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Char Formation in Flame-Retarded Wool Fibres. Part 1. Effect of Intumescent on Thermogravimetric Behaviour

机译:阻燃羊毛纤维中的焦炭形成。第1部分。膨胀对热重行为的影响

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The char-forming characteristics of wool are well known but have been little studied during recent years, although flame-retardant activity may be associated with enhanced char formation in many cases. Recently, intumescent flame-retardants have been shown to react synergistically with flame-retarded cellulosic fibres and generate unexpectedly high levels of char. Extension of this concept to wool, a naturally intumescing fibre, shows that similar synergistic activity may be observed. This paper describes and discusses the initial work which has involved the application of a number of phosphate-based intumescents bound in a resin system to the surface of 100% wool fabrics in the absence and presence of zirconium-based flame-retardant (ZIRPRO®) and to unretarded wool/flame-retarded (FR) viscose blend fabrics. Thermal analytical studies (TGA) of treated fabrics and synthesised mixtures of respective powdered fibre/intumescent combinations demonstrate that enhanced char formation may occur and that char shows higher-than-expected oxidative resistance above 500℃. Scanning electron microscopy studies have demonstrated the physical nature of the interaction and show that, under the experimental heating conditions used to generate chars, the wool component appears to have passed through a semi-liquid state prior to or simultaneously with the onset of char formation. A qualitative model is proposed to explain the interactions taking place between fibre and intumescent char-forming reactions which compares well with earlier results observed for flame-retardant cellulosic fibre — intumescent interactions.
机译:羊毛的成炭特性是众所周知的,但近年来却很少进行研究,尽管在许多情况下阻燃活性可能与增强的成炭有关。近来,膨胀型阻燃剂已显示出与阻燃纤维素纤维协同反应并产生出乎意料的高炭。将该概念扩展到天然增生纤维羊毛中,表明可以观察到类似的协同活性。本文描述并讨论了最初的工作,该工作涉及在不存在和存在锆基阻燃剂(ZIRPRO®)的情况下,将在树脂系统中结合的许多磷酸盐基膨胀型涂料应用于100%羊毛织物的表面。并适用于无阻燃羊毛/阻燃(FR)粘胶混纺面料。对经处理的织物和各种粉末状纤维/膨胀型混合物的合成混合物进行的热分析研究(TGA)表明,可能会增强炭的形成,并且炭在500℃以上时表现出比预期更高的抗氧化性。扫描电子显微镜研究已经证明了相互作用的物理性质,并表明,在用于产生炭的实验加热条件下,羊毛组分似乎在炭形成开始之前或同时已经通过了半液态。提出了一个定性模型来解释纤维与膨胀型成炭反应之间发生的相互作用,并将其与阻燃纤维素纤维的早期结果-膨胀相互作用进行了比较。

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