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Attapulgite modified cotton fabric and its flame retardancy

机译:Attapulgite改性棉织物及其阻燃性

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Flame-retardant treatment for cotton fabric has been raising considerable interest. However, flame-retardant treatments in many studies have drawbacks, such as releasing toxic gases, high cost and weak bonding to the matrix. In this paper, attapulgite clay (ATP) was treated by ball-milling, activation and double-bond modification. Cotton fabric was grafted to achieve mercapto functionalization. Finally, the flame-retardant cotton fabric was prepared by grafting ATP onto the surface of the cotton fabric via thiol-ene click reaction. The resultant cotton fabric showed outstanding flame-retardant properties. Its burning rate, limiting oxygen index and maximum smoke density were 5.3 mm/s, 25.6% and 14.27%, respectively. Compared with the original cotton fabric, the flame-retardant properties of the obtained cotton fabric were significantly improved. It was attributed to the as-formed more stable oxide layer decomposed by ATP during burning. Furthermore, the as-prepared flame-retardant cotton fabric did not cause any health hazards. This work is favorable for promoting the development of halogen- and phosphorus-free flame-retardant cotton fabric.
机译:棉花面料的阻燃治疗一直在提高相当大的兴趣。然而,许多研究中的阻燃治疗具有缺点,例如释放有毒气体,高成本和弱粘合到基质。本文通过球磨,活化和双键改性处理了亚孢素粘土(ATP)。植物织物嫁接以实现巯基官能化。最后,通过通过硫醇-NE咔哒反应将ATP嫁接到棉织物的表面上来制备阻燃棉织物。所得棉织物显示出突出的阻燃性能。其燃烧率,限制氧指数和最大烟雾密度分别为5.3毫米/秒,25.6%和14.27%。与原始棉织物相比,所得棉织物的阻燃性能显着提高。它归因于由ATP在燃烧期间用ATP分解的制备更稳定的氧化物层。此外,AS制备的阻燃棉织物不会引起任何健康危害。这项工作有利于促进无卤阻燃棉织物的发展。

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