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首页> 外文期刊>Journal of Composite Materials >A preliminary study on the preparation of seamless tubular bacterial cellulose-electrospun nanofibers-based nanocomposite fabrics
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A preliminary study on the preparation of seamless tubular bacterial cellulose-electrospun nanofibers-based nanocomposite fabrics

机译:无缝管纤维纤维素 - 电纺纳米纤维纳米纤维型纳米复合织物的制备初探

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摘要

Due to various production stages involved, textiles and clothing industry is known for causing carbon dioxide emissions, water pollution, soil erosion and huge waste generation. It is a need of the hour to seek for natural, renewable, and bio-degradable fabrication materials and environmentally friendly production methods. This study proposes an eco-friendly approach to prepare bacterial cellulose/electrospun nanofibers membrane-based hybrid non-woven fabrics using in-situ self-assembly method. This fabrication method enables bacterial cellulose cultivation on nanofibrous membrane support to create custom-made seamless tubular hybrid fabrics in desirable dimensions, to be used for various textile applications with minimized material wastage. As-prepared nano-composite fabric was characterized using SEM, X-ray diffraction, and FTIR. FTIR and X-ray diffraction results confirmed the presence of bacterial cellulose in the composite structure. SEM analysis showed as the bacterial cellulose cultivates, its nanofibrils penetrate and grow into empty voids of membrane's structure, which results in secure binding and interlocking of electrospun nonofibers. Sample thickness and weight gain measurements after the modification were found to be approx. 33.90% and 39.02%, respectively. Reduced surface hydrophobicity, water uptake, and increased tensile strength might contribute towards better fabric performance and comfort. Overall, this study suggests an eco-friendly approach to prepare nano-composite fabrics that might be used for bio-textiles and related applications.
机译:由于涉及不同的生产阶段,纺织服装业以造成二氧化碳排放、水污染、土壤侵蚀和大量废物产生而闻名。寻找天然、可再生、可生物降解的制造材料和环境友好的生产方法是当下的需要。本研究提出了一种利用原位自组装法制备细菌纤维素/静电纺纳米纤维膜基杂化非织造布的环保方法。这种制造方法能够在纳米纤维膜支架上培养细菌纤维素,以创建理想尺寸的定制无缝管状混合织物,用于各种纺织应用,并将材料损耗降至最低。利用SEM、X射线衍射和FTIR对所制备的纳米复合织物进行了表征。FTIR和X射线衍射结果证实了复合结构中存在细菌纤维素。SEM分析表明,随着细菌纤维素的培养,其纳米纤维穿透并生长到膜结构的空隙中,从而导致静电纺非纤维的安全结合和联锁。改性后的样品厚度和增重测量值分别约为33.90%和39.02%。降低表面疏水性、吸水率和增加拉伸强度可能有助于改善织物性能和舒适性。总的来说,这项研究提出了一种生态友好的方法来制备纳米复合织物,可能用于生物纺织品和相关应用。

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