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Designing Waterproof and Breathable Fabric Based on Polyurethane/Silica Dioxide Web Fabricated by Electrospinning

机译:基于静电纺丝制造的聚氨酯/二氧化硅网的防水和透气织物

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In this research, non-fluorinated polyurethane/silica dioxide (PU/SiO) nanofibrous webs were prepared by electrospinning and hydrothermal treatment. Then the developed webs were laminated onto polyester woven fabrics to examine their practical applications in the textile area. Investigation for surface morphology, pore size, water contact angle (WCA) and hydrostatic pressure was done in detail to examine the waterproofness and breathability of the PU/SiO nanofiber webs and the laminated fabrics. The results showed that when Tetraethoxysilane concentration in electrospun solution was 6 wt%, the fibrous web exhibited the desirable morphology, mechanical properties and hydrophobicity. At this time, SiO(2)nanoparticles dispersed uniformly on and in PU nanofibers and fibers had a more uniform diameter. The composite laminated fabrics produced exhibited a value for hydrostatic pressure of 23.5 kPa with water vapor transmission rate (WVTR) of 5.19kg/m(2)/day.
机译:在该研究中,通过静电纺丝和水热处理制备非氟化聚氨酯/二氧化硅(PU / SIO)纳米纤维网。 然后将开发的网层压在聚酯编织织物上,以检查它们在纺织区域中的实际应用。 详细研究了表面形态,孔径,水接触角(WCA)和静压压力的研究,以检查PU / SIO纳米纤维网和层压织物的防水和透气性。 结果表明,当电纺溶溶液中的四乙氧基硅烷浓度为6wt%时,纤维网显示了所需的形态,机械性能和疏水性。 此时,SiO(2)均匀地分散在PU纳米纤维和纤维中的纳米颗粒具有更均匀的直径。 所生产的复合层叠织物具有23.5kPa的静压压力的值,水蒸气透射率(WVTR)为5.19kg / m(2)/天。

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