Application of Methods of Preparation of Plasmo-Chemical Nanocoatings Designated to Hydrophobic and Oleo Phobic Correction of Surface Working of Textile Materials for Filtration Protective Suit

V. Obšel, P. Otrísal
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Abstract

he possibility of creation of nanocoatings with hydrophobic or oleo phobic properties on textiles materials designated for protective suits with plasma-chemical procedures with the employment pf atmospheric plasma without vacuum has been verified. On four samples of selected textile materials without any additional modification (Ba, PES+Ba, PES+Ba+Nomex, Ba+Nomex) has been at the Masaryk´s University (MU) in Brno applied with a plasma nozzle with ten different ways nanocoatings based on siloxane (HMDSO, OMCTS) and nanoglass. Prepared samples have been assessed at the MU in Brno even from the behaviour against freely lying drops of the sulphur mustard point of view. At the Military Technical Institute of Protection (VTUO) some selected samples have been subsequently evaluated even from the behaviour of freely lying drops of sulphur mustard. Supposed behaviour of the Chemical Warfare Agent (CWA) of the VX type, sulphur mustard and Soman have been simulated within selected samples with observation of freely lying drops of the olive oil, nitrobenzene, and propanol with similar values of the surface tension as above-mentioned CWA. Founded values of contact angles have been compared with contacts values of contacts angles founded in the scope of two developed materials of the coating textiles for modernized filtration protective garment with classical hydrophobic or oleo phobic modification which have been provided with the company of B.O.I.S. – Filtry, Ltd. Within all samples the change of contact angles in time and also the homogeneity of the modification have been considered. The stability and mechanical sustainability of applied sets against washing has not been evaluated. It has been proved that with the help of plasma-chemical modification is possible to prepare nanocoatings even with ultra-hydrophobic (the contact angle for water is bigger than 150 °) and super oleo phobic (the contact angle for water is bigger than 136 °) properties on suitable textile materials. The best results, so called the effect of a lotus flower, have been reached mainly within two samples of textile materials contented a part of nomex fibes.
疏水疏油校正用等离子体化学纳米涂层制备方法在过滤防护服织物表面加工中的应用
利用无真空大气等离子体的等离子化学程序,在指定用于防护服的纺织材料上制造具有疏水或疏油特性的纳米涂层的可能性已经得到证实。在布尔诺的马萨里克大学(MU),选择了四种未经任何额外改性的纺织材料样品(Ba, PES+Ba, PES+Ba+Nomex, Ba+Nomex),并在等离子喷嘴上应用了基于硅氧烷(HMDSO, OMCTS)和纳米玻璃的十种不同方式的纳米涂层。制备的样品已经在布尔诺的MU进行了评估,甚至从对自由放置的硫芥菜滴的行为的角度来看。在军事防护技术研究所(VTUO),一些选定的样品随后甚至从自由放置的硫磺芥子气滴的行为进行了评估。在选定的样品中模拟了VX型、硫芥子气和索曼化学战剂(CWA)的假定行为,观察了自由放置的橄榄油、硝基苯和丙醇滴,其表面张力值与上述CWA相似。对B.O.I.S. Filtry有限公司提供的两种经经典疏水或疏油改性的现代化过滤防护服涂层纺织品的接触角建立值与接触角建立值进行了比较。在所有样品中都考虑了接触角随时间的变化以及改性的均匀性。稳定性和机械可持续性的应用套装对洗涤尚未进行评估。实验证明,在合适的纺织材料上,利用等离子体化学改性可以制备出具有超疏水(与水的接触角大于150°)和超疏油(与水的接触角大于136°)性能的纳米涂层。最好的结果,即所谓的莲花效应,主要是在两种纺织材料样品中达到的,其中含有一部分诺墨克斯纤维。
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