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Shear behaviour of inorganic polymer concrete beams reinforced with basalt FRP bars and stirrups

机译:用玄武岩FRP棒和搅拌加固无机聚合物混凝土梁的剪切行为

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摘要

Inorganic polymer concrete (IPC) reinforced with basalt fibre reinforced polymer (BFRP) was proposed as a promising substitute of conventional reinforced concrete for structures to enhance their sustainability and durability. This paper, for the first time, presents a systematic study, experimental, theoretical and numerical, of shear behaviour of IPC beams reinforced with BFRP bars and stirrups considering the effects of stirrup spacing (S = 80, 100 and 150 mm) and shear span-to-depth ratio (lambda = 1.5, 2.0 and 2.5). Result indicates that all BFRP-IPC beams fail in shear as a result of BFRP stirrup rupture and shear-compression failure. Compared to S, lambda has a more pronounced influence on shear performance of BFRP reinforced IPC beams, with a maximum reduction of ultimate shear load by 29.4%. The simulation results show good agreement with experimental data, while the theoretical predictions according to existing design provisions for FRP reinforced concrete have a discrepancy of more than 30% with experiments due to lack of consideration of lambda. Modified equations taking into account the effect of lambda were then derived and used to predict the shear capacity of BFRP reinforced IPC beams, which agrees well with experimental data with an average discrepancy of only around 5%.
机译:用玄武岩纤维增强聚合物(BFRP)加强的无机聚合物混凝土(IPC)作为常规钢筋混凝土的承诺替代,用于增强其可持续性和耐用性。本文首次提出了具有通过BFRP条和刺激的IPC梁的剪切行为提供了系统的研究,实验,理论和数值,考虑到STORKUP间距(S = 80,100和150mm)和剪切跨度的影响 - 深度比(Lambda = 1.5,2.0和2.5)。结果表明,由于BFRP STORUP破裂和剪切压缩故障,所有BFRP-IPC波束都会在剪切中失败。与S相比,Lambda对BFRP增强IPC梁的剪切性能具有更明显的影响,最大限度地降低了最终剪切载量29.4%。仿真结果表明,与实验数据吻合良好,而根据FRP钢筋混凝土的现有设计规定的理论预测具有超过30%的差异,由于缺乏对λ缺乏考虑。考虑到λ的改进方程,然后得出并用于预测BFRP增强IPC梁的剪切能力,这与实验数据一致,平均差异仅为约5%。

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