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A Sensor-Type PC Strand with an Embedded FBG Sensor for Monitoring Prestress Forces

机译:带有嵌入式FBG传感器的传感器型PC绞线用于监控预应力

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摘要

Prestressed Concrete Wire and Strand (PC) strands are the most used materials to introduce prestress in a Pre-Stressed Concrete (PSC) structure. However, it is difficult to evaluate the final prestress force of the PC strand after prestressing or its residual prestress force after completion of the structure on site. This impossibility to assess eventual loss of prestress of the PC strand has resulted in a number of serious accidents and even in the collapse of several structures. This situation stresses the necessity to maintain the prestress force residual or after prestressing for the evaluation of the health of the concrete structure throughout its lifespan. Recently, several researchers have studied methods enabling one to verify the prestress force by inserting an optical fiber sensor inside the strand but failed to provide simple techniques for the fabrication of these devices to fulfill measurement performance from the design prestress to failure. Moreover, these methods require the additional installation of electrical resistance strain gages, displacement sensors and load cells on the outer surface of the structure for long-term precise measurement. This paper proposes a method enabling one to evaluate precisely and effectively the prestress force of the PC strand and intends to verify the applicability of the proposed method on actual concrete structures. To that end, an innovative PC strand is developed by embedding a Fiber Bragg Grating (FBG) sensor in the core wire of the PC strand so as to enable short term as well as long term monitoring. The measurement performance of the developed strand is then evaluated experimentally and the reliability of the monitoring data is assessed.
机译:预应力混凝土线束(PC)股是在预应力混凝土(PSC)结构中引入预应力的最常用材料。但是,很难在预应力后评估PC股的最终预应力或现场完成结构后评估其残余预应力。无法评估PC股预应力的最终损失的这种可能性导致了许多严重的事故,甚至导致了一些结构的倒塌。这种情况强调必须保留预应力或在预应力后保持残余力,以评估混凝土结构的整个寿命。最近,几位研究人员研究了一种方法,该方法可以通过将光纤传感器插入绞线内部来验证预应力,但未能提供制造这些设备的简单技术来满足从设计预应力到破坏的测量性能。此外,这些方法需要在结构的外表面上额外安装电阻应变计,位移传感器和称重传感器,以进行长期精确测量。本文提出了一种能够准确有效地评估PC股线预应力的方法,并试图验证该方法在实际混凝土结构中的适用性。为此,通过在PC股的芯线中嵌入光纤布拉格光栅(FBG)传感器,开发出了创新的PC股,以实现短期和长期监控。然后,通过实验评估已开发链的测量性能,并评估监视数据的可靠性。

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