• Title/Summary/Keyword: fluoroacrylate

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MMA/fluoroalkyl methacrylate copolymers as cladding materials for polymer optical fibers (고분자광섬유 클래드용 MMA/fluoroalkyl methacrylate 공중합체)

  • 이무성;김영필;정민진;김진봉
    • Proceedings of the Korean Fiber Society Conference
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    • 2003.04a
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    • pp.327-328
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    • 2003
  • 최근, 가정 안까지 고속광통신망이 구축되면서 폴리머광섬유 (polymer optical fiber, POF)에 대한 관심이 매우 증가하고 있다[l,2] POF는 빛을 전송하는 코어층과 내부전반사를 유도하면서 코어를 보호하는 클래드 층으로 구성되어 있다. 빛을 직접 전송하지 않으나 POF가 최적의 성능을 보이기 위해서는 적절한 클래드 선택이 중요하다. 그러나 PVDF/PMMA 블렌드, fluoroacrylate, VDF-HFP 공중합체 등이 클래드용 재료로 사용되고 있다는 사실만이 알려져 있을 뿐 보다 자세한 정보는 보고된 바 없다. (중략)

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Preparation and Characterization of Fluoroacrylate Copolymer by Emulsion Polymerization (유화 중합법에 의한 불소아크릴레이트 공중합체 제조)

  • 김동옥;김지현
    • Polymer(Korea)
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    • v.27 no.6
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    • pp.528-535
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    • 2003
  • The effects of surfactants, organic solvents, and functional monomers on the emulsion polymerization of perfluoroalkyleoylacryaltes and n-alkylacrylates were investigated. In particular, the dependence of the surface properties, contact angle and water repellency on the crystal melting temperature (T$\_$m/) of the fluorocopolymer and the variation of polymer latex particle sizes was investigated. Using WAXD experiments and synthesizing different types of fluorocopolymers which have fallowing fluoroacrylaytes [CH$_2$=CHCO$_2$CH,$_2$(CF$_2$CF$_2$) nH] (n = 4, 5 or 6), the relationship between the molecular packing structure of pendent side groups of fluorocopolymers and the surface properties was also investigated. We observed that the structure of primary carbon atoms of pendent side groups of fluorocopolymers plays key role in determining the surface properties.s.

Multiplexed Hard-Polymer-Clad Fiber Temperature Sensor Using An Optical Time-Domain Reflectometer

  • Lee, Jung-Ryul;Kim, Hyeng-Cheol
    • International Journal of Aeronautical and Space Sciences
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    • v.17 no.1
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    • pp.37-44
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    • 2016
  • Optical fiber temperature sensing systems have incomparable advantages over traditional electrical-cable-based monitoring systems. However, the fiber optic interrogators and sensors have often been rejected as a temperature monitoring technology in real-world industrial applications because of high cost and over-specification. This study proposes a multiplexed fiber optic temperature monitoring sensor system using an economical Optical Time-Domain Reflectometer (OTDR) and Hard-Polymer-Clad Fiber (HPCF). HPCF is a special optical fiber in which a hard polymer cladding made of fluoroacrylate acts as a protective coating for an inner silica core. An OTDR is an optical loss measurement system that provides optical loss and event distance measurement in real time. A temperature sensor array with the five sensor nodes at 10-m interval was economically and quickly made by locally stripping HPCF clad through photo-thermal and photo-chemical processes using a continuous/pulse hybrid-mode laser. The exposed cores created backscattering signals in the OTDR attenuation trace. It was demonstrated that the backscattering peaks were independently sensitive to temperature variation. Since the 1.5-mm-long exposed core showed a 5-m-wide backscattering peak, the OTDR with a spatial resolution of 40 mm allows for making a sensor node at every 5 m for independent multiplexing. The performance of the sensor node included an operating range of up to $120^{\circ}C$, a resolution of $0.59^{\circ}C$, and a temperature sensitivity of $-0.00967dB/^{\circ}C$. Temperature monitoring errors in the environment tests stood at $0.76^{\circ}C$ and $0.36^{\circ}C$ under the temperature variation of the unstrapped fiber region and the vibration of the sensor node. The small sensitivities to the environment and the economic feasibility of the highly multiplexed HPCF temperature monitoring sensor system will be important advantages for use as system-integrated temperature sensors.