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Performance of concrete beams prestressed with aramid fiber-reinforced polymer tendons

机译:芳纶纤维增强聚合物筋预应力混凝土梁的性能

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Deterioration related to steel corrosion of constructed facilities such as bridge decks and large structures has resulted in costly repairs and led to users' inconvenience. To increase the longevity of these facilities, an intelligent use of materials and new designs will be essential. There is an increasing worldwide interest in utilizing fiber-reinforced polymer (FRP) composites for civil infrastructure applications. This paper presents the results of an experimental study on the flexural behavior of concrete beams prestressed with aramid fiber-reinforced polymer (AFRP) tendons. Concrete beams prestressed with FRP tendons usually exhibit brittle failure due sto the brittle nature of the FRP composites. In order to improve the ductility of such beams, a series of flexural tests was conducted on four full-scale beams prestressed with bonded and/or unbounded aramid rectangular tendons. Results show that ductility can be significantly enhanced by using a combination of bonded and unbounded tendons or by the addition of nontensioned reburies.
机译:与诸如桥面和大型结构等建筑设施的钢腐蚀有关的劣化导致昂贵的维修费用并给用户带来不便。为了延长这些设备的使用寿命,对材料和新设计的智能使用将至关重要。在世界范围内,人们越来越关注将纤维增强聚合物(FRP)复合材料用于民用基础设施。本文介绍了对芳纶纤维增强聚合物(AFRP)筋预应力混凝土梁抗弯性能的试验研究结果。由于FRP复合材料的脆性,用FRP筋预应力的混凝土梁通常表现出脆性破坏。为了提高这种梁的延展性,对四根全尺寸梁进行了一系列弯曲试验,这些梁预应力了粘结和/或无粘结的芳纶矩形筋。结果表明,通过结合使用束缚和不束缚的肌腱或通过添加不张紧的补骨,可以显着提高延展性。

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