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Experimental Study on the Effectiveness of Inorganic Bonding Materials for Near-Surface Mounting Shear Strengthening of Prestressed Concrete Beams

机译:预应力混凝土梁近表面安装剪切强化无机粘接材料有效性的实验研究

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摘要

Use of organic resins such as epoxy and vinyl esters as bonding materials in fibre reinforced polymer (FRP) strengthening of concrete members is widely accepted. However, the performance of organic resins is compromised when exposed to high temperature and extreme weather conditions leading to reduced durability of the strengthened systems. The present study attempts to evaluate the effectiveness of inorganic (cement mortar and geopolymer mortar) bonding materials for shear strengthening of prestressed concrete (PSC) beams using the near-surface mounting (NSM) technique. Different types of bonding materials are used in this study for NSM shear strengthening including: (i) epoxy resin, (ii) high strength cement grout (HSCG) and (iii) geopolymer mortar. Bond tests were first conducted to evaluate the pull-out/bond strength of different bonding materials. Bond tests revealed that epoxy resin had the highest bond strength followed by geopolymer mortar and HSCG. Sixteen full-scale PSC beams were cast with and without stirrups. The beams were strengthened using NSM CFRP laminates oriented at 45-degree configuration and then tested under a three-point bending configuration. Experimental results revealed that the performance of high strength cement grout and geopolymer mortar was similar but with a lesser efficiency compared to the epoxy resin.
机译:广泛接受使用与环氧和乙烯基酯如环氧树脂和乙烯基酯的粘合材料等利用混凝土构件的粘合材料。然而,当暴露于高温和极端天气条件下,有机树脂的性能受到导致加强系统的耐久性降低的。本研究试图评估无机(水泥砂浆和地砂浆)粘合材料的有效性,使用近表面安装(NSM)技术进行预应力混凝土(PSC)梁的剪切强化。在该研究中使用不同类型的粘合材料,用于NSM剪切强化,包括:(I)环氧树脂,(II)高强度水泥灌浆(HSCG)和(III)地质砂浆。首先进行粘合试验以评估不同粘合材料的拉出/粘合强度。粘合试验表明,环氧树脂具有最高的粘合强度,然后是地质砂浆和HSCG。用搅拌器铸造十六个全规模的PSC梁。使用以45度构型定向的NSM CFRP层压板加强光束,然后在三点弯曲配置下进行测试。实验结果表明,与环氧树脂相比,高强度水泥灌浆和地缘砂浆的性能相似但效率较小。

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