摘要: 【目的】解决传统光纤涂层在高温高湿环境下耐热性不足、界面匹配性差及耐水性不佳的问题,提升涂层在严苛环境下的长期可靠性。【方法】以八乙烯基倍半硅氧烷( OV-POSS)、丙烯酸十三氟辛酯( G06c)、丙烯酸缩水甘油酯( GMA)和丙烯酸羟丙酯( HPA)为原料,通过自由基共聚合成了含 POSS/羟基 /环氧基团的杂化预聚体( POSS-FG-OH);再与聚四氢呋喃二醇( PTMG2000)、异佛尔酮二异氰酸酯( IPDI)经序列聚合制备长链含氟 POSS-聚氨酯( F-POSS-PU);最后通过甲基丙烯酸酯化反应引入光固化双键,获得 UV固化含氟 POSS-聚氨酯( UV-F-POSS-PU)光纤涂层。采用 FT-IR、GPC、TGA、TMA等对产物结构与性能进行表征,系统研究了 POSS添加量对涂层耐热性、耐水性、力学性能、光固化行为及光纤传输损耗的影响。【结果】当 OV-POSS添加量为 45%时,所制备的涂层有效避免了无机纳米粒子的团聚,显著提升了涂层的热稳定性、尺寸稳定性、耐水性和界面附着力,使光纤在高温高湿环境下的信号传输可靠性大幅提高。【结论】该材料在航空航天、地质勘探等极端环境用特种光纤领域具有重要应用前景。
关键词:
聚倍半硅氧烷,
含氟聚氨酯,
紫外光固化,
光纤涂层
Abstract: [Objective] To address the issues of insufficient heat resistance,poor interfacial compatibility,and inadequate water resistance of conventional optical fiber coatings under high-temperature and high-humidity environments,and to enhance their long-term reliability under harsh conditions,[Methods]a hybrid prepolymer containing POSS/hydroxyl/epoxy groups(POSS-FG-OH) was first synthesized via free radical copolymerization of octavinyl polyhedral oligomeric silsesquioxane(OV-POSS), tridecafluorooctyl acrylate(G06c), glycidyl methacrylate(GMA), and hydroxypropyl acrylate(HPA). Subsequently,long-chain fluorinated POSS-polyurethane(F-POSS-PU) was prepared by sequential polymerization of POSS-FG-OH with polytetrahydrofuran diol(PTMG2000) and isophorone diisocyanate(IPDI). Finally,photocurable double bonds were introduced throughmethacrylic acid esterification to obtain the UV-curable fluorinated POSS-polyurethane(UV-F-POSS-PU)optical fiber coating. The structure and properties of the products were characterized by FT-IR, GPC,TGA,and TMA,and the effects of POSS content on the thermal stability,water resistance,mechanical properties,photocuring behavior,and optical transmission loss of the coated fibers were systematically investigated.[Results] The coating with 45%POSS effectively prevents the agglomeration of inorganic nanoparticles and significantly enhances the thermal stability,dimensional stability,water resistance,and interfacial adhesion of the coating,leading to a substantial improvement in the signal transmission reliability of optical fibers in high-temperature and high-humidity environments.[Conclusion]The developed material demonstrates significant application prospects inspecialty optical fibers for extreme environments such as aerospace and geological exploration.
Key words:
polysesquiamine,
fluorine-containing polyurethane,
optical fiber light curing,
optical fiber coating
中图分类号:
沙伟华, 魏 超. UV 固化含氟POSS-聚氨酯光纤涂层的制备与性能研究[J]. 涂料工业, 2026, 56(9): 48-54.
Sha Weihua, Wei Chao. Preparation and properties of UV-curable fluorinated POSS-polyurethane optical fiber coating[J]. Paint & Coatings Industry, 2026, 56(9): 48-54.