首页> 外文期刊>New Journal of Chemistry >Fabrication of new multifunctional cotton-modal-recycled aramid blended protective textiles through deposition of a 3D-polymer coating: high fire retardant, water repellent and antibacterial properties
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Fabrication of new multifunctional cotton-modal-recycled aramid blended protective textiles through deposition of a 3D-polymer coating: high fire retardant, water repellent and antibacterial properties

机译:通过沉积3D聚合物涂层制备新的多功能棉 - 模态再循环芳纶混合保护纺织品:高阻燃剂,防水和抗菌性能

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摘要

This study reports a facile fabrication of multifunctional cotton-modal-recycled aramid blended protective textiles through the deposition of a three-dimensional tetrakis(hydroxymethyl)phosphonium chloride (THPC)-urea polymer coating. For this, blended fabrics with different compositions, weaving structures, thicknesses, GSMs and thread densities have been fabricated, followed by chemical deposition of the THPC-urea polymer coating on the fibrils of the yarn and then in the amorphous region through ammonia treatment. Full characterization of the resulting fabrics through SEM and FTIR allowed confirmation of the deposition of THPC-urea on each blended fabric. Treated and untreated samples were evaluated for their water repellency, flame retardance and antibacterial properties through diverse experimental tools. The results show that the lowest average char length (warp - 3.18 cm, weft - 2.84 cm) and radiant heat flux density (11.021 kW m-2), and highest LOI% (36.8%), were found in the 40%-cotton-30%-modal-30% aramid fabric, whereas the best thermal protective performance (t12- 4.0 s,t24- 5.9 s) was observed in the fabric with a high thickness and GSM. Regarding the water repellent properties, all treated samples showed superior water repellence properties expressed as water contact angle (thetaH2O) as high as 141.70 degrees to 151.50 degrees. Besides, the 3D polymer coating deposited on blended fabrics exhibited high antibacterial properties (99.90%) againstStaphylococcus aureusATCC 6538 andKlebsiella pneumoniaeATCC 4352 as calculated according to the KS K 0693:2016 method. These results herein provide fundamental grounds to design blended textiles with necessary functionalities for smart and protective applications.
机译:这项研究报告多功能棉模态再循环芳族聚酰胺的制造容易通过的三维四(羟甲基)氯化鏻(THPC) - 脲聚合物涂层的沉积共混保护纺织品。为此,用不同的组合物,编织结构,厚度,和GSMS螺纹密度混纺织物已经被制造,接着在纱线的原纤维的THPC - 脲聚合物涂层的化学沉积,然后在通过氨处理的无定形区。通过SEM和FTIR得到的织物的全部特性允许每个混纺织物THPC尿素的沉积的确认。处理和未处理的样品进行评价其防水性,阻燃性和通过各种实验工具的抗菌特性。结果表明,最低的平均焦化长度(经向 - 3.18厘米,纬编 - 2.84厘米)和辐射热通量密度(11.021千瓦米 -2 ),以及最高LOI%(36.8%),为在40% - 棉-30%-modal-30%芳族聚酰胺织物发现的,而最好的热防护性能(T 12 - 4.0 S,T 24 - 5.9小号)在织物中观察到具有高的厚度和GSM。关于防水性,所有处理过的样品显示表示为水接触角优异的防水性特性(希塔ħ 2 0 )高达141.70度至151.50度。此外,沉积在混纺织物的三维聚合物涂层显示出高的抗菌性能作为根据KSķ0693计算(99.90%)againstStaphylococcus aureusATCC 6538 andKlebsiella pneumoniaeATCC 4352:2016方法。在此这些结果提供了基本依据,设计有智能和保护应用程序所需的功能混纺织物。

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