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Application of plasma technology for the modification of polymer and textile materials

机译:等离子技术在聚合物和纺织材料改性中的应用

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Plasma treatment is based on the physico-chemical changes of the material surface and as an ecologically and economically acceptable process it can be an attractive alternative to conventional modifications. The possibilities of plasma technology application to the modification of polymer and textile materials are discussed. Different specific properties of the material can be achieved by plasma cleaning, etching, functionalization or polymerization. The final effects are strongly influenced by the treatment parameters (treatment time, pressure, power, gas flow), the applied gas and nature of the material. The plasma treatment of polymers is predominantly focused on cleaning and activation of the surfaces to increase adhesion, binding, wettability, dye ability and printability. Current studies deal more with plasma polymerization where an ultra thin film of plasma polymer is deposited on the material surface and, depending on the applied monomer, different specific properties can be obtained (i.e. chemical and thermal resistance, abrasion resistance, antireflexion, water repellence, etc.). Plasma application to textiles is mostly oriented toward wool and synthetic fibres, though some studies also consider cotton, hemp, flax and silk. The main goal of plasma treatment is to impart a more hydrophilic fibre surface and accordingly increase wettability, dye ability, printability and particularly, shrink resistance in the case of wool. Recent studies have favored technical textiles, where plasma polymerization can offer a wide range of opportunities.
机译:等离子体处理基于材料表面的物理化学变化,并且作为一种生态和经济上可接受的方法,它可以成为常规改性方法的有吸引力的替代方法。讨论了将等离子技术应用于聚合物和纺织材料改性的可能性。可以通过等离子体清洁,蚀刻,功能化或聚合来实现材料的不同特定特性。最终效果受处理参数(处理时间,压力,功率,气体流量),施加的气体和材料性质的影响很大。聚合物的等离子处理主要集中在表面的清洁和活化上,以增加粘附力,粘合力,润湿性,染色能力和可印刷性。当前的研究更多地涉及等离子体聚合,其中等离子体聚合物的超薄膜沉积在材料表面上,并且根据所施加的单体,可以获得不同的特定特性(例如,耐化学性和耐热性,耐磨性,抗反射性,疏水性,等等。)。等离子体在纺织品上的应用主要针对羊毛和合成纤维,尽管一些研究还考虑了棉,麻,亚麻和丝绸。等离子处理的主要目的是赋予纤维更亲水的表面,并因此提高润湿性,染色能力,适印性,尤其是羊毛的抗收缩性。最近的研究青睐工业用纺织品,等离子聚合可以提供广泛的机会。

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