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Optimal distribution of phosphorus compounds in multi-layered natural fabric reinforced biocomposites

机译:多层天然织物增强生物复合材料中磷化合物的最佳分布

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摘要

Flame retardancy and mechanical performance of multi-layered biocomposites, consisting of polylactic acid (PLA) matrix films and plain-woven flax fabrics as reinforcement, were investigated. Full factorial design (32) was applied to evaluate the effects of the distribution of P and N containing compounds between the matrix and the fibrous carrier. Composition property correlations of the composite constituents (i.e. flax fabrics treated in aqueous solutions of diammonium phosphate and urea with differing ratio and concentrations and matrix films with 0 to 20 wt% ammonium polyphosphate based intumescent flame retardant content) were determined by thermogravimetric analyses and open flame tests. Positive interaction between the composite constituents was revealed for green composites consisting of various combinations of treated fabrics and intumescent PLA systems. The biocomposites flame retarded with a combined approach, i.e. with a balanced distribution of P containing additives between the phases, were found to gain improved mechanical performance and fire retardancy. It was confirmed by tensile testing and electron microscopy as well as by UL-94, limiting oxygen index and cone calorimeter tests. As a conclusion, interpretation is given for the optimum found.
机译:研究了多层生物复合材料的阻燃性和机械性能,由聚乳酸(PLA)基质薄膜和仿形亚麻织物组成,作为增强物。应用完整的因子设计(32)以评估P和N含有基质和纤维载体之间的含量分布的效果。通过热量分析和开放的火焰测定复合成分(即,在磷酸铵水正磷酸铵和尿素水溶液中处理的亚氨基铵水溶液和浓度的尿溶质和浓度为0至20wt%的多磷酸铵基荧光阻燃含量)的组成性质相关性测试。为绿色复合材料揭示了复合成分之间的阳性相互作用,其由经处理的织物和膨胀PLA系统的各种组合组成。发现生物复合材料的火焰用组合方法延迟,即,在阶段之间的含有添加剂的含有添加剂的平衡分布,发现改善了机械性能和阻燃性。通过拉伸试验和电子显微镜以及UL-94来证实它,限制氧指数和锥形量热计测试。作为结论,给出了最佳的解释。

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