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首页> 外文期刊>Polymer Degradation and Stability >On revealing the effect of alkaline lignin and ammonium polyphosphate additives on fire retardant properties of sustainable zein-based composites
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On revealing the effect of alkaline lignin and ammonium polyphosphate additives on fire retardant properties of sustainable zein-based composites

机译:揭示碱性木质素和多磷酸铵添加剂对玉米醇溶性可持续复合材料阻燃性能的影响

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摘要

The paper deals with the evaluation of the efficacy of both ammonium polyphosphate, APP, and alkaline lignin, AL, as suitable additives for the development of innovative and sustainable composites based on thermo-plasticized zein, TPZ. The chemical and physical interactions which occur between AL and APP and the secondary structure of thermo-plasticized zein were investigated by torque analysis and FTIR spectroscopy and were exploited to rationalize macroscopic properties such as the thermal stability, fire behavior and the mechanical properties. In details the fire behavior of the composites was evaluated by both cone calorimetry and self-sustained vertical combustion tests in order to simulate different fire scenario. The results highlighted that AL intercalates both the α-helix and β-sheets structures and thus improves the fire retardant behavior of composites in the vertical burning scenario by enabling the withdrawal effect of the film from flame due to the removal of PEG plasticizer during the burning test. On the other side, APP enhances the fire resistance of composites exposed to pool forced combustion due to an enhanced charring effect which protects the substrate during burning. Finally the composite containing simultaneously 10 wt% APP and 3 wt% AL exhibited excellent fire resistance behavior in different fire scenario and satisfying mechanical properties with a toughness which is around 30% higher than that of pristine TPZ. Due to this peculiar combination of functional and structural properties the composite materials may be considered as potential substitutes of traditional polymeric materials in several application fields (i.e packaging, electrical components, ...).
机译:本文对多磷酸铵APP和碱性木质素AL的功效进行了评估,作为开发基于热塑性玉米蛋白TPZ的创新和可持续复合材料的合适添加剂。通过扭矩分析和FTIR光谱研究了AL和APP与热塑玉米蛋白的二级结构之间发生的化学和物理相互作用,并利用其合理化了宏观性能,如热稳定性,着火性能和机械性能。详细地,通过锥形量热法和自持垂直燃烧试验评估了复合材料的燃烧性能,以模拟不同的燃烧情况。结果表明,AL可以嵌入α-螺旋和β-片层结构,从而通过在燃烧过程中除去PEG增塑剂而使薄膜从火焰中撤出,从而改善了垂直燃烧情况下复合材料的阻燃性能。测试。另一方面,APP具有增强的炭化效果,可增强在池强制燃烧下暴露的复合材料的耐火性,从而在燃烧过程中保护基材。最终,同时包含10 wt%APP和3 wt%AL的复合材料在不同的火灾情况下表现出优异的耐火性能,并满足机械性能,其韧性比原始TPZ高约30%。由于功能和结构特性的这种特殊结合,复合材料在某些应用领域(即包装,电子元件等)中可以被视为传统聚合材料的潜在替代品。

著录项

  • 来源
    《Polymer Degradation and Stability》 |2016年第12期|115-125|共11页
  • 作者单位

    Institute for Polymers, Composites and Biomaterials (IPCB) - CNR, P.le E. Fermi 1, 80055, Portici, NA, Italy;

    Institute for Polymers, Composites and Biomaterials (IPCB) - CNR, P.le E. Fermi 1, 80055, Portici, NA, Italy;

    Institute for Polymers, Composites and Biomaterials (IPCB) - CNR, P.le E. Fermi 1, 80055, Portici, NA, Italy;

    Institute for Macromolecular Studies (ISMAC) - CNR, Via E. Bassini 15, 20733, Milano, Italy;

    Polytechnic of Turin, Alessandria Campus, UdR INSTM of Turin, V.le Teresa Michel 5, 15121, Alessandria, Italy;

    Technological District on Engineering of Polymeric and Composite Materials and Structures (IMAST), P.zza Bovio 22, 80133, Napoli, Italy;

    Polytechnic of Turin, Alessandria Campus, UdR INSTM of Turin, V.le Teresa Michel 5, 15121, Alessandria, Italy;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Vegetable proteins; Composite; Fire behavior; Lignin;

    机译:植物蛋白;综合;着火行为;木质素;

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