School of Civil Engineering, Harbin Institute of Technology, Harbin 150090, China.
Sensors (Basel). 2012;12(5):5380-94. doi: 10.3390/s120505380. Epub 2012 Apr 27.
For the safety of prestressed structures, prestress loss is a critical issue that will increase with structural damage, so it is necessary to investigate prestress loss of prestressed structures under different damage scenarios. Unfortunately, to date, no qualified techniques are available due to difficulty for sensors to survive in harsh construction environments of long service life and large span. In this paper, a novel smart steel strand based on the Brillouin optical time domain analysis (BOTDA) sensing technique was designed and manufactured, and then series of tests were used to characterize properties of the smart steel strands. Based on prestress loss principle analysis of damaged structures, laboratory tests of two similar beams with different damages were used to verify the concept of full-scale prestress loss monitoring of damaged reinforced concrete (RC) beams by using the smart steel strands. The prestress losses obtained from the Brillouin sensors are compared with that from conventional sensors, which provided the evolution law of prestress losses of damaged RC beams. The monitoring results from the proposed smart strand can reveal both spatial distribution and time history of prestress losses of damaged RC beams.
为了确保预应力结构的安全,预应力损失是一个关键问题,随着结构损伤的增加,预应力损失会不断增加,因此有必要研究不同损伤情况下预应力结构的预应力损失。不幸的是,迄今为止,由于传感器在长期使用寿命和大跨度的恶劣施工环境中难以生存,因此还没有合格的技术。本文设计并制造了一种基于布里渊光时域分析(BOTDA)传感技术的新型智能钢绞线,并进行了一系列测试以表征智能钢绞线的性能。基于损伤结构预应力损失原理分析,通过对两个具有不同损伤的相似梁进行实验室测试,验证了利用智能钢绞线对受损钢筋混凝土(RC)梁进行全尺寸预应力损失监测的概念。从布里渊传感器获得的预应力损失与从传统传感器获得的预应力损失进行了比较,为受损 RC 梁的预应力损失演变规律提供了依据。所提出的智能钢绞线的监测结果可以揭示受损 RC 梁的预应力损失的空间分布和时间历史。