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Strengthening with carbon fiber reinforced polymer and glass fiber reinforced polymer of insufficient bending rigidity simple rectangular beams

机译:用抗弯刚度不足的简单矩形梁的碳纤维增强聚合物和玻璃纤维增​​强聚合物进行增强

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The reinforcement of rectangular sectioned and simple supported beams, with carbon and glass fibers against the bending strength was examined in this study. Reinforcement of the reinforced concrete beams with Carbon Fiber Reinforced Polymer(CFRP)andGlassFiber Reinforced Polymer(GFRP)were applied with the wrapping method on the entire tensile zone, and a bit enfolded on the side surface. Beams, with the dimensionsof 160 × 200 × 2200 mm, made up of C20(Concrete20)concrete and S420(Steel420) steel were used for this application. Moreover, crack behaviors in bending and shearing zones of the beams were examined. The displacement values of the beams were measured as 43.8, 22.8 and 32 mm for control, CFRP, and GFRP beams, respectively. Cracks occurred at the endpoint of the material that is adhered as two layers; in other words, they were seen 380 mm away from end of the beam. As result of all these findings, it can be stated that the reinforcement was successful; the beams could be reinforced with glass and carbon fibers; and glass fibers could be preferred economically.
机译:在这项研究中,研究了用碳纤维和玻璃纤维加固的矩形截面和简单支撑梁的抗弯强度。碳纤维增强聚合物(CFRP)和玻璃纤维增​​强聚合物(GFRP)对钢筋混凝土梁进行了缠绕处理,并在整个抗拉区上进行了包裹,并在侧面部分包裹了钢筋。横梁,尺寸为160倍; 200次此应用使用由C20(Concrete20)混凝土和S420(Steel420)钢组成的2200 mm。此外,检查了梁弯曲和剪切区域的裂纹行为。对于对照,CFRP和GFRP光束,其位移值分别为43.8、22.8和32 mm。在两层粘合的材料的端点处出现了裂纹。换句话说,它们距离光束末端380毫米。所有这些发现的结果可以说,加固是成功的。可以用玻璃纤维和碳纤维加固梁。并且玻璃纤维在经济上可能是首选。

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