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首页> 外文期刊>Fibers and Polymers >Influence of N-, P- and Si-based Flame Retardant Mixtures on Flammability, Thermal Behavior and Mechanical Properties of PA6 Composite Fibers
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Influence of N-, P- and Si-based Flame Retardant Mixtures on Flammability, Thermal Behavior and Mechanical Properties of PA6 Composite Fibers

机译:N-,P-和Si基阻燃混合物对PA6复合纤维的易燃性,热性能和力学性能的影响

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This research investigated the influence of two flame retardant (FR) mixtures consisting melamine cyanurate (MeCy) and aluminum diethylphosphinate (AlPi), and MeCy and sodium aluminosilicate (SASi) at different weight ratios, on the flammability, thermal behavior and mechanical properties of polyamide 6 (PA6) composite yarns produced by meltspinning. The morphological and chemical properties of PA6/FR filaments were investigated by scanning electron microscopy and Fourier-transform infrared spectroscopy, flame retardancy by vertical burning test UL-94, thermal behavior by thermogravimetric and differential scanning calorimetric analyses, and mechanical properties by tensile tests. The results indicate that within the UL 94 V2 rating, the composite yarns differed significantly from each other in their burning and dripping behavior. The incorporation of both mixtures, MeCy+AlPi and MeCy+SASi, into the PA6/FR yarns significantly decreased the afterflame time relative to pristine PA6, confirming a lower production of flammable volatiles. This phenomenon was attributed mainly to MeCy, which caused an immediate extinguishment of the flame after the withdrawal of the igniting flame. Compared to one component MeCy, the incorporation of the MeCy+SASi mixture enhanced the thermooxidative stability of the PA6/FR yarns because of their additive effect at higher concentrations. In contrast, an antagonistic effect was obtained for the MeCy+AlPi mixture, irrespective of the concentration. Since the incorporation of MeCy+SASi did not drastically reduce the tensile properties of filaments, this mixture enables the production of the PA6/MeCy+SASi composite yarns with the enhanced flame retardancy and thermo-oxidative stability.
机译:该研究研究了两种阻燃剂(FR)混合物在不同重量比下组成的三聚氰胺氰基脲(MeCy)和铝氨基磷酸铝酸铝(AlPi磷酸铝磷酸铝(Alpi)和硅酸钠(SASI)的影响,对聚酰胺的易燃性,热行为和机械性能6(PA6)通过Meltspinning产生的复合纱线。通过扫描电子显微镜和傅立叶变换红外光谱,通过垂直燃烧试验UL-94,通过热重和差示扫描量热分析,通过拉伸试验来研究PA6 / FR丝丝的形态学和化学性质。结果表明,在UL 94 V2等级内,复合纱线在其燃烧和滴水行为中彼此显着不同。将混合物,汞+ alpi和麦克西+ sasi掺入PA6 / Fr纱线,显着降低了相对于原始PA6的后空时间,确认易燃挥发物的产量较低。这种现象主要归因于麦地,这导致撤回点火火焰后立即熄灭火焰。与一个组分杂种相比,由于它们在较高浓度下的添加效果,掺入MECY + SASI混合物的掺入增强了PA6 / FR纱线的热氧化稳定性。相反,无论浓度如何,都可以获得麦克酸+ Alpi混合物的拮抗作用。由于MECY + SASI的掺入没有大大降低长丝的拉伸性能,因此该混合物能够通过增强的阻燃性和热氧化稳定性生产PA6 / MECY + SASI复合纱线。

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