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Measuring strain fields in FRP strengthened RC shear walls using a distributed fiber optic sensor

机译:使用分布式光纤传感器测量FRP加固的RC剪力墙中的应变场

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摘要

This paper presents results on the applications of a truly distributed fiber-optic sensor (DFOS) in the cyclic testing of a reinforced concrete (RC) shear wall. To improve the performance of the wall, the RC shear wall is strengthened using externally bonded fiber-reinforced polymer (FRP) sheets. The DFOS is used as a replacement for conventional strain gauges to measure the strain distribution in the FRP sheet. Conventional electrical strain measurement techniques require a priori knowledge of measurement location and do not provide spatial information over a large area of a structural component, such as a wall. In recent years, the development of fiber-optic sensing technologies offers clear advantages compared to the conventional strain measurement approach. In particular, the DFOS has the unique capability of capturing strain at any location along the length of a fiber, without pre-determining the measurement locations before the test. The DFOS provides high precision strain measurement by optical frequency domain reflectometry. This allows full two-dimensional spatial strain measurement over the entire area of the shear wall. The DFOS can capture detailed response and failure mechanisms of the concrete and FRP as well as their contributions to the resistance of the shear wall. Experimental results are used to develop a better understanding of the behavior of RC shear walls retrofitted with FRP sheets, and assist in improving design guidelines for the application of FRP in RC structures. (C) 2017 Elsevier Ltd. All rights reserved.
机译:本文介绍了真正分布式光纤传感器(DFOS)在钢筋混凝土(RC)剪力墙的循环测试中的应用结果。为了提高墙体的性能,使用外部粘结的纤维增强聚合物(FRP)板加固了RC剪力墙。 DFOS可以代替传统的应变仪来测量FRP板中的应变分布。常规的电应变测量技术需要测量位置的先验知识,并且在诸如墙壁的结构部件的大面积上不提供空间信息。近年来,与常规应变测量方法相比,光纤传感技术的发展提供了明显的优势。特别是,DFOS具有独特的捕获沿光纤长度的任何位置处的应变的能力,而无需在测试前预先确定测量位置。 DFOS通过光频域反射仪提供高精度的应变测量。这允许在剪力墙的整个区域上进行完整的二维空间应变测量。 DFOS可以捕获混凝土和FRP的详细响应和破坏机制,以及它们对剪力墙抗力的贡献。实验结果被用来更好地理解加装FRP板的RC剪力墙的性能,并有助于改进将FRP应用于RC结构的设计准则。 (C)2017 Elsevier Ltd.保留所有权利。

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