Experimental Investigation on RC Columns Confined by Jacket with Geopolymer Adhesive

Thakaa A. Hussien, Wissam D. Salman
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引用次数: 1

Abstract

Columns are one of the important structural members of engineering buildings. The impairment of reinforced concrete columns is one of the important problems affecting most structures, therefore the confinement of columns by fiber-reinforced polymers (FRP) is necessary to improve its behavior such as its load capacity, compressive strength, and ductility. The FRP used in the confinement is modern and wide application composite material in the field of civil engineering, which is pasted by epoxy. The fast impairment of epoxy at high temperatures leads to its replacement with an effective adhesive: geopolymers. This study presents the test result of an experimental investigation on confinement of six square RC columns with dimension (100*100*600mm) with geopolymer jacket under axial load conditions. The parameter considered is the jacketing material used (carbon fiber, plastic mesh, steel wire mesh, jute fiber, glass fiber mesh). Results of the test showed that confinement could improve the stiffness of the column by using a different type of material. The confinement with a carbon fiber reinforced geopolymers jackets can enhance the strength of the column after applying axial loading and improvement the performance of columns, but it is expensive. Where the increase in the load improvement and deformation capacity was (1.59 and 1.97), respectively, and the most effective jacket material in terms of economic cost and best performance in confinement operation consisted of (plastic mesh and steel wire mesh) compared to other types of material, with load enhancement by (1.41 and 1.27) and deformation capacity by (1.86 and 1.50), respectively compared with unconfined RC columns. Finally, the confinement by a different type of fiber-reinforced geopolymer adhesive is the most effective and used in the repair and rehabilitation of RC in the area with high-temperature climates.
地聚合物粘合剂夹套约束RC柱的试验研究
柱是工程建筑的重要构件之一。钢筋混凝土柱的损伤是影响大多数结构的重要问题之一,因此有必要采用纤维增强聚合物(FRP)对柱进行约束,以改善其承载能力、抗压强度和延性等性能。围护结构中使用的玻璃钢是现代土木工程领域应用广泛的复合材料,它是一种环氧树脂粘贴的复合材料。环氧树脂在高温下的快速损伤导致它被一种有效的粘合剂所取代:地聚合物。本文介绍了6根尺寸为(100*100*600mm)的含地聚合物护套方形钢筋混凝土柱在轴向荷载作用下的约束试验研究结果。考虑的参数是使用的护套材料(碳纤维、塑料网、钢丝网、黄麻纤维、玻璃纤维网)。试验结果表明,采用不同类型的约束材料可以提高柱的刚度。碳纤维增强地聚合物夹套约束可以提高柱的轴向载荷强度,改善柱的性能,但成本较高。其中,改进荷载和变形能力的增加分别为(1.59和1.97),与其他类型的材料相比,在经济成本和约束运行性能方面最有效的护套材料为(塑料网和钢丝网),与无约束RC柱相比,载荷增强分别为(1.41和1.27),变形能力分别为(1.86和1.50)。最后,不同类型的纤维增强地聚合物粘合剂的约束是最有效的,可用于高温气候地区的RC修复和修复。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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