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Fatigue Behavior of Concrete Beams Prestressed with Partially Bonded CFRP Bars Subjected to Cyclic Loads

机译:循环荷载作用下部分粘结CFRP筋预应力混凝土梁的疲劳性能

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摘要

The lack of ductility is the greatest concern in the applications of carbon fiber reinforced polymer (CFRP) materials, when used as pre-stressing reinforcements. To improve the ductility, a partially bonded FRP system which is intentionally unbonded in the middle part of the beam and bonded in both end parts of the beam has been developed and applied to prestressed concrete beams. While, many researchers investigated the instantaneous performance of partially bonded CFRP prestressed concrete beams, this study intended to evaluate the fatigue performance, the static load-carrying capacity after fatigue loading and ductility. Based on the fatigue loading tests followed by static loading tests, over-reinforced and web-confined partially bonded CFRP prestressed concrete beams exhibited satisfactory fatigue performance without cracks and stiffness degradation during fatigue loading. In addition, no degradation of load-carrying capacity was observed in static loading tests after the fatigue tests. The ductility index of concrete beams, prestressed with partially bonded CFRP bars, is combined with over-reinforcements and web-confinements, similar to that of beams prestressed with steel bars.
机译:当用作预应力增强材料时,延展性的缺乏是碳纤维增强聚合物(CFRP)材料应用中的最大关注点。为了提高延展性,已开发出一种部分粘结的FRP系统,该系统有意在梁的中部未粘结,而在梁的两个端部均粘结,并已应用于预应力混凝土梁。虽然许多研究人员研究了部分粘结的CFRP预应力混凝土梁的瞬时性能,但本研究旨在评估疲劳性能,疲劳荷载后的静载能力和延性。根据疲劳载荷测试以及随后的静态载荷测试,过度增强和腹板约束的部分CFRP预应力混凝土梁表现出令人满意的疲劳性能,并且在疲劳载荷过程中不会出现裂纹和刚度降低。另外,疲劳试验后的静态载荷试验中未观察到承载能力的降低。用部分粘结的CFRP筋预应力的混凝土梁的延性指数与过度钢筋和腹板约束相结合,类似于用钢筋预应力的梁。

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