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Advances in Flame Retardant Poly(Lactic Acid)

机译:阻燃聚乳酸的研究进展

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摘要

PLA has become a commodity polymer with wide applications in a number of fields. However, its high flammability with the tendency to flow in fire has limited its viability as a perfect replacement for the petrochemically-engineered plastics. Traditional flame retardants, which may be incorporated into PLA without severely degrading the mechanical properties, are the organo-halogen compounds. Meanwhile, these compounds tend to bioaccumulate and pose a risk to flora and fauna due to their restricted use. Research into PLA flame retardants has largely focused on organic and inorganic compounds for the past few years. Meanwhile, the renewed interest in the development of environmentally sustainable flame retardants (FRs) for PLA has increased significantly in a bid to maintain the integrity of the polymer. A review on the development of new flame retardants for PLA is presented herein. The focus is on metal oxides, phosphorus-based systems, 2D and 1D nanomaterials, hyperbranched polymers, and their combinations, which have been applied for flame retarding PLA are discussed. The paper also reviews briefly the correlation between FR loadings and efficiency for various FR systems, and their effects on processing and mechanical properties.
机译:PLA已成为在许多领域具有广泛应用的商品聚合物。但是,它的高易燃性以及在火中流动的趋势限制了它作为石化工程塑料的完美替代品的可行性。可以掺入PLA而不严重降低机械性能的传统阻燃剂是有机卤素化合物。同时,由于它们的限制使用,这些化合物趋向于生物蓄积并给动植物群带来风险。过去几年中,对PLA阻燃剂的研究主要集中在有机和无机化合物上。同时,人们对于开发用于PLA的环境可持续性阻燃剂(FRs)的新兴趣大大增加,以保持聚合物的完整性。本文介绍了开发用于PLA的新型阻燃剂的综述。重点讨论了已用于阻燃PLA的金属氧化物,磷基体系,2D和1D纳米材料,超支化聚合物及其组合。本文还简要回顾了各种FR系统的FR负载和效率之间的相关性,以及它们对加工和机械性能的影响。

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