准分布式FBG钢绞线传感性能分析与RPC梁变形监测试验研究
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1.桂林理工大学 地球科学学院,广西 桂林 541004 ;2.广西智慧结构材料工程研究中心,广西 桂林 541004 ; 3.湖南路桥建设集团有限责任公司,湖南 长沙 410125 ;4.广西汉西鸣科技有限责任公司,广西 桂林 541004 ; 5.湖南省交通规划勘察设计院有限公司,湖南 长沙 410200

作者简介:

沈全喜(1992-),男,河南省信阳市人,博士研究生。

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基金项目:

国家自然科学基金项目(52068014);湖南省交通运输厅科技计划项目(202015)

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Sensing-Performance Analysis of Quasi-Distributed FBG Steel Strands and Experimental Study on Deformation Monitoring of RPC Beams
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1.College of Earth Sciences, Guilin University of Technology, Guilin 541004 , China ; 2.Guangxi Intelligent Structural Materials Engineering Research Center, Guilin 541004 , China ; 3.Hunan Road and Bridge Construction Group Co., Ltd., Changsha 410125 , China ; 4.Guangxi HCM Technology Co., Ltd., Guilin 541004 , China ; 5.Hunan Provincial Communications Planning, Survey and Design Institute Co., Ltd., Changsha 410200 , China

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    摘要:

    针对预应力混凝土结构预应力筋受力状态的监测难题,提出了凹槽预压封装准分布式FBG技术,解决了FBG存活率低和监测量程不够的技术难题。通过循环张拉试验和预应力RPC梁加载试验,探究了准分布式 FBG钢绞线的传感性能及其对混凝土结构应力状态的监测效果。结果表明,FBG存活率为100%,应变灵敏度为 0.001 18~0.001 20 nm/με,应变传递率β≥0.98,线性度≤2.096%,回差≤1.043%,重复性≤3.615%,总不确定度≤3.881%。准分布式FBG钢绞线可准确识别RPC梁的损伤过程,45%fptk 、65%fptk 、75%fptk (fptk 为钢绞线极限强度)预应力RPC梁的开裂荷载分别为100 kN、130 kN、140 kN,纵筋屈服荷载分别为260 kN、280 kN、300 kN。RPC梁挠度和钢绞线应变为抛物线型分布,最大挠度分别为27.691 mm、20.153 mm、14.602 mm,最大应变分别为4 163.025 με、3 715.126 με、1 658.487 με。准分布式FBG为预应力结构的整体监测提供了思路。

    Abstract:

    To address the monitoring of the stress state of prestressed steel strands in prestressed concrete struc tures, a groove preloading encapsulation quasi-distributed FBG technology is proposed to solve the low survival rate and insufficient monitoring range of FBG. The sensing performance of quasi-distributed FBG steel strands and their monitoring effect on the stress state of concrete structures are investigated via cyclic tension and prestressed RPC beam loading tests. The results show that the survival rate of the FBG is 100%, the strain sensitivity is 0.001 18 0.001 20 nm/με, the strain transfer rate β≥0.98, the linearity ≤2.096%, the hysteresis ≤1.043%, the repeat ability ≤3.615%, and the total uncertainty ≤3.881%. The quasi-distributed FBG steel strand accurately identifies the damage process of the RPC beams. The cracking loads of 45% fptk , 65% fptk , and 75% fptk prestressed RPC beams are 100, 130, and 140 kN, respectively, and the yield loads of the corresponding longitudinal bars are 260, 280, and 300 kN, respectively. The deflection of RPC beams and the strain of steel strands indicate a parabolic dis tribution, with maximum deflections of 27.691, 20.153, and 14.602 mm, respectively, and maximum strains of 4 163.025 με, 3 715.126 με, and 1 658.487 με, respectively. The quasi-distributed FBG provides ideas for the o verall monitoring of prestressed structures.

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沈全喜,曹阳,熊城洋,黄家柱,刘榕,朱万旭.准分布式FBG钢绞线传感性能分析与RPC梁变形监测试验研究[J].压电与声光,2024,46(5):801-812. SHEN Quanxi, CAO Yang, XIONG Chengyang, HUANG Jiazhu, LIU Rong, ZHU Wanxu. Sensing-Performance Analysis of Quasi-Distributed FBG Steel Strands and Experimental Study on Deformation Monitoring of RPC Beams[J]. PIEZOELECTRICS AND ACOUSTOOPTICS

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  • 收稿日期:2024-07-18
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  • 在线发布日期: 2023-11-06
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