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首页> 外文期刊>ACS Omega >Polybenzoxazine Resins with Polyphosphazene Microspheres: Synthesis, Flame Retardancy, Mechanisms, and Applications
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Polybenzoxazine Resins with Polyphosphazene Microspheres: Synthesis, Flame Retardancy, Mechanisms, and Applications

机译:具有聚磷腈微球的聚苯并恶嗪树脂:合成,阻燃性,机理和应用

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Polyphosphazene microspheres were fabricated by ultrasonic-assisted precipitation polymerization using 4,4′-(hexafluoroisopropylidene)diphenol, 4,4′-sulfonyldiphenol, 4,4-(9-fluorenylidene)diphenol, and phenolphthalein to obtain poly[4,4′-(hexafluoroisopropylidene)diphenol]phosphazene (PZAF), poly(4,4′- sulfonyldiphenol)phosphazene (PZS), poly[4,4'-(9-fluorenylidene)diphenol]phosphazene, and poly(phenolphthalein)phosphazene (PZPT) and were incorporated into polybenzoxazines (PBa) to obtain corresponding PZAF/PBa, PZS/PBa, fluorenyl polyphosphazene (PZFP)/PBa, and PZPT/PBa composites. Addition of 5 wt % of PZAF, PZS, PZFP, and PZPT microspheres improved the thermal stability and fire retardancy of PBa resin significantly. Notably, addition of PBa with 5% PZAF led to a 62.5% decrease in the peak heat release rate and 49.3% reduction in total heat release. The role of microspheres in the gas-phase flame-retardancy mechanism in the PBa matrix was studied. Dynamic mechanical analysis results demonstrated that the Tg of PBa flame-retardant composites was still around 210 °C compared to 221 °C of pure PBa. Hence, the synthesized PBa composites had potential applications as high flame-retardancy materials.
机译:通过超声辅助的沉淀聚合反应,使用4,4'-(六氟异亚丙基)二酚,4,4'-磺酰基二酚,4,4-(9-芴基)二酚和酚酞,制备聚磷腈微球,得到聚[4,4'- (六氟异亚丙基)二酚]磷腈(PZAF),聚(4,4'-磺酰基二酚)磷腈(PZS),聚[4,4'-(9-芴基)二酚]磷腈和聚(酚酞)磷腈(PZPT)和将其掺入聚苯并恶嗪(PBa)中以获得相应的PZAF / PBa,PZS / PBa,芴基聚磷腈(PZFP)/ PBa和PZPT / PBa复合材料。添加5wt%的PZAF,PZS,PZFP和PZPT微球显着改善了PBa树脂的热稳定性和阻燃性。值得注意的是,添加含有5%PZAF的PBa导致峰值放热速率降低62.5%,总放热降低49.3%。研究了微球在PBa基体中气相阻燃机理中的作用。动态力学分析结果表明,与纯PBa的221°C相比,PBa阻燃复合材料的Tg仍在210°C左右。因此,合成的PBa复合材料具有作为高阻燃材料的潜在应用。

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