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A mechanism for fire retardancy realized by a combination of biofillers and ammonium polyphosphate in various polymer systems

机译:通过各种聚合物体系中的生物填充物和多磷酸铵组合实现的阻燃机制

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摘要

This study focused on realizing fire retardancy for polymer composites by using a cellulosic biofiller and ammonium polyphosphate (APP). The motivation of this study was based on revealing the mechanism of the synergetic effect of a cellulosic biofiller and APP and determining the parameters required for achieving a V-0 rating in UL94 standard regardless of the kind of polymer system used. As for the polymer matrix, polypropylene and polylactic acid were used. The flammability, burning behavior and thermal decomposition behavior of the composites were investigated through a burning test according to the UL-94 standard, cone calorimetric test and thermogravimetric analysis. As a result, the incorporation of a high amount of cellulose enabled a V-0 rating to be achieved with only a small amount of APP despite the variation of the optimum cellulose loading between the matrix polymers. Through analysis, the results indicated that APP decreased the dehydration temperature of cellulose. Furthermore, APP promoted the generation of enough water as a nonflammable gas and formed enough char until the degradation of the polymer matrix was complete. The conditions required to achieve the V-0 rating were suggested against composites incorporating APP and biofillers. Furthermore, the suggested conditions were validated by using polyoxymethylene as a highly flammable polymer.
机译:本研究旨在通过使用纤维素生物填料和聚磷酸铵(APP)实现聚合物复合材料的阻燃性。本研究的动机在于揭示纤维素生物填充剂和APP协同效应的机理,并确定在UL94标准中实现V-0评级所需的参数,无论使用何种聚合物系统。对于聚合物基体,使用聚丙烯和聚乳酸。根据UL-94标准,通过燃烧试验、锥形量热试验和热重分析,研究了复合材料的可燃性、燃烧行为和热分解行为。因此,尽管基质聚合物之间的最佳纤维素负载量存在变化,但通过加入大量纤维素,仅使用少量APP即可实现V-0评级。通过分析,结果表明APP降低了纤维素的脱水温度。此外,APP促进了足够多的水作为不可燃气体的生成,并形成足够多的炭,直到聚合物基质完全降解。针对含有APP和生物填料的复合材料,提出了达到V-0等级所需的条件。此外,建议的条件通过使用聚甲醛作为高度易燃聚合物进行了验证。

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