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Surface treated cellulose fibres in flame retarded PP composites

机译:阻燃聚丙烯复合材料中的表面处理纤维素纤维

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Polypropylene-based composites were prepared containing non-treated and various treated cotton fibre and wood flakes. A correlation was observed among the fibre treatment and compounding parameters, mechanical and discoloration properties. The structural changes in fibres were demonstrated by Raman spectroscopic and DSC measurements. The possibility for forming cellulose fibre containing flame retardant composites was also investigated. The efficiency of various treatments on compounding, discoloration and mechanical properties enhance in the following order: no treatment < non ionic surfactant < reactive silicone segment containing non ionic surfactant < special silylation treatment. The best results obtained with the special silylation treatment were explained with the more organophilic character and by the thermal stability of the treated fibres. Cellulose fibre as a polyol-charring component and ammonium-polyphosphate together constitute a high performance intumescent flame retardant system in the PP matrix. [References: 14]
机译:制备包含未处理的和各种处理的棉纤维和木片的聚丙烯基复合材料。在纤维处理和配合参数,机械和变色性能之间观察到相关性。纤维的结构变化通过拉曼光谱和DSC测量证明。还研究了形成含纤维素纤维的阻燃复合材料的可能性。各种处理对复合,变色和机械性能的效率按以下顺序增强:不处理<非离子表面活性剂<包含非离子表面活性剂的反应性有机硅链段<特殊的甲硅烷基化处理通过特殊的甲硅烷基化处理获得的最佳结果是通过更亲有机的特性和处理过的纤维的热稳定性来解释的。纤维素纤维作为具有多元醇活性的组分和聚磷酸铵共同构成了PP基体中的高性能膨胀型阻燃体系。 [参考:14]

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