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首页> 外文期刊>RSC Advances >Waterproof and breathable membranes of waterborne fluorinated polyurethane modified electrospun polyacrylonitrile fibers
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Waterproof and breathable membranes of waterborne fluorinated polyurethane modified electrospun polyacrylonitrile fibers

机译:水性氟化聚氨酯改性电纺聚丙烯腈纤维的防水透气膜

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摘要

Creating an efficient and cost-effective approach that can provide advanced microporous membranes with high waterproofness and good breathability has proved to be tremendously challenging. This work responds to these challenges by designing, fabricating and evaluating an electrospun polyacrylonitrile (PAN) fibrous membrane which was modified with waterborne fluorinated polyurethane (WFPU) to achieve high waterproof and breathable performances. By employing the WFPU modification, the pristine PAN fibrous membranes possessed remarkable superhydrophobicity with an advancing water contact angle of 159 degrees as well as adjustable pore structure. Significantly, the waterproofness was confirmed to depend on the maximum pore size and surface wettability, in good agreement with the Young-Laplace equation, and a geometric coefficient A was introduced as a geometric factor to evaluate the torturous pore structure in electrospun fibrous membranes. Furthermore, the resultant membranes could present a high waterproofness up to 83.4 kPa, large water vapor transmission rate over 9.2 kg per m(2) per day, good air permeability over 5.9 L m(-2) s(-1), suggesting them as promising candidates for a variety of potential applications such as protective clothing.
机译:事实证明,创造一种能够提供具有高防水性和良好透气性的高级微孔膜的有效且具有成本效益的方法具有极大的挑战性。这项工作通过设计,制造和评估电纺聚丙烯腈(PAN)纤维膜来应对这些挑战,该纤维膜经水性氟化聚氨酯(WFPU)改性后具有很高的防水和透气性能。通过采用WFPU改性,原始PAN纤维膜具有卓越的超疏水性,前进的水接触角为159度,并且孔结构可调。显着地,证实防水性取决于最大孔径和表面润湿性,与Young-Laplace方程良好吻合,并且引入几何系数A作为几何因子来评价电纺纤维膜中的曲折孔结构。此外,所得的膜可呈现高达83.4 kPa的高防水性,每天9.2 kg / m(2)的大水蒸气透过率,超过5.9 L m(-2)s(-1)的良好透气性,表明它们作为各种潜在应用(如防护服)的有希望的候选人。

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