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首页> 外文期刊>Sensors Journal, IEEE >Development of Highly-Sensitive and Reliable Fiber Bragg Grating Temperature Sensors With Gradient Metallic Coatings for Cryogenic Temperature Applications
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Development of Highly-Sensitive and Reliable Fiber Bragg Grating Temperature Sensors With Gradient Metallic Coatings for Cryogenic Temperature Applications

机译:具有用于低温金属涂层的高度敏感和可靠的光纤布拉格光栅温度传感器,用于低温应用

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摘要

Temperature monitoring is an essential task in cryogenic engineering to ensure the safety of equipment, where highly sensitive and reliable sensors are required to provide real-time and accurate information about temperature. Titanium (Ti)–copper (Cu)-coated fiber Bragg grating (FBG) temperature sensors with a gradient of material properties to minimize thermal stresses are hence fabricated by a combination of Ti/Cu magnetron sputtering and Cu electroplating. The thermal characteristics and thermal fatigue behavior of the sensors are investigated. The sensors exhibit significantly higher sensitivity than that of the bare FBGs at cryogenic temperatures down to 79 K, with good repeatability and stability. Their response to the temperature changes can be precisely described by a quadratic-polynomial equation. No obvious variations in the zero-point, the reflection spectrum, and the temperature sensitivity of the sensors exposed to thermal fatigue from 77 K to room temperature are observed before fatigue failure which could be attributed to the formation and growth of subcritical cracks within the fiber rather than that of fatigue cracks within the metallic coatings, as a result of the cyclic thermal stresses induced by the large differences in coefficient of thermal expansion between the silica optical fiber and the metallic coating materials. The results demonstrate that the multilayer metal-coated FBG sensors provide great potential for temperature measurements or temperature compensation in cryogenic engineering by proper selection of metallic coatings with a gradient of material properties.
机译:温度监测是低温工程中的必备任务,以确保设备的安全性,在那里需要高度敏感和可靠的传感器来提供有关温度的实时和准确的信息。由于Ti / Cu磁控溅射和Cu电镀的组合,因此通过Ti / Cu磁控溅射和Cu电镀的组合制造具有梯度的钛(Ti) - 涂覆的纤维布拉格光栅(FBG)温度传感器以最小化热应力。研究了传感器的热特性和热疲劳行为。传感器的敏感性显着高于低温温度下降至79k的裸FBG,具有良好的重复性和稳定性。可以通过二次多项式方程精确描述对温度变化的响应。在疲劳故障之前观察到零点,反射光谱和暴露于热疲劳到室温的传感器的温度敏感性的明显变化,这可能归因于纤维内亚临界裂缝的形成和生长由于在二氧化硅光纤和金属涂料之间的热膨胀系数的巨大差异引起的循环热应力,而不是金属涂层内的疲劳裂缝。 The results demonstrate that the multilayer metal-coated FBG sensors provide great potential for temperature measurements or temperature compensation in cryogenic engineering by proper selection of metallic coatings with a gradient of material properties.

著录项

  • 来源
    《Sensors Journal, IEEE》 |2021年第4期|4652-4663|共12页
  • 作者

    Ya-Li Wang; Yun Tu; Shan-Tung Tu;

  • 作者单位

    Key Lab of Pressure Systems and Safety (Ministry of Education) School of Mechanical and Power Engineering East China University of Science and Technology Shanghai China;

    Key Lab of Pressure Systems and Safety (Ministry of Education) School of Mechanical and Power Engineering East China University of Science and Technology Shanghai China;

    Key Lab of Pressure Systems and Safety (Ministry of Education) School of Mechanical and Power Engineering East China University of Science and Technology Shanghai China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Temperature sensors; Sensors; Fiber gratings; Coatings; Optical fiber sensors; Cryogenics; Optical fibers;

    机译:温度传感器;传感器;光纤光栅;涂层;光纤传感器;低温纤维;光纤;

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