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首页> 外文期刊>Journal of Applied Polymer Science >Structural design of flame-retardant phosphatized unsaturated polyester resin
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Structural design of flame-retardant phosphatized unsaturated polyester resin

机译:阻燃磷化不饱和聚酯树脂的结构设计

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摘要

To improve flame-retardant properties of unsaturated polyester resin (UPR), two phosphorus-containing vinyl monomers with different chemical structures were synthesized to replace styrene molecules and then copolymerized with UPR oligomers to prepare flame-retardant phosphatized UPRs. Curing behavior of phosphatized UPRs was investigated by DSC non-isothermal curing curves, deducing the best curing conditions. Cone calorimeter results demonstrated the obvious reduction of heat release rate and smoke production rate by comparing phosphatized UPRs with flammable UPR. TG-IR-MS coupling technique was utilized to reveal thermal degradation and pyrolytic volatiles including aromatic compounds, hydrocarbons, CO, PO4, and so forth, providing more information of smoke toxicity and the gas phase flame- retardant mechanism of phosphatized UPRs. Moreover, the yield, compactness and graphitic degree of char residues of phosphatized UPRs were increased, strengthening the barrier effect to inhibit the permeation of combustion heat and the effusion of pyrolytic volatiles in the condensed phase.
机译:为了提高不饱和聚酯树脂(UPR)的阻燃性能,合成了两种具有不同化学结构的含磷乙烯基单体,取代苯乙烯分子,然后与UPR低聚物共聚,制备阻燃磷化不饱和聚酯树脂。利用DSC非等温固化曲线研究了磷化UPRs的固化行为,得出了最佳固化条件。锥形量热计的结果表明,通过比较磷化不饱和聚酯和易燃不饱和聚酯,热释放率和产烟率明显降低。利用TG-IR-MS联用技术揭示了磷化不饱和聚酯的热降解和热解挥发物,包括芳香族化合物、碳氢化合物、CO、PO4等,提供了更多关于烟气毒性和磷化不饱和聚酯气相阻燃机理的信息。此外,磷酸化UPR的残炭产率、致密度和石墨化程度都有所提高,从而增强了阻隔效应,抑制了燃烧热的渗透和冷凝相热解挥发物的渗出。

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