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Industrial-waste agave fibres in flame-retarded thermoplastic starch biocomposites

机译:阻燃热塑性淀粉生物复合材料中的工业废料龙舌兰纤维

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摘要

Flame-retarded biocomposites of thermoplastic starch and natural fibres are successfully processed according to state-of-the-art extrusion and injection moulding. Using agave fibres and henequen fibres recovered from local industrial waste is a convincing contribution to sustainability. A systematically varied set of biocomposites is investigated comprehensively, e.g. electron microscopy is used for characterizing the morphology, rheology for the melt viscosity, tensile and impact resistance for the mechanical properties, thermal analysis for the pyrolysis, UL 94 burning chamber and oxygen index for the flammability, and cone calorimeter for the fire behaviour. Achieving sufficient mechanical properties was not the goal in our pre-competitive study but may be tackled by adding compatibilizer in future. The combination of well-dispersed natural fibres, aluminium diethylphosphinate (AlPi) and a special silicone synergist (Si) is proposed as promising innovative route for V0-classified biocomposites. The flame-retardancy modes of action in the gas phase (fuel dilution and flame inhibition) and in the condensed phase (charring, protective layer formation) are discussed in detail, as is the role of combining the ingredients. This work is a convincing proof of principle of how to prepare industrial-waste fibres biocomposites, to apply the synergistic combination of AlPi and Si for future flame-retarded technical polymer materials that are based on renewable resources and compostable.
机译:热塑性淀粉和天然纤维的阻燃生物复合材料可根据最新的挤出和注塑工艺成功加工。使用从当地工业废物中回收的龙舌兰纤维和henequen纤维对可持续性具有令人信服的贡献。全面研究了一组系统不同的生物复合材料,例如电子显微镜用于表征形态,流变学用于熔体粘度,拉伸性能和耐冲击性用于机械性能,热分析用于热解,UL 94燃烧室和氧气指数用于可燃性,以及锥形量热仪用于着火性能。达到足够的机械性能不是我们竞争前研究的目标,但将来可以通过添加增容剂来解决。提出将分散良好的天然纤维,二乙基次膦酸铝(AlPi)和特殊的有机硅增效剂(Si)结合起来作为V0级生物复合材料的有希望的创新途径。详细讨论了气相(燃料稀释和火焰抑制)和冷凝相(炭化,保护层形成)中的阻燃作用模式,以及成分混合的作用。这项工作是令人信服的原理证明,说明了如何制备工业废纤维生物复合材料,将AlPi和Si的协同组合应用于未来基于可再生资源和可堆肥的阻燃技术聚合物材料。

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