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首页> 外文期刊>Karbala International Journal of Modern Science >Replacement of steel rebars by GFRP rebars in the concrete structures
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Replacement of steel rebars by GFRP rebars in the concrete structures

机译:在混凝土结构中用GFRP钢筋代替钢筋

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Glass fiber reinforced polymer (GFRP) has been confirmed to be the solution as a major development in strengthened concrete technology. Synthesis of GFRP rebars by using the longitudinal glass fibers (reinforcement material) and unsaturated polyester resin with 1% MEKP (matrix material) via manual process. GFRP rebars have diameter 12.5?mm (this value is equivalent to 0.5 inch; it's most common in foundations application). GFRP surfaces are modified by the inclusion of coarse sand to increase the bond strength of rebars with concrete. Then, the mechanical characterizations of reinforced concrete with GFRP rebars are performed and compared with that of steel rebars. Preparation of concrete samples (unreinforced concrete, smooth GFRP reinforced concrete, sand coated GFRP reinforced concrete and steel reinforced concrete) with fixed ratio of ingredients (1:1.5:3) and 0.5?W/C ratio were performed at two curing ages (7 and 28) days in ambient temperature. The value of volume fraction of GFRP and steel rebars in the reinforced concrete was (5 vol. %) equally distributed with specified distances in the mold. The results show the tensile strength of GFRP rebar is 593?MPa and bend strength is 760?MPa. The compressive strength was within reasonable range of concrete is 25.67?MPa. The flexural strength of unreinforced concrete is 3?MPa and reinforced concrete with GFRP rebar, especially sand coated GFRP RC exhibit flexural strength is 13.5?MPa as a result to increase bonding with concrete and higher strain is 10.5?MPa at 28 days than that of steel reinforced concrete at the expense of flexural modulus.
机译:玻璃纤维增​​强聚合物(GFRP)已被确认是解决方案,是增强混凝土技术的一项重大发展。通过使用纵向玻璃纤维(增强材料)和具有1%MEKP的不饱和聚酯树脂(基体材料)通过手动工艺合成GFRP钢筋。 GFRP钢筋的直径为12.5?mm(此值等于0.5英寸;在地基应用中最常见)。 GFRP表面可以通过添加粗砂进行改性,以提高钢筋与混凝土的粘结强度。然后,进行了带有GFRP钢筋的钢筋混凝土的力学表征,并将其与钢筋进行了比较。在两个养护龄期(7),以固定的配料比(1:1.5:3)和0.5?W / C的比例制备混凝土样品(未增强的混凝土,光滑的GFRP增强的混凝土,覆砂的GFRP增强的钢筋和钢增强的混凝土)。和28)天的环境温度。钢筋混凝土中的GFRP和钢筋的体积分数的值(5%体积)在模具中以指定的距离均匀分布。结果表明,GFRP钢筋的抗拉强度为593?MPa,弯曲强度为760?MPa。混凝土的抗压强度在合理范围内为25.67?MPa。非钢筋混凝土的抗弯强度为3?MPa,带有GFRP钢筋的钢筋混凝土,特别是砂膜GFRP RC表现出的抗弯强度为13.5?MPa,从而增加了与混凝土的粘结力,在28天时的应变为10.5?MPa。钢筋混凝土的弯曲模量为代价。

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