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Synthesis and thermal characterization of chemically modified phenolic resins

机译:化学改性酚醛树脂的合成和热表征

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AbstractPhenolic resins with improved/altered thermal stability and flame retardancy were prepared by introducing flame retardant elements such as phosphorus and bromine at the monomer stage, followed by condensation with formaldehyde or hexamethylene tetramine (HMTA). Thus, monophenyl phosphoric acid (MPPA), monophenyl phosphoric acid–formaldehyde resin (MPPAF), brominated phenol–formaldehyde resin (BrPF) and 2,4,6‐tribromophenyl‐phosphoric acid–formaldehyde resin (BrMPPAF) were prepared and characterised. Thermal stability and flammability of these polymers were evaluated by TGA and LOI respectively and compared with those of phenol–formaldehyde resin (PF) and phosphorylated phenol–formaldehyde resin (PPF). The TGA (in air) of MPPAF showed enhanced thermal stability (char yield 66) over that of PF (char yield 52) and PPF (char yield 58) indicating the role of phosphorus in imparting thermo‐oxidative resistance to PF. The enhancement is better when phosphorus is introduced at the monomer stage. The incorporation of bromine, however, brought about an unexpected reduction in the thermal stability of PF (char yield: BrPF, 2 and BrMPPAF, 26). Both phosphorus and bromine are found to enhance the LOI values of PF (cured) from 35 to 50, 48, and 56, respectively, for MPPAF, BrPF, and BrMPAFF. A comparison of LOI values of these resins with their char yield suggests a condensed phase mechanism for phosphorus and vapor phase mechanism for bromine operating during thermal decomposition. © 1994 John
机译:摘要在单体阶段引入磷、溴等阻燃元素,再与甲醛或六亚甲基四胺(HMTA)缩合,制备了热稳定性和阻燃性能提高/改变的酚醛树脂。因此,制备了单苯磷酸(MPPA)、单苯磷酸-甲醛树脂(MPPAF)、溴化苯酚-甲醛树脂(BrPF)和2,4,6-三溴苯基-磷酸-甲醛树脂(BrMPPAF)并对其进行了表征。分别通过TGA和LOI评估了这些聚合物的热稳定性和可燃性,并与苯酚-甲醛树脂(PF)和磷酸化苯酚-甲醛树脂(PPF)进行了比较。MPPAF的TGA(在空气中)比PF(炭收率52%)和PPF(炭收率58%)具有更强的热稳定性(炭收率66%),表明磷在赋予PF抗热氧化性方面的作用。在单体阶段引入磷时,增强效果更好。然而,溴的掺入导致PF的热稳定性意外降低(炭收率:BrPF,2%和BrMPPAF,26%)。发现磷和溴都可以将 MPPAF、BrPF 和 BrMPAFF 的 PF(固化)的 LOI 值分别从 35 提高到 50、48 和 56。这些树脂的LOI值与其炭收率的比较表明,磷的凝聚相机制和溴在热分解过程中起作用的气相机制。© 1994 约翰

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