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Experimental study on compressive behavior of low and normal strength concrete confined by low-cost glass fiber reinforced polymers (GFRP)

机译:低成本玻璃纤维增​​强聚合物(GFRP)掺入的低和正常强度混凝土压缩行为的实验研究

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The main objective of this study is to investigate the performance of low-cost glass fiber reinforced polymer (GFRP) in strengthening normal (15MPa) and low strength (5MPa) concrete cylinders. Typically, the strengthening technique using FRP is often expensive and may not be economically used for reinforced concrete (RC) houses in rural area. In many cases, the concrete strength used for these house constructions is often low. Therefore, the capability of low-cost GFRP in strengthening low strength concrete compared with normal strength concrete has been investigated. A total of 8 cylindrical specimens with the dimensions of 150 mm x 300 mm (diameter x height) were tested under compressive loading. Half of these specimens possess compressive strength of 5 MPa and the rest have 15 MPa compressive strength. The specimens were unconfined and also confined with GFRP one, two and three layers. It was found that, for 5 MPa compressive strength cylinder, the compressive strength of the specimens has increase 2.27 MPa, 3.96 MPa and 4.31 MPa for one, two and three-layer GFRP wrapping respectively compared to the controlled specimen. For 15 MPa compressive strength cylinder, the compressive strength of the specimens has increase 1.75 MPa, 2.29 MPa and 2.95 MPa for one, two and three-layer GFRP wrapping respectively compared to the controlled specimen. The test result showed that the use of low-cost GFRP is one of the effective and economical method to improve compressive strength of low strength concrete.
机译:本研究的主要目的是探讨低成本玻璃纤维增​​强聚合物(GFRP)在强化正常(15MPa)和低强度(5MPa)混凝土中的性能。通常,使用FRP的强化技术通常是昂贵的,并且可能不会在农村地区的钢筋混凝土(RC)房屋中经济地使用。在许多情况下,用于这些房屋结构的混凝土强度通常很低。因此,研究了与正常强度混凝土相比强化低强度混凝土的低成本GFRP的能力。在压缩负载下测试总共8个圆柱形样品,尺寸为150mm×300mm(直径X高)。这些标本的一半具有5MPa的抗压强度,其余的具有15MPa抗压强度。标本不合适,也局限于GFRP,两层和三层。结果发现,对于5MPa压缩强度气缸,分别与受控样品相比,试样的压缩强度分别增加了2.27MPa,3.96MPa和4.31MPa的一个,两个和三层GFRP包装。对于15MPa压缩强度气缸,分别与受控样品相比,样品的抗压强度分别增加1.75MPa,2.29MPa和2.95MPa和2.95MPa的一个,两个和三层GFRP包装。试验结果表明,使用低成本GFRP是提高低强度混凝土抗压强度的有效且经济的方法之一。

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