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Shear behavior of reinforced concrete beams with GFRP needles as coarse aggregate partial replacement: Full-scale experiments

机译:GFRP针作为粗骨料部分替代的钢筋混凝土梁的抗剪性能:全面试验

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Fiber reinforced polymer (FRP) waste is becoming an environmental concern due to the widespread use and non-biodegradable nature of FRP composites. Cutting FRP waste into discrete reinforcements (referred to as 'needles' hereafter) as coarse aggregate in concrete has been suggested as a possible solution to FRP waste recycling. It has previously been observed in small specimens that FRP needles increase the tensile strength and energy absorption capacity of concrete. This paper presents an experimental investigation into the effect of GFRP needles as coarse aggregate partial replacement in concrete on shear behavior of full-scale reinforced concrete (RC) beams. A total of 10 RC beams without steel stirrups in the critical zone were tested under four-point bending. The volume replacement ratio of the coarse aggregate and the surface type of GFRP needles were chosen as the test parameters. GFRP needles, with either smooth or helically wrapped surfaces were added to the concrete mix to replace 5% or 10% of coarse aggregate by volume, respectively. All test beams failed in shear in a brittle manner with the ductility being slightly enhanced by the partial replacement of coarse aggregate using GFRP needles. An enhancement of 8%-10% in the load carrying capacity was observed in beams with helically wrapped needles, while beams with smooth needles showed a reduction in the load carrying capacity.
机译:由于FRP复合材料的广泛使用和不可生物降解的特性,纤维增强聚合物(FRP)废物正成为环境问题。有人建议将FRP废料切成混凝土中的粗骨料,切成离散的钢筋(以下称为“针”),作为FRP废料回收的一种可能解决方案。以前已经在小样本中观察到FRP针增加了混凝土的抗拉强度和能量吸收能力。本文提供了对GFRP针作为混凝土中的粗骨料部分置换对全尺寸钢筋混凝土(RC)梁抗剪性能影响的实验研究。在四点弯曲下测试了在关键区域内总共10条无钢箍筋的RC梁。选择粗骨料的体积置换率和GFRP针的表面类型作为测试参数。将具有光滑或螺旋缠绕表面的GFRP针添加到混凝土混合物中,以分别代替5%或10%的粗骨料。所有测试梁均以脆性方式剪切失败,通过使用GFRP针部分替换粗骨料,延展性略有提高。带有螺旋缠绕针的梁的荷重能力提高了8%-10%,而带有光滑针头的梁的荷重能力却下降了。

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  • 会议地点 Cape Town(ZA)
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    Department of Civil and Environmental Engineering The Hong Kong Polytechnic University Hong Kong China;

    School of Civil and Transportation Engineering Guangdong University of Technology Guangzhou China;

    Department of Civil and Environmental Engineering The Hong Kong Polytechnic University Hong Kong China Department of Ocean Science and Engineering Southern University of Science and Technology Shenzhen China;

    Civil Engineering Department City College of New York New York USA;

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