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Combined Application of Multinozzle Air-jet Electrospinning and Airflow Twisting for the Efficient Preparation of Continuous-Twisted Nanofiber Yarn

机译:多喷嘴喷气静电纺丝和气流加捻在高效制备连续加捻纳米纤维纱中的联合应用

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摘要

This paper presents a new approach for the mass production of nanofiber yams, which involves the use of a multinozzle air-jet electrospinning system and airflow twisting. In this system, the aggregation, orientation, and continuous bundling of nanofibers are first achieved by applying the principle of conjugate electrospinning. Three-dimensional highspeed rotating airflow is then applied to continuously twist and spin the nanofibers into yarn. In this study, the mechanisms for formation and aggregation of nanofibers using the new air-jet electrospinning system were analyzed. In addition, numerical simulations of the airflow field within the nozzle were performed to understand the airflow characteristics and to study the effects of airflow twisting on nanofiber spinning. The obtained results indicated that the output of nanofiber bundles for the proposed multinozzle air-jet electrospinning system was able to reach 6.642 g/h. The application of three-dimensional rotating airflow enabled continuous production of twisted nanofiber yams with favorable orientation and uniform twist distribution. Under an air pressure of 0.3 MPa and at a spinning speed of 132.1 m/s, the twist angle, tensile strength, and elongation of the nanofiber yam were 65.2 degrees, 74.23 MPa, and 85.55 %, respectively. Thus, it can be concluded that the proposed spinning tenique is practical and efficient for high-speed and large-scale production of nanofiber yam.
机译:本文提出了一种大规模生产纳米纤维纱的新方法,该方法涉及使用多喷嘴喷气电纺丝系统和气流扭曲。在该系统中,首先通过应用共轭电纺原理实现纳米纤维的聚集,定向和连续捆扎。然后施加三维高速旋转气流,以连续地将纳米纤维加捻并纺成纱线。在这项研究中,分析了使用新型喷气静电纺丝系统形成和聚集纳米纤维的机理。此外,对喷嘴内的气流场进行了数值模拟,以了解气流特性并研究气流扭曲对纳米纤维纺丝的影响。获得的结果表明,所提出的多喷嘴喷气静电纺丝系统的纳米纤维束的产量能够达到6.642 g / h。三维旋转气流的应用使得能够连续生产具有良好取向和均匀扭曲分布的扭曲纳米纤维纱。在0.3MPa的气压和132.1m / s的纺丝速度下,纳米纤维纱的扭曲角,拉伸强度和伸长率分别为65.2度,74.23MPa和85.55%。因此,可以得出结论,所提出的纺丝技术对于纳米纤维纱的高速和大规模生产是实用且有效的。

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