the model was reasonably established. The research results can provide a reference for the application of steel pipe UHPC engineering.
为研究钢管与钢渣粉超高性能混凝土(UHPC)组合结构的抗弯性能,以钢管类型、粗骨料含量、钢纤维掺量和养护制度为参数,按正交试验方法制作了9根不同类型的钢渣粉UHPC填充圆钢管梁。通过纯弯试验和有限元模拟,分析了钢管-UHPC梁的断环形态、变形特征、挠度分布和抗弯承载力。结果表明,以钢渣粉UHPC为内填材料制备的圆钢管-UHPC梁在纯弯荷载作用下的破坏形态为“弓状破坏”,且承载力较高。当截面挠度达到L/30时,外部荷载仍未降低,钢管-钢渣粉-UHPC梁具有较好的塑性变形能力和后期抗弯承载力。钢管类型对钢管-UHPC梁的抗弯承载力有显著影响,钢管截面直径越大、管壁越厚,其抗弯承载力越高。有限元软件计算的极限抗弯承载力与试验结果的误差稳定在5.6%~11.2%之间,表明模型建立合理。研究结果可为钢管UHPC工程应用提供参考。