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首页> 外文期刊>Journal of Composite Materials >Static and fatigue bond characteristics of FRP rebars embedded in fiber-reinforced concrete
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Static and fatigue bond characteristics of FRP rebars embedded in fiber-reinforced concrete

机译:纤维增强混凝土中FRP钢筋的静,疲劳粘结特性

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摘要

A research project was initiated to develop a nonferrous hybrid reinforcement system for concrete bridge decks by using continuous fiber-reinforced polymer (FRP) rebars and discrete randomly distributed polypropylene fibers. This hybrid system may eliminate problems related to the corrosion of steel reinforcement while providing requisite strength, stiffness, and desired ductility, which are shortcomings of FRP reinforcing system in plain concrete. This article presents the results of a part of this research program, i.e., the bond behaviors of this hybrid reinforcing system under monotonic and fatigue loading. Test results indicate that the addition of polypropylene fibers does not increase the ultimate bond strength, while providing enhanced ductile bond behavior. Fatigue loading can increase bond stiffness and bond capacity, while causing more brittle bond behavior. Polypropylene fibers can effectively decrease the bond degradation rate caused by fatigue loading.
机译:通过使用连续纤维增强聚合物(FRP)钢筋和离散的随机分布的聚丙烯纤维,开始了一项研究项目,以开发用于混凝土桥面板的非铁混合增强系统。这种混合系统可以消除与钢筋腐蚀有关的问题,同时提供所需的强度,刚度和所需的延展性,这是普通混凝土中FRP增强系统的缺点。本文介绍了该研究计划的一部分结果,即该混合增强系统在单调和疲劳载荷下的粘结行为。测试结果表明,聚丙烯纤维的添加不会增加最终的粘结强度,同时提供增强的延性粘结性能。疲劳载荷会增加粘结刚度和粘结能力,同时导致更脆的粘结行为。聚丙烯纤维可有效降低疲劳载荷引起的粘结降解率。

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