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首页> 外文期刊>Materials Sciences and Applications >Ultraviolet Protection, Flame Retardancy and Antibacterial Properties of Treated Polyester Fabric Using Plasma-Nano Technology
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Ultraviolet Protection, Flame Retardancy and Antibacterial Properties of Treated Polyester Fabric Using Plasma-Nano Technology

机译:等离子-纳米技术处理的涤纶织物的紫外线防护,阻燃性和抗菌性能

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Nanotechnology provides the ability to engineer the properties of materials. The possibility of using dielectric barrier discharge (DBD) air plasma treatment for fibre surface activation to facilitate deposition of aluminum oxide (Al2O3), nano-silver (Ag) and nano-titanium dioxide (TiO2) onto polyester fabric is investigated. It is aimed to study the possibility of engineering the multifunctional of polyester fabric. The treated fabric is evaluated through measuring the whiteness index (WI), wettability, surface roughness, surface morphology, flame retardancy, ultraviolet protection factor (UPF), thermo-gravimetric analysis (TGA), antibacterial activity, mechanical properties, and coloration behavior as well as fastness properties. Scan electron microscopy (SEM) and transmission electron microscopy (TEM) graphs show deposition of Al2O3 and nano particles (NPs) of TiO2 and Ag onto the fibre after washing several times. Air plasma-Al2O3 treatment improves the flame retarding, UPF, the thermal stability and whiteness of polyester fabric; whereas air plasma-nano Ag treatment affects positively the antibacterial activity of the fibre and air plasma-nano TiO2 enhances the fibre protection against ultraviolet rays. The colouration behaviour of the treated samples is unchanged or slightly improved.
机译:纳米技术提供了工程材料特性的能力。研究了使用介电势垒放电(DBD)空气等离子体处理纤维表面以促进氧化铝(Al2O3),纳米银(Ag)和纳米二氧化钛(TiO2)沉积在聚酯织物上的可能性。目的是研究工程化聚酯织物多功能性的可能性。通过测量白度指数(WI),润湿性,表面粗糙度,表面形态,阻燃性,紫外线保护因子(UPF),热重分析(TGA),抗菌活性,机械性能和着色行为来评估处理后的织物牢度特性。扫描电子显微镜(SEM)和透射电子显微镜(TEM)图显示,洗涤几次后,Al2O3和TiO2和Ag的纳米颗粒(NPs)沉积在纤维上。空气等离子体Al2O3处理可改善聚酯织物的阻燃性,UPF,热稳定性和白度;空气等离子体纳米银处理对纤维的抗菌活性有积极影响,而空气等离子体纳米TiO2增强了纤维的紫外线防护能力。处理过的样品的着色行为保持不变或略有改善。

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