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Response of Concrete Beams Partially Prestressed with External Unbonded Carbon Fiber-Reinforced Polymer Tendons

机译:混凝土梁的响应部分预应力用外部未粘结的碳纤维增强聚合物肌腱

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To assess the behavior of concrete beams partially prestressed with external unbonded carbon fiber-reinforced polymer (CFRP) tendons, three specimens prestressed with CFRP tendons and one reference specimen prestressed with external steel tendons were tested to failure under third point loading. It was found that the load-deflection curve of all specimens exhibited three stages, namely, elastic, cracked-elastic and plastic. The transition from the elastic to the cracked-elastic stage was caused by the development of cracks at the bottom of the beam, while the transition from the cracked-elastic to the plastic stage was caused by yielding of the non-prestressed steel. For beams prestressed with external CFRP tendons and that with external steel tendons, the relationships between the stress increment in external tendons and the mid-span deflection of specimens were linear or approximately linear. Although CFRP materials are brittle in nature and behave linearly elastically until failure, proper combination of external CFRP prestress tendons with internal steel reinforcing bars can impart ductility to the beams.
机译:为了评估与外部未粘结的碳纤维增强聚合物(CFRP)肌腱部分预应力的混凝土梁的行为,用CFRP肌腱预应力的三种试样和预应力用外钢肌腱预应力进行预应力,以在第三点载荷下发生故障。发现所有样本的载荷偏转曲线表现出三个阶段,即弹性,裂纹 - 弹性和塑料。从弹性到裂纹 - 弹性级的过渡是由梁底部的裂缝的发展引起的,而从裂缝弹性到塑料阶段的过渡是由不预先预应力的钢引起的。对于用外部CFRP肌腱预应力的光束,与外部钢筋肌腱,外肌腱中应力增量与样品中跨度偏转之间的关系是线性的或大致线性的。虽然CFRP材料本质上是脆性的,但线性地弹性地表现为失效,但外部CFRP预应力筋与内钢加强杆的适当组合可以赋予光束的延展性。

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