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    • 3. 发明申请
    • Coated Optical Fiber and Grating and Processes for Forming Same
    • 涂层光纤及其成型工艺
    • US20070189687A1
    • 2007-08-16
    • US11562552
    • 2006-11-22
    • Christopher WalkerLarry BoardmanDora Paolucci
    • Christopher WalkerLarry BoardmanDora Paolucci
    • G02B6/036
    • G02B6/02123C03C25/106C03C25/12C03C25/6226C09D183/04G02B6/02104G02B6/02395G02B2006/02161C08L83/00C08L2666/52
    • A curable coating composition that may be converted to a cured coating for an optical fiber during a continuous fiber coating process. The curable coating composition comprises an organohydrogenpolysiloxane, an alkenyl functional polysiloxane, and an ultraviolet radiation absorbing hydrosilation photocatalyst in an amount for crosslink formation between the organohydrogenpolysiloxane and the alkenyl functional polysiloxane. The curable coating composition crosslinks under the influence of ultraviolet radiation to provide a cured coating having a high level of transparency to ultraviolet radiation. Application of heat to the curable coating composition accelerates the rate of cured coating formation. The high level of transparency of the cured coating allows from about 70% to about 99% of radiation of wavelengths from about 240 nm to about 275 nm to pass through the coating for writing a refractive index grating to produce an optical fiber Bragg grating .
    • 一种可固化的涂料组合物,其可在连续纤维涂布过程中转化为光纤的固化涂层。 可固化涂料组合物包含有机氢聚硅氧烷,链烯基官能聚硅氧烷和有机氢聚硅氧烷与烯基官能聚硅氧烷之间的交联形成量的紫外线吸收硅氢化光催化剂。 可固化涂料组合物在紫外线辐射的作用下交联,提供对紫外线辐射具有高透明度的固化涂层。 对可固化涂料组合物的热量加速了固化涂层形成的速度。 固化涂层的高水平透明度允许从约240nm至约275nm的波长的约70%至约99%的辐射通过用于写入折射率光栅的涂层以产生光纤布拉格光栅。