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聚磷酸铵/木质素比例对生物基热塑性塑料热性能和燃烧行为的影响:以聚酰胺11为例。

Influence of Ammonium Polyphosphate/Lignin Ratio on Thermal and Fire Behavior of Biobased Thermoplastic: The Case of Polyamide 11.

作者信息

Cayla Aurélie, Rault François, Giraud Stéphane, Salaün Fabien, Sonnier Rodolphe, Dumazert Loïc

机构信息

ENSAIT, GEMTEX-Laboratoire de Génie et Matériaux Textiles, F-59000 Lille, France.

IMT Mines d'Alès, Centre des Matériaux des Mines d'Alès⁻Pôle Matériaux Polymères Avancés, 30100 Alès, France.

出版信息

Materials (Basel). 2019 Apr 8;12(7):1146. doi: 10.3390/ma12071146.

Abstract

Flame retardancy of polymers is a recurring obligation for many applications. The development trend of biobased materials is no exception to this rule, and solutions of flame retardants from agro-resources give an advantage. Lignin is produced as a waste by-product from some industries, and can be used in the intumescent formation development as a source of carbon combined with an acid source. In this study, the flame retardancy of polyamide 11 (PA) is carried out by extrusion with a kraft lignin (KL) and ammonium polyphosphate (AP). The study of the optimal ratio between the KL and the AP makes it possible to optimize the fire properties as well as to reduce the cost and facilitates the implementation of the blend by a melting process. The properties of thermal decomposition and the fire reaction have been studied by thermogravimetric analyzes, pyrolysis combustion flow calorimetry (PCFC) and vertical flame spread tests (UL94). KL permits a charring effect delaying thermal degradation and decreases by 66% the peak of heat release rate in comparison with raw PA. The fire reaction of the ternary blends is improved even if KL-AP association does not have a synergy effect. The 25/75 and 33/67 KL/AP ratios in PA give an intumescence behavior under flame exposure.

摘要

聚合物的阻燃性是许多应用中反复出现的要求。生物基材料的发展趋势也不例外,来自农业资源的阻燃剂解决方案具有优势。木质素是一些行业产生的废弃副产品,可作为碳源与酸源结合用于膨胀型阻燃剂的开发。在本研究中,通过将牛皮纸木质素(KL)和聚磷酸铵(AP)与聚酰胺11(PA)挤出,实现了PA的阻燃性。对KL和AP之间的最佳比例进行研究,有助于优化防火性能、降低成本,并通过熔融工艺促进共混物的加工。通过热重分析、热解燃烧流动量热法(PCFC)和垂直火焰蔓延测试(UL94)对热分解性能和燃烧反应进行了研究。与纯PA相比,KL具有炭化作用,可延迟热降解,并使热释放速率峰值降低66%。即使KL-AP组合没有协同效应,三元共混物的燃烧反应也有所改善。PA中25/75和33/67的KL/AP比例在火焰暴露下呈现膨胀行为。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ed74/6479977/8a89a7335169/materials-12-01146-g001.jpg

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