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首页> 外文期刊>Polymer Degradation and Stability >The bonding of a hydroxy-functional organophosphorus oligomer to nylon fabric using the formaldehyde derivatives of urea and melamine as the bonding agents
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The bonding of a hydroxy-functional organophosphorus oligomer to nylon fabric using the formaldehyde derivatives of urea and melamine as the bonding agents

机译:使用脲和三聚氰胺的甲醛衍生物作为粘合剂,将羟基官能的有机磷低聚物与尼龙织物粘合

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In this research, we studied the mechanism of bonding a hydroxy-functional organophosphorus oligomer (HFPO) to nylon 6.6 fabric using the formaldehyde derivatives of urea and melamine, including dimethyloldihydroxyethyleneurea (DMDHEU) and trimethylolmelamine (TMM), as the bonding agents. The nylon fabric treated with HFPO/DMDHEU or HFPO/TMM retained significant amount of phosphorus after multiple launderings. The laundering durability of the HFPO applied to nylon was probably attributed to the formation of a crosslinked polymeric network on the nylon fiber. The nylon fabric treated with HFPO/DMDHEU showed higher percent phosphorus retention than that treated with HFPO/ TMM. The percent phosphorus retention of the treated nylon increased as the DMDHEU or TMM concentration was increased, and the nylon fabric's stiffness follows the same trend. The micro-scale combustion calorimetry and thermal analysis data indicate that the HFPO bound to nylon reduced peak heat release rate and heat release capacity of the nylon fabric, decreased decomposition temperature and promoted the char formation of the treated fabric. The nylon/cotton blend military fabric treated with HFPO/DMDHEO or HFPO/TMM demonstrated flame retardant performance after 10 laundering cycles.
机译:在这项研究中,我们研究了使用脲和三聚氰胺的甲醛衍生物(包括二甲基氧代羟基乙烯脲(DMDHEU)和三羟甲基蜜胺(TMM))作为粘合剂将羟基官能有机磷低聚物(HFPO)与尼龙6.6织物粘合的机理。多次洗涤后,用HFPO / DMDHEU或HFPO / TMM处理的尼龙织物保留了大量的磷。应用于尼龙的HFPO的洗涤耐久性可能归因于在尼龙纤维上形成的交联聚合物网络。用HFPO / DMDHEU处理的尼龙织物的磷保留百分比高于用HFPO / TMM处理的尼龙。随着DMDHEU或TMM浓度的增加,处理过的尼龙的磷保持百分率增加,并且尼龙织物的刚度遵循相同的趋势。微量燃烧量热法和热分析数据表明,与尼龙结合的HFPO降低了尼龙织物的峰值放热速率和放热能力,降低了分解温度并促进了处理后织物的炭化。经HFPO / DMDHEO或HFPO / TMM处理的尼龙/棉混纺军用织物在10个洗涤周期后显示出阻燃性能。

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