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首页> 外文期刊>Journal of Zhejiang University. Science >Strengthening reinforced concrete beams using prestressed glass fiber-reinforced polymer-Part I: Experimental study
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Strengthening reinforced concrete beams using prestressed glass fiber-reinforced polymer-Part I: Experimental study

机译:使用预应力玻璃纤维增​​强聚合物加固钢筋混凝土梁-第一部分:实验研究

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This work is aimed at studying the strengthening of reinforced concrete (R. C.) beams using prestressed glass fiber-reinforced polymer (PGFRP). Carbon fiber-reinforced polymer (CFRP) has recently become popular for use as repair or rehabilitation material for deteriorated R. C. structures, but because CFRP material is very stiff, the difference in CFRP sheet and concrete material properties is not favorable for transferring the prestress from CFRP sheets to R. C. members. Glass fiber-reinforced polymer (GFRP) sheets with Modulus of Elasticity quite close to that of concrete was chosen in this study. The load-carrying capacities (ultimate loads) and the deflections of strengthened R. C. beams using GFRP and PGFRP sheets were tested and compared. T- and J-shaped beams were used as the under-strengthened and over-strengthened beams. The GFRP sheets were prestressed to one-half their tensile capacities before being bonded to the T- and 1-shaped R. C. beams. The prestressed tension in the PGFRP sheets caused cambers in the R. C. beams without cracks on the tensile faces. The PGFRP sheets also enhanced the load-carrying capacity. The test results indicated that T-shaped beams with GFRP sheets increased in load-carrying capacity by 55 percent while the same beams with PGFRP sheets could increase load-carrying capacity by 100 percent. The _L-shaped beams with GFRP sheets could increase load-carrying capacity by 97 percent while the same beams with PGFRP sheets could increase the loading-carrying capacity by 117 percent. Under the same external loads, beams with GFRP sheets underwent larger deflections than beams with PGFRP sheets. While GFRP sheets strengthen R. C. beams, PGFRP sheets decrease the beams' ductility, especially for the over-strengthened beams (_L-shaped beams).
机译:这项工作旨在研究使用预应力玻璃纤维增​​强聚合物(PGFRP)加固钢筋混凝土(RC)梁。碳纤维增强聚合物(CFRP)最近已成为用于变质RC结构的修补材料或修复材料,但由于CFRP材料非常坚硬,因此CFRP片材和混凝土材料性能的差异不利于将预应力从CFRP传递出来RC成员的床单。在本研究中,选择了弹性模量与混凝土非常接近的玻璃纤维增​​强聚合物(GFRP)板。测试并比较了使用GFRP和PGFRP板的钢筋混凝土梁的承载能力(最终载荷)和挠度。 T型和J型梁用作强度不足和强度过高的梁。在粘结到T形和1形的RC梁上之前,将GFRP薄板预应力至其拉伸能力的一半。 PGFRP片材中的预应力使钢筋混凝土梁产生弯度,而抗拉面上没有裂纹。 PGFRP薄板还增强了承重能力。测试结果表明,采用GFRP板的T形梁的承载能力提高了55%,而采用PGFRP板的相同T型梁的承载能力提高了100%。带有GFRP板的_L形梁可将承载能力提高97%,而带有PGFRP板的相同梁可将承载能力提高117%。在相同的外部载荷下,带有GFRP板的梁的挠度比带有PGFRP板的梁更大。尽管GFRP板加固了钢筋混凝土梁,但PGFRP板却降低了梁的延展性,特别是对于过度加固的梁(_L形梁)。

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