新型高强度钢丝 FBG 传感器的应变传递效率系数分析

IF 1.9 4区 工程技术 Q3 ENGINEERING, CIVIL
Kun Yan, Zhixiong Yi, Qi Li, Gang Liu, Chaoyue Jiang, Lu Wang
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引用次数: 0

摘要

精确测量缆索力对于可靠的桥梁状况评估至关重要,但这仍然是一项具有挑战性的任务。本研究提出使用高强度钢丝光纤布拉格光栅(HSW-FBG)传感器,将其嵌入由 5-7 毫米平行钢丝组成的常用缆索中。HSW-FBG 传感器便于直接测量应变,提供了一个简单、用户友好的封装过程,可在电缆的整个使用寿命期间进行高精度监测。结果表明,HSW-FBG 传感器在应变检测方面具有出色的线性和可重复性。封装层的长度对应变传递效率 (STE) 系数的影响最大,为达到最佳性能,封装层的长度至少应为 60 毫米。此外,封装层的弹性模量对 STE 系数的影响不大。遵守这些封装参数要求可确保 HSW-FBG 传感器的 STE 系数非常接近 1,从而无需校正即可进行高精度测量。我们对 HSW-FBG 传感器的 STE 系数进行了系统分析,确定了封装参数的合理值。这些发现为未来的工程应用奠定了基础,有助于在实际应用中精确测量电缆力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Analysis of Strain Transfer Efficiency Coefficient of a Novel High-strength Steel Wire FBG Sensor

Accurately measuring cable forces is crucial for reliable bridge condition evaluation, yet it remains a challenging task. This study proposes the use of a High-strength Steel Wire Fiber Bragg Grating (HSW-FBG) sensor embedded in commonly-used cables composed of 5–7 mm parallel steel wires. The HSW-FBG sensor facilitates direct strain measurement, offering a simple and user-friendly packaging process for high-precision monitoring throughout the cable’s lifespan. The results demonstrate excellent linearity and repeatability in strain detection of the HSW-FBG sensor. The length of the packaging layer has the most significant impact on the strain transfer efficiency (STE) coefficient and should be at least 60 mm required for optimal performance. Additionally, the elastic modulus of the packaging layer moderately affects the STE coefficient. Adhering to these packaging parameter requirements ensures that the STE coefficient of the HSW-FBG sensor is very close to 1, enabling for high-precision measurement without correction. A systematic analysis of the STE coefficient of the HSW-FBG sensor is conducted, determining reasonable values for the packaging parameters. These findings lay the groundwork for future engineering applications, facilitating accurate measurement of cable forces in practical scenarios.

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来源期刊
KSCE Journal of Civil Engineering
KSCE Journal of Civil Engineering ENGINEERING, CIVIL-
CiteScore
4.00
自引率
9.10%
发文量
329
审稿时长
4.8 months
期刊介绍: The KSCE Journal of Civil Engineering is a technical bimonthly journal of the Korean Society of Civil Engineers. The journal reports original study results (both academic and practical) on past practices and present information in all civil engineering fields. The journal publishes original papers within the broad field of civil engineering, which includes, but are not limited to, the following: coastal and harbor engineering, construction management, environmental engineering, geotechnical engineering, highway engineering, hydraulic engineering, information technology, nuclear power engineering, railroad engineering, structural engineering, surveying and geo-spatial engineering, transportation engineering, tunnel engineering, and water resources and hydrologic engineering
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