Hydrophilisation of polyester textile materials has been investigated over the last twenty years using low-pressure and atmospheric plasmas. According to these studies, wettability and capillarity of fabrics can be significantly improved depending on the process gas used. In the present study, the effects of low pressure O2- and NH3- plasma on the morphology and topometry of fabrics on four different length scales, as well as the influence of the topographical changes of textile structures on the resulting water spreading and absorption rates were investigated. The results of the topographic characterisation using two non-contact optical methods and wettability measurements indicate that the modification of filament nano-topography cannot s...
A superhydrophobic fabric surface was fabricated by forming a dual roughness structure in combinatio...
The capillary rise method was applied to evaluate the improvement in water uptake of polyester and a...
238-244This paper reports a novel approach for surface modification of 100 % cotton and 100 % polye...
Hydrophilisation of polyester textile materials has been investigated over the last twenty years usi...
Polyester is a popular class of material used in material engineering. With its 0.4% moisture regain...
Low temperature plasma technology is well established in surface modification of polymer materials o...
The effect of oxygen plasma treatment on two polyester fibre types, polylactic acid and standard pol...
In this study, the surface characteristics of polyester and polyamide fabrics were changed by plasma...
Plasma treatment of textiles becomes more and more popular as a surface modification technique. Plas...
274-281The effect of atmospheric pressure ammonia dielectric barrier discharge on the surface of po...
WOS: 000090097300009In order to increase the hydrophilicities, and therefore to impart soil resistan...
As the title implies, the chief goal of the present work is the improvement of the barrier effects o...
Plasma treatment of textile fabrics is investigated as an alternative to the environmentally hazard...
In this study we demonstrate the feasibility of dyeing polyester with reactive dye after treatment w...
Polyethylene Terephthalate (PET) fabric, a recycled synthetic fiber, has been frequently studied to ...
A superhydrophobic fabric surface was fabricated by forming a dual roughness structure in combinatio...
The capillary rise method was applied to evaluate the improvement in water uptake of polyester and a...
238-244This paper reports a novel approach for surface modification of 100 % cotton and 100 % polye...
Hydrophilisation of polyester textile materials has been investigated over the last twenty years usi...
Polyester is a popular class of material used in material engineering. With its 0.4% moisture regain...
Low temperature plasma technology is well established in surface modification of polymer materials o...
The effect of oxygen plasma treatment on two polyester fibre types, polylactic acid and standard pol...
In this study, the surface characteristics of polyester and polyamide fabrics were changed by plasma...
Plasma treatment of textiles becomes more and more popular as a surface modification technique. Plas...
274-281The effect of atmospheric pressure ammonia dielectric barrier discharge on the surface of po...
WOS: 000090097300009In order to increase the hydrophilicities, and therefore to impart soil resistan...
As the title implies, the chief goal of the present work is the improvement of the barrier effects o...
Plasma treatment of textile fabrics is investigated as an alternative to the environmentally hazard...
In this study we demonstrate the feasibility of dyeing polyester with reactive dye after treatment w...
Polyethylene Terephthalate (PET) fabric, a recycled synthetic fiber, has been frequently studied to ...
A superhydrophobic fabric surface was fabricated by forming a dual roughness structure in combinatio...
The capillary rise method was applied to evaluate the improvement in water uptake of polyester and a...
238-244This paper reports a novel approach for surface modification of 100 % cotton and 100 % polye...