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首页> 外文期刊>Progress in Organic Coatings: An International Review Journal >Flame retardancy and hydrolysis resistance of waterborne polyurethane bearing organophosphate moieties lateral chain
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Flame retardancy and hydrolysis resistance of waterborne polyurethane bearing organophosphate moieties lateral chain

机译:带有有机磷酸酯侧链的水性聚氨酯的阻燃性和耐水解性

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摘要

A novel halogen-free flame retardant dial bearing pendant organophosphate group, 2-ethyl-2-(2-oxo-5,5-dimethyl-1,3,2-dioxaphosphorinanyl-2-methylene)-1,3-propanediol (EPPD), was designed and synthesized, and then covalently conjugated into polyurethane as chain extender to prepare a series of phosphorus-containing flame retardant waterborne polyurethanes (PWPU). The chemical structures of the resultant EPPD and PWPU were confirmed by FTIR, H-1 and P-31 NMR, respectively. Simultaneously, the flammability and thermal behavior of PWPU films were systematically investigated by limiting oxygen index (LOI) test, UL-94 vertical burning experiment and thermogravimetric (TG) as well as residual char analysis. An LOI value of 26.6% and a UL-94 V-0 rating can be achieved when the PWPU sample conjugated with 12 wt% EPPD, showing good inherent flame retardancy. TGA and residual char analysis indicate that the incorporation of EPPD induces a slight decrease of the thermal stability due to the relatively weaker bond energy of O=P-O, whereas the formed phosphoric and polyphosphoric acid during combustion can impart PWPU with nonflammability owing to the promoting of rugged carbonaceous char in the condensed phase which shields the underlying polyurethane from further attacking of heat flux. Meanwhile, hydrolytic stability study demonstrates that PWPU with organophosphate moieties linking in the side-chain exhibits better hydrolysis resistance than that with phosphoester bond conjugated in the backbone. (C) 2015 Elsevier B.V. All rights reserved.
机译:新型的无卤阻燃拨链轴承侧挂有机磷酸酯基团,2-乙基-2-(2-氧代-5,5-二甲基-1,3,2-二氧杂磷基亚氨酰基-2-亚甲基)-1,3-丙二醇(EPPD进行了设计和合成,然后将其作为扩链剂共价结合到聚氨酯中,制备了一系列含磷阻燃水性聚氨酯(PWPU)。分别通过FTIR,H-1和P-31 NMR确认了所得EPPD和PWPU的化学结构。同时,通过极限氧指数(LOI)测试,UL-94垂直燃烧实验和热重分析(TG)以及残留炭分析,系统地研究了PWPU薄膜的可燃性和热行为。当PWPU样品与12 wt%EPPD共轭时,可以实现26.6%的LOI值和UL-94 V-0等级,表现出良好的固有阻燃性。 TGA和残留碳分析表明,EPPD的引入由于O = PO的键能相对较弱而导致热稳定性略有下降,而燃烧过程中形成的磷酸和多磷酸可通过促进PWPU的燃烧而赋予其不可燃性。凝结相中的粗糙碳质炭,可保护下面的聚氨酯免受热通量的进一步侵蚀。同时,水解稳定性研究表明,与在主链上共轭有磷酸酯键的PWPU相比,在侧链上连接有有机磷酸酯部分的PWPU具有更好的耐水解性。 (C)2015 Elsevier B.V.保留所有权利。

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