Uniaxial Tensile Behavior of Reinforced Concrete Elements Strengthened by Carbon Fiber Sheet

玻璃钢 Pub Date : 1999-08-01 DOI:10.14359/5665
Y. Sato, K. Shouji, T. Ueda, Y. Kakuta
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引用次数: 9

Abstract

The uniaxial tensile tests of Reinforced Concrete elements with Carbon Fiber Sheet (RCC) are conducted to clarify the basic mechanical characteristics which affect the tension stiffness of RCC. This paper mainly presents the difference between RCC and ordinary reinforced concrete (RC) member in the load carrying capacity, the average crack spacing, stress and/or strain distributions of steel and the average stress - strain relationship of concrete. Crack spacing of RCC becomes smaller between 35% and 60% of that in RC as the amount of Carbon Fiber Sheet (CFS) increases. The strain distributions of steel in RCC before and after the yielding of steel differ from those in RC. The tension stiffness developed by the bond action of CFS increases as the amount of CFS increases but that of steel becomes less. With the steel and CFS contributions combined, the tension stiffness of concrete as a whole generally becomes greater than that in RC. There is, however, a case in which tension stiffness of concrete in RCC decreases more than that in RC, because the average bond stress of steel rapidly decreases after the yielding of steel.
碳纤维板加固钢筋混凝土构件的单轴拉伸性能
通过碳纤维薄板钢筋混凝土构件的单轴拉伸试验,阐明了影响碳纤维薄板抗拉刚度的基本力学特性。本文主要介绍了碾压混凝土与普通钢筋混凝土构件在承载能力、平均裂缝间距、钢的应力和/或应变分布以及混凝土的平均应力-应变关系等方面的差异。随着碳纤维片材用量的增加,碾压混凝土的裂缝间距减小,为混凝土裂缝间距的35% ~ 60%。钢筋混凝土屈服前后的应变分布与钢筋混凝土不同。碳纤维的粘结作用产生的抗拉刚度随着碳纤维用量的增加而增大,而钢的抗拉刚度减小。当钢和CFS共同作用时,混凝土整体抗拉刚度一般大于RC。然而,由于钢筋屈服后,钢筋的平均粘结应力迅速下降,碾压混凝土的混凝土抗拉刚度下降幅度大于钢筋混凝土。
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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