Li Pingjie, Cheng Quan, Chen Nanxun, Tian Yueqiang, Fang Junfa, Jiang Haibo
School of Civil and Transportation Engineering, Guangdong University of Technology, Guangzhou 510006, China.
Guangdong Zhonglu Protection Technology Co., Ltd., Guangzhou 511430, China.
Materials (Basel). 2023 Jun 4;16(11):4177. doi: 10.3390/ma16114177.
Due to the high tensile strength of ultra-high performance concrete (UHPC), the shear stirrups in UHPC beams could potentially be removed. The aim of this study is to assess the shear performance of non-stirrup UHPC beams. Six UHPC beams were tested and compared with three stirrup-reinforced normal concrete (NC) beams, taking into consideration the testing parameters of steel fiber volume content and shear span-to-depth ratio. The findings demonstrated that incorporating steel fibers can efficiently strengthen the ductility, cracking strength, and shear strength of non-stirrup UHPC beams and alter their failure mode. Additionally, the shear span-to-depth ratio had a significant impact on the shear strength of beams, as it was negatively related to it. This study revealed that the French Standard and PCI-2021 formulae were suitable for designing UHPC beams with 2% steel fibers and no stirrups. When applying Xu's formulae for non-stirrup UHPC beams, taking into account a reduction factor was necessary.
由于超高性能混凝土(UHPC)的高抗拉强度,UHPC梁中的抗剪箍筋可能可以去除。本研究的目的是评估无箍筋UHPC梁的抗剪性能。测试了六根UHPC梁,并与三根配有箍筋的普通混凝土(NC)梁进行比较,同时考虑了钢纤维体积含量和剪跨比等测试参数。研究结果表明,掺入钢纤维可以有效地增强无箍筋UHPC梁的延性、开裂强度和抗剪强度,并改变其破坏模式。此外,剪跨比对梁的抗剪强度有显著影响,二者呈负相关。本研究表明,法国标准和PCI - 2021公式适用于设计含2%钢纤维且无箍筋的UHPC梁。在将徐氏公式应用于无箍筋UHPC梁时,有必要考虑折减系数。