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Thermal analyses of flame‐retardant twills containing cotton, polyester and wool

机译:含有棉、涤纶和羊毛的阻燃斜纹布的热分析

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AbstractMedium weight twill fabrics constructed from cotton and cotton blended with polyester and/or wool were analyzed under nitrogen by three thermoanalytical techniques. Fabrics were tested both before and after treatment with tetrakis(hydroxymethyl)phosphonium sulfate (THPS), urea, and trimethylolmelamine. The presence of all fibers was distinguishable in differential scanning calorimetric analysis (DSC) of untreated fabrics; the relative positions of the endothermic, decomposition peak temperatures were only slightly changed. After flame‐retardant (FR) treatment, the blended cotton and wool fibers were altered. Both fibers decomposed as exotherms during DSC analysis. These data supported earlier microscopical, X‐ray evidence that wool fibers were actually reacting with the FR treatment. The two DSC peaks for polyester polymer melting and decomposing remained unaffected by either blending with other fibers or the presence of the FR finish on the fabric. There was excellent agreement between DSC peak temperatures and the temperature of maximum rate of weight loss obtained from thermogravimetric analysis (TGA). Blending cotton with either of these fibers increased the residue measured after TGA. The increased residue correlated with increased flame resistance as measured by the 45° angle, edge‐ignition burning rat
机译:摘要采用3种热分析技术,在氮气下对棉和棉与涤纶和/或羊毛混纺的中等重量斜纹织物进行了分析。织物在处理前后均使用[四(羟甲基)膦]硫酸盐 (THPS)、尿素和三羟甲基三聚氰胺进行测试。在未处理织物的差示扫描量热分析(DSC)中可以区分所有纤维的存在;吸热分解峰温度的相对位置仅略有变化。经过阻燃(FR)处理后,棉和羊毛混纺纤维发生了变化。在DSC分析过程中,两种纤维都分解为放热物。这些数据支持了早期的显微X射线证据,即羊毛纤维实际上与FR处理发生反应。聚酯聚合物熔融和分解的两个DSC峰不受与其他纤维混合或织物上存在阻燃整理的影响。DSC峰值温度与热重分析(TGA)获得的最大失重率温度之间有很好的一致性。将棉花与这些纤维中的任何一种混合都会增加TGA后测量的残留物。残留物的增加与阻燃性增加相关,如 45° 角、边缘点火燃烧大鼠所测量的那样

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