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钢、玻璃纤维增强塑料(GFRP)、玄武岩纤维增强塑料(BFRP)及混合配筋梁的抗弯试验

Flexural Testing of Steel-, GFRP-, BFRP-, and Hybrid Reinforced Beams.

作者信息

Elbawab Yazeed, Elbawab Youssef, El Zoughby Zeina, ElKadi Omar, AbouZeid Mohamed, Sayed-Ahmed Ezzeldin

机构信息

The American University in Cairo, New Cairo 11835, Egypt.

出版信息

Polymers (Basel). 2025 Jul 25;17(15):2027. doi: 10.3390/polym17152027.

Abstract

The construction industry is exploring alternatives to traditional steel reinforcement in concrete due to steel's corrosion vulnerability. Glass Fiber Reinforced Polymer (GFRP) and Basalt Fiber Reinforced Polymer (BFRP), known for their high tensile strength and corrosion resistance, are viable options. This study evaluates the flexural performance of concrete beams reinforced with GFRP, BFRP, and hybrid systems combining these materials with steel, following ACI 440.1R-15 guidelines. Twelve beams were assessed under three-point bending to compare their flexural strength, ductility, and failure modes against steel reinforcement. The results indicate that GFRP and BFRP beams achieve 8% and 12% higher ultimate load capacities but 38% and 58% lower deflections at failure than steel, respectively. Hybrid reinforcements enhance both load capacity and deflection performance (7% to 17% higher load with 11% to 58% lower deflection). However, GFRP and BFRP beams show reduced energy absorption, suggesting that hybrid systems could better support critical applications like seismic and impact-prone structures by improving ductility and load handling. In addition, BFRP beams predominantly failed due to debonding and concrete crushing, while GFRP beams failed due to bar rupture, reflecting key differences in their flexural failure mechanisms.

摘要

由于钢材易腐蚀,建筑行业正在探索混凝土中传统钢筋的替代材料。玻璃纤维增强聚合物(GFRP)和玄武岩纤维增强聚合物(BFRP)以其高抗拉强度和耐腐蚀性而闻名,是可行的选择。本研究按照美国混凝土学会(ACI)440.1R - 15指南,评估了用GFRP、BFRP以及将这些材料与钢材结合的混合体系增强的混凝土梁的抗弯性能。对12根梁进行了三点弯曲试验,以比较它们与钢筋相比的抗弯强度、延性和破坏模式。结果表明,GFRP梁和BFRP梁的极限荷载能力分别比钢筋梁高8%和12%,但破坏时的挠度分别比钢筋梁低38%和58%。混合配筋增强了梁的荷载能力和挠度性能(荷载提高7%至17%,挠度降低11%至58%)。然而,GFRP梁和BFRP梁的能量吸收减少,这表明混合体系通过提高延性和荷载承受能力,能够更好地支持地震和易受冲击结构等关键应用。此外,BFRP梁主要因粘结破坏和混凝土压碎而破坏,而GFRP梁因钢筋断裂而破坏,这反映了它们抗弯破坏机制的关键差异。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/05d7/12349201/9b247f2509aa/polymers-17-02027-g003.jpg

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