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传感用耐热光纤技术 被引量:1

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摘要 分析了普通光纤高温下的破坏机理,设计了新型耐热光纤的结构,通过采用分解温度高的有机聚合物作为光纤的内涂层和缓冲层,不但可以大幅度提高光纤的耐热性能,而且光纤的光学性能良好.实验制备出的800余米光纤样品,主要性能可以满足实际应用的基本要求,经过在200℃的温度下,恒温24小时的高温试验,光纤涂层没有受到明显破坏,仍然具有一定的机械强度,可以满足200℃环境下的使用要求.
出处 《光电子.激光》 EI CAS CSCD 北大核心 2004年第z1期251-253,共3页 Journal of Optoelectronics·Laser
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参考文献5

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同被引文献13

  • 1武湛君,万里冰,张博明,赵海涛.光纤光栅应变传感器监测复合材料层板疲劳过程[J].复合材料学报,2004,21(6):75-81. 被引量:9
  • 2李智忠,王鑫,杨华勇,孙崇峰,胡永明.光纤光栅二次涂敷封装温度特性的研究[J].光电子.激光,2006,17(10):1191-1195. 被引量:9
  • 3Shiue J,Matthewson M J,Stupak P R,Rondinella V V. Effects of silica nano particle addition to the secondary coating of dual-coated optical fibers[J].Acta Materialia,2006,(10):2631-2636.
  • 4李 晗.UV固化改性环氧丙烯酸酯耐热光纤涂层的研究[D]武汉:武汉理工大学,2011.
  • 5McKie A D W,Addison R C Jr. Laser based ultrasonic inspection with a fiber-coupled scanning cassegrain system[J].Ultrasonics,2002,(10):1037-1046.
  • 6Glisic Branko,Inaudispie Daniele. Integration of long-gage fiber-optic sensor into a fiber-reinforced composite sensing tape[A].San Diego,USA:SPIE,2003.2-6.
  • 7Ryczkowski J,Rayss J. Polymer protective coatings of optical fibres[J].Vibrational Spectroscopy,2000,(1/2):95-100.
  • 8Wang Weizhi,Cheng Kexun. Synthesis and characterization of ultraviolet light-curable resin for optical fiber coating[J].European Polymer Journal,2003,(09):1891-1897.
  • 9Masson F,Decker C,Andreb S,Andrieu X. UV curable formulations for UV-transparent optical fiber coatings I:Acrylic resins[J].Progress in Organic Coatings,2004,(01):1-12.
  • 10李刚,欧书方,徐剑.石英光纤涂层材料[J].涂料技术与文摘,2008,29(6):2-5. 被引量:10

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