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Electrospinning and Characterization of Aligned Nanofibers from Chitosan/Polyvinyl Alcohol Mixtures : Comparison of Several Target Devices Newly Designed

机译:壳聚糖/聚乙烯醇混合物中排列的纳米纤维的静电纺丝和表征:几种新设计的靶标设备的比较

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摘要

Electrospinning of pure chitosan or chitosan/poly(vinyl alcohol) (PVA) (blend) was carried out with an optimization of the electrospinning conditions. The electrospinning of the pure chitosan was only possible at a relatively high electric field of 5 kV/cm into fibers with a diameter as thick as 30 urn, and its reproducibility was very poor. Blending of PVA into chitosan significantly improved the spinnability and the chitosan/PVA blend fiber was electrospun for further characterization. Several target devices were designed and examined to collect aligned nanofibers of chitosan/PVA. The most efficient was a rotating collector having grounded short wire bars arranged on a drum. Over 90 % of electrospun fibers were collected in parallel to the take-up direction with this collector. The fiber alignment was further improved with increasing the collector rotation speed up to a maximum speed of 4.7 m/s. The aligned chitosan/PVA fibers were subjected to drawing to 1.5 times and the crystallization of chitosan fractions was induced without indicating the clear crystal orientation.
机译:对纯壳聚糖或壳聚糖/聚乙烯醇(PVA)(共混物)进行静电纺丝,并优化了静电纺丝条件。纯壳聚糖的静电纺丝只能在5 kV / cm的相对较高的电场下才能制成直径高达30 30的纤维,其重现性非常差。将PVA掺入壳聚糖中可显着改善可纺性,将壳聚糖/ PVA掺混纤维进行电纺以进一步表征。设计并检查了几种目标设备,以收集排列整齐的壳聚糖/ PVA纳米纤维。最有效的是旋转式集电器,其接地的短线棒布置在滚筒上。超过90%的电纺纤维与该收集器平行于卷绕方向收集。通过将收集器的旋转速度提高到最大速度4.7 m / s,进一步改善了纤维排列。将取向的壳聚糖/ PVA纤维进行拉伸至1.5倍,并且诱导壳聚糖级分的结晶,而没有指示清楚的晶体取向。

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  • 来源
    《繊維学会誌》 |2011年第5期|p.63-68|共6页
  • 作者单位

    Division of Materials and Life Science, Graduate School of Science and Technology,Kyoto Institute of Technology, Matsugasaki, Kyoto 606-8585, Japan,Department of Mechanical Engineering, Faculty of Engineering,University of Malaya, 50603 Kuala Lumpur, Malaysia;

    Division of Macromolecular Science and Engineering, Graduate School of Science and Technology,Kyoto Institute of Technology, Matsugasaki, Kyoto 606-8585, Japan;

    Dept. of Bio-based Materials Science, Graduate School of Science and Technology,Kyoto Institute of Technology, Matsugasaki, Kyoto 606-8585, Japan;

    Dept. of Bio-based Materials Science, Graduate School of Science and Technology,Kyoto Institute of Technology, Matsugasaki, Kyoto 606-8585, Japan;

    Apparel Department, Faculty of Applied Arts, Helwan University, Cairo, Egypt;

    Technical Support Center for Textiles Industries, Hyogo Prefectural Institute of Technology,1790-496 Uenodan, Nomura-cho, Nishiwaki, Hyogo 677-0054, Japan;

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