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亚麻/聚丙烯和亚麻/聚乳酸热塑性复合材料:阻燃剂对各组分的影响

Flax/PP and Flax/PLA Thermoplastic Composites: Influence of Fire Retardants on the Individual Components.

作者信息

Kandola Baljinder K, Pornwannachai Wiwat, Ebdon John Russell

机构信息

Institute for Materials Research and Innovation, University of Bolton, Deane Road, Bolton BL3 5AB, UK.

SCG Chemicals Co., Ltd., 1 Siam Cement Rd., Bang Sue, Bangkok 10800, Thailand.

出版信息

Polymers (Basel). 2020 Oct 23;12(11):2452. doi: 10.3390/polym12112452.

Abstract

This study is based on previously reported reaction to fire properties of flax fibre-reinforced polymeric (polypropylene, PP and polylactic acid, PLA) composites, prepared by pre-treating the fabrics with different fire retardants (FRs) prior to composite preparation. It was observed that while all of these treatments were very effective in flax/PLA in terms of achieving a V-0 rating in a UL-94 test, only an organophosphonate FR was capable of achieving a V-0 rating for flax/PP. However, all fire-retardant treatments impaired the mechanical properties of the composites; the reduction was more in flax/PLA compared to flax/PP composites. To understand these effects further, here thermal analysis and pyrolysis combustion flow calorimetry of the composites and each component separately treated with FRs have been conducted and the results analysed in terms of the effect on each component so as to observe any interaction between the different components. The results indicated that in flax/PLA composites, the water released during FR catalysed dehydration-decomposition of flax may hydrolyse PLA, changing decomposition pathway of PLA to produce less flammable volatile, hence resulting in reduced flammability.

摘要

本研究基于先前报道的亚麻纤维增强聚合物(聚丙烯,PP和聚乳酸,PLA)复合材料的阻燃性能,该复合材料是通过在制备复合材料之前用不同的阻燃剂(FRs)对织物进行预处理而制备的。据观察,虽然所有这些处理在亚麻/PLA中对于在UL-94测试中达到V-0等级非常有效,但只有有机膦酸酯阻燃剂能够使亚麻/PP达到V-0等级。然而,所有阻燃处理都会损害复合材料的机械性能;与亚麻/PP复合材料相比,亚麻/PLA中的降低更为明显。为了进一步了解这些影响,在此分别对用FRs处理的复合材料及其各组分进行了热分析和热解燃烧流动量热法,并根据对各组分的影响对结果进行了分析,以便观察不同组分之间的任何相互作用。结果表明,在亚麻/PLA复合材料中,FR催化亚麻脱水分解过程中释放的水可能会水解PLA,改变PLA的分解途径以产生易燃性较低的挥发物,从而降低可燃性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/81ae/7690717/8f8f16dd23b4/polymers-12-02452-sch001.jpg

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