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一种用于BFRP筋和钢纤维增强混凝土梁在循环荷载作用下挠度的新分析模型。

A New Analytical Model for Deflection of Concrete Beams Reinforced by BFRP Bars and Steel Fibres under Cyclic Loading.

作者信息

Zhu Haitang, Li Zongze, Chen Qun, Cheng Shengzhao, Li Chuanchuan, Zhou Xiangming

机构信息

School of Civil Engineering, Henan University of Engineering, Zhengzhou 451191, China.

School of Water Conservancy Engineering, Zhengzhou University, Zhengzhou 450001, China.

出版信息

Polymers (Basel). 2022 Apr 28;14(9):1797. doi: 10.3390/polym14091797.

Abstract

Basalt-fiber-reinforced plastic-bars-reinforced concrete beams (i.e., BFRP-RC beams) usually possess significant deformations compared to reinforced concrete beams due to the FRP bars having a lower Young's modulus. This paper investigates the effects of adding steel fibers into BFRP-RC beams to reduce their deflection. Ten BFRP-RC beams were prepared and tested to failure via four-point bending under cyclic loading. The experimental variables investigated include steel-fiber volume fraction and shape, BFRP reinforcement ratio, and concrete strength. The influences of steel fibers on ultimate moment capacity, service load moment, and deformation of the BFRP-RC beams were investigated. The results reveal that steel fibers significantly improved the ultimate moment capacity and service load moment of the BFRP-RC beams. The deflection and residual deflection of the BFRP-RC beams reinforced with 1.5% by volume steel fibers were 48.18% and 30.36% lower than their counterpart of the BFRP-RC beams without fibers. Under the same load, the deflection of the beams increased by 11% after the first stage of three loading and unloading cycles, while the deflection increased by only 8% after three unloading and reloading cycles in the second and third stages. Finally, a new analytical model for the deflection of the BFRP-RC beams with steel fibers under cyclic loading was established and validated by the experiment results from this study. The new model yielded better results than current models in the literature.

摘要

玄武岩纤维增强塑料筋混凝土梁(即BFRP-RC梁)由于FRP筋的杨氏模量较低,与钢筋混凝土梁相比通常具有显著的变形。本文研究了在BFRP-RC梁中添加钢纤维以减少其挠度的效果。制备了10根BFRP-RC梁,并通过四点循环加载弯曲试验直至破坏。研究的试验变量包括钢纤维体积分数和形状、BFRP配筋率和混凝土强度。研究了钢纤维对BFRP-RC梁极限弯矩承载力、使用荷载弯矩和变形的影响。结果表明,钢纤维显著提高了BFRP-RC梁的极限弯矩承载力和使用荷载弯矩。体积分数为1.5%的钢纤维增强BFRP-RC梁的挠度和残余挠度分别比无纤维的BFRP-RC梁低48.18%和30.36%。在相同荷载下,经过三个加载和卸载循环的第一阶段后,梁的挠度增加了11%,而在第二和第三阶段经过三个卸载和重新加载循环后,挠度仅增加了8%。最后,建立了钢纤维增强BFRP-RC梁在循环荷载下挠度的新分析模型,并通过本研究的试验结果进行了验证。新模型比文献中的现有模型产生了更好的结果。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cde4/9104418/fe7c4d9c833e/polymers-14-01797-g002a.jpg

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