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首页> 外文期刊>Autex Research Journal >Thermal and Flame Retardant Properties of Shaped Polypropylene Fibers Containing Modified-Thai Bentonite
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Thermal and Flame Retardant Properties of Shaped Polypropylene Fibers Containing Modified-Thai Bentonite

机译:改性泰国膨润土异型聚丙烯纤维的热学和阻燃性能

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摘要

Tetraphenyl phosphonium-modified organoclay (TPP-Mt) was prepared by modifying montmorillonite-rich Thai bentonite via ion exchange. TGA results revealed that TPP-Mt possessed high thermal stability, where degradation occurred at a temperature range of 418-576°C. The obtained TPP-Mt/PP nanocomposites exhibited degradation at higher temperatures than PP (410-420°C vs. 403°C). Fibers of different cross-sectional shapes (circular, circular hollow, and cross) containing 1, 2 and 3%wt TPP-Mt were prepared and characterized. Nonwovens of 3%wt TPPMt/PP fibers were fabricated for flame retardant test. From results, nonwovens of TPP-Mt/PP fibers exhibited self-extinguishing characteristic and the areas of burning were less than that of PP nonwoven (14.5-31.6% vs. 95.6%). Nonwovens of cross-shaped fibers showed the best flame retardant property, followed by those of circular hollow and circular fibers. The flame retardant properties observed in nonwovens were explained due to the inter-fiber spaces between cross-shaped fibers and center hole in circular hollow fibers, which could trap initiating radicals inside, thus reducing flame propagation. In addition, large surface area in cross-shaped fibers could help in increasing the flame retardant effectiveness due to more exposure of TPP-Mt particles to the flame. Knowledge obtained in this study offered an approach to produce flame retardant nonwovens via a combination of modified organolcay and fiber shape.
机译:四苯ion改性有机粘土(TPP-Mt)是通过离子交换对富含蒙脱石的泰国膨润土进行改性而制备的。 TGA结果表明,TPP-Mt具有较高的热稳定性,在418-576°C的温度范围内会发生降解。所获得的TPP-Mt / PP纳米复合材料在比PP更高的温度下(410-420°C与403°C)表现出降解。制备并表征了包含1、2和3%(重量)TPP-Mt的不同横截面形状(圆形,圆形空心和十字形)的纤维。制备了3%wt TPPMt / PP纤维的非织造布用于阻燃测试。结果表明,TPP-Mt / PP纤维非织造布具有自熄性,燃烧面积小于PP非织造布(14.5-31.6%vs. 95.6%)。十字形纤维的非织造布显示出最佳的阻燃性能,其次是圆形中空纤维和圆形纤维。解释了在非织造布中观察到的阻燃性能,这是由于十字形纤维与圆形中空纤维中心孔之间的纤维间空间可能将引发自由基捕获在内部,从而减少了火焰传播。另外,由于TPP-Mt颗粒更多地暴露在火焰中,十字形纤维中较大的表面积可以帮助提高阻燃效果。在这项研究中获得的知识提供了一种通过结合有机改性和纤维形状来生产阻燃非织造布的方法。

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