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考虑混凝土弹塑性的植入式GFRP封装FBG传感器应变传递分析

彭涛 李佳龙 任东兴

传感技术学报2024,Vol.37Issue(2):216-223,8.
传感技术学报2024,Vol.37Issue(2):216-223,8.DOI:10.3969/j.issn.1004-1699.2024.02.006

考虑混凝土弹塑性的植入式GFRP封装FBG传感器应变传递分析

Strain Transfer Analysis of the Embeddable GFRP-Packaged FBG Sensors Considering the Elastoplasticity of the Concrete Host

彭涛 1李佳龙 1任东兴1

作者信息

  • 1. 中冶成都勘察研究总院有限公司,四川 成都 610023
  • 折叠

摘要

Abstract

The strain transfer loss introduced by the packaging layer of the industrialized FBG sensor often makes it has strain transfer error,so it is necessary to conduct strain transfer analysis.Most previous studies focus on strain transfer analysis when the host layer is linearly elastic,but the strain transfer law of concrete structures after elastic-plastic deformation is still unclear.The strain transfer anal-ysis on the embedded GFRP-FBG sensor considering the concrete's nonlinear elastic constitutive relationship is conducted,and the strain transfer relationship between the host material and FBG is derived.The validity of the theoretical derivation is verified by finite el-ement simulation.Based on theoretical analysis,the effects of concrete elastoplastic evolution,concrete mark,the radius of the sensor,and gauge length on strain transfer efficiency are discussed,and the size design of the GFRP-FBG sensor is analyzed.The results show that the average strain transfer rate changes little in the elastic stage of concrete but decreases significantly in the plastic stage.Moreo-ver,the concrete mark,the sensor radius,and the gauge length all have a significant impact on the strain transfer efficiency of the sen-sor.This research can be widely used for strain transfer error modification and the design of embedded FBG sensors.

关键词

光纤传感/植入式FBG传感器/应变传递/混凝土弹塑性/理论分析

Key words

optical fiber sensing/embedded fbg sensor/strain transfer/elastoplasticity of concrete/theoretical analysis

分类

信息技术与安全科学

引用本文复制引用

彭涛,李佳龙,任东兴..考虑混凝土弹塑性的植入式GFRP封装FBG传感器应变传递分析[J].传感技术学报,2024,37(2):216-223,8.

基金项目

国家自然科学基金青年项目(42107210) (42107210)

四川省自然科学基金青年项目(2022NSFSC1112) (2022NSFSC1112)

传感技术学报

OA北大核心CSTPCD

1004-1699

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