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A Smart Steel Strand for the Evaluation of Prestress Loss Distribution in Post-tensioned Concrete Structures

机译:用于评估后张混凝土结构预应力损失分布的智能钢绞线

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Prestress loss adversely affects the behavior of in-service post-tensioned structures in terms of deflection/camber, cracking, and ultimate capacity. It is thus important to determine the level of prestressing force at various loading stages from the initial prestressing force transfer to the structure, through different in-service loads, to the ultimate load of the structure. Prestress loss is difficult to evaluate due to several intertwined factors such as creep, shrinkage, relaxation, geometric configuration, distributed friction, and slippage of post-tensioned strands. Till date, there is no cost-effective and reliable sensor and installation technique for the long-term monitoring and evaluation of prestress loss. In this study, a smart fiber-reinforced polymer (FRP) rebar with an embedded novel optical fiber (OF) is developed for the distributed strain of post-tensioned strands. The new OF is an integrated global and local monitoring technology developed by combining the Brillouin optical time domain analysis/refectory sensor and the optical fiber Bragg grating into one single fiber. The FRP rebar and six steel wires were bundled together to form a seven-wire steel strand for the post-tensioning and monitoring of concrete structures. The performances of the smart rebar and strand were validated with static tests of a prestressed steel frame structure and a post-tensioned concrete beam. The smart steel strand can accurately measure the prestress loss at each loading stage, which agrees well with that measured by a pressure loading cell and predicted by a design code.
机译:预应力损失在挠度/弧度,开裂和极限承载力方面对使用中的后张结构产生不利影响。因此重要的是确定在各个载荷阶段的预应力水平,从初始预应力通过不同的使用载荷传递到结构,再到结构的最终载荷。由于一些相互交织的因素,例如蠕变,收缩,松弛,几何构型,分布的摩擦力和后张紧线的打滑,很难评估预应力损失。迄今为止,还没有一种经济有效且可靠的传感器和安装技术来长期监测和评估预应力损失。在这项研究中,开发了一种具有嵌入式新型光纤(OF)的智能纤维增强聚合物(FRP)钢筋,用于后张应力股线的分布应变。新的OF是将布里渊光学时域分析/反射传感器和光纤布拉格光栅组合成一条光纤而开发的一种集成的全球和本地监视技术。将FRP钢筋和6根钢丝捆在一起,形成7股钢丝,用于混凝土结构的后张紧和监控。通过对预应力钢框架结构和后张预应力混凝土梁进行的静态测试,验证了智能钢筋和钢绞线的性能。智能钢绞线可以准确地测量每个加载阶段的预应力损失,这与压力加载单元所测量的应力和设计规范所预测的应力损失非常吻合。

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