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Aluminum-Magnesium Hydroxycarbonate/Azo Dye Hybrids as Novel Multifunctional Colorants for Elastomer Composites

机译:铝镁碳酸氢盐/偶氮染料杂化剂作为弹性体复合材料的新型多功能着色剂

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摘要

This study presents the preparation and characterization of new organic-inorganic pigments based on aluminum-magnesium hydroxycarbonate (LH) and azo dyes. Solvent resistance studies, XRD, SEM, and TGA confirmed the successful formation of hybrid pigments, which were characterized in terms of their physicochemical properties. The new hybrid pigments were applied in acrylonitrile-butadiene (NBR) and ethylene-propylene (EPM) rubber composites and cured with sulfur and peroxide curing systems, respectively. The mechanical properties, dispersion quality, and flame-retardant properties of the NBR/hybrid and EPM/hybrid pigment composites were determined by dynamic mechanical analysis (DMA), SEM, and microscale combustion calorimetry (MCC). Complex experimental investigations revealed that the layered nature of hybrid pigments could improve the barrier ability and flame retardancy of elastomer composites. In comparison to unmodified aluminum-magnesium hydroxycarbonate, the modified LH dye structures contributed to significantly decrease the heat release rate and the total heat release of the NBR and EPM composites, offering a new approach to imparting low flammability to elastomer materials.
机译:这项研究介绍了基于铝碳酸镁碳酸氢盐(LH)和偶氮染料的新型有机无机颜料的制备和表征。耐溶剂性研究,XRD,SEM和TGA证实了杂化颜料的成功形成,并根据其理化性质对其进行了表征。新型杂化颜料分别应用于丙烯腈-丁二烯(NBR)和乙烯-丙烯(EPM)橡胶复合材料中,并分别通过硫和过氧化物固化体系进行固化。通过动态力学分析(DMA),SEM和微型燃烧量热法(MCC)确定了NBR /混合和EPM /混合颜料复合材料的机械性能,分散质量和阻燃性能。复杂的实验研究表明,杂化颜料的层状性质可以提高弹性体复合材料的阻隔能力和阻燃性。与未改性的铝碳酸镁镁相比,改性的LH染料结构显着降低了NBR和EPM复合材料的放热速率和总放热,为赋予弹性体材料低可燃性提供了新途径。

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