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Designing waterproof breathable materials based on electrospun nanofibers and assessing the performance characteristics

机译:基于静电纺纳米纤维设计防水透气材料并评估性能特征

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摘要

To develop waterproof breathable materials for diverse consumer applications, we used electrospinning to fabricate layered fabric systems with varying composite structures. Specifically, we developed layered fabric structures based on electrospun nanofiber webs with different levels of nanofiber web density, as well as different substrates and layer structures, and then examined the breathability and waterproofness of the material. The breathability and waterproofness of the layered fabric systems were compared with those of traditional waterproof breathable fabrics, including densely woven fabric, microporous membrane laminated fabric, and hydrophilic nonporous polyurethane coated fabric. Different breathability and barrier performance levels were achieved by varying the layer structure and substrates in the electrospun nanofiber web layered fabric systems. The uniformity of the nanofiber web and lamination process also affected the barrier and comfort performances. The comparison of waterproofness and breathability performances between the new materials and the traditional waterproof breathable materials revealed that the layered structures based on electrospun nanofiber webs provide a higher level of resistance to water penetration than densely woven fabrics and a higher degree of moisture vapor and air permeability than microporous membrane laminates and coated fabrics, with a proper selection of layer structure, substrate fabric, and lamination process.
机译:为了开发用于各种消费用途的防水透气材料,我们使用静电纺丝来制造具有不同复合结构的分层织物系统。具体来说,我们开发了基于具有不同水平纳米纤维网密度的静电纺纳米纤维网以及不同的基材和层结构的分层织物结构,然后检查了材料的透气性和防水性。将层状织物体系的透气性和防水性与传统的防水透气性织物进行了比较,包括密织织物,微孔膜层压织物和亲水性无孔聚氨酯涂层织物。通过改变电纺纳米纤维网层状织物系统中的层结构和基材,可以实现不同的透气性和阻隔性能水平。纳米纤维网的均匀性和层压过程也影响阻隔性和舒适性。新材料与传统防水透气材料之间的防水性和透气性性能的比较表明,基于电纺纳米纤维网的层状结构比致密编织的织物具有更高的耐水渗透性,并且具有更高的透湿性和透气性比微孔膜层压板和涂层织物要好,要适当选择层结构,基底织物和层压工艺。

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