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Nanofiber coated hybrid yarn fabricated by novel electrospinning-airflow twisting method

机译:新型静电纺丝气流捻法制备的纳米纤维包覆杂化纱

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摘要

The present paper proposes a new method for the preparation of nanofiber coated hybrid yarns. This method requires designing a multi-nozzle jet electrospinning device based on the principle of bubble bursts forming multiple jets to significantly increase the production of nanofibers and to obtain nanofiber bundles based on the principle of conjugated electrospinning. The design allows continuous nanofiber coated hybrid yarns to be obtained through the twisting of a three-dimensional (3D) high-velocity rotational airflow. The mechanism for the formation and bundling of nanofibers was studied, and the airflow field within the nozzle-twisting device was numerically simulated. The airflow forms a 3D high-velocity rotational airflow after it is injected into the twisting chamber from the jet orifice, and takes on the characteristics of a vortex flow. Under the effect of this vortex flow, the nanofibers are evenly twisted around the filament yarn and coated onto its surface, with the fibers oriented in the same direction as the twist direction. This airflow twisting process significantly improves the mechanical properties of the nanofiber hybrid yarn.
机译:本文提出了一种制备纳米纤维包覆杂化纱的新方法。该方法需要基于形成多个喷嘴的气泡破裂原理设计多喷嘴喷射电纺丝装置,以基于共轭电纺丝原理显着增加纳米纤维的产量并获得纳米纤维束。该设计允许通过三维(3D)高速旋转气流的加捻来获得连续的纳米纤维涂覆的混合纱线。研究了纳米纤维的形成和成束机理,并对喷嘴加捻装置内的气流场进行了数值模拟。气流从射流孔注入扭曲室后,形成3D高速旋转气流,并呈现涡流特性。在这种涡流的作用下,纳米纤维围绕长丝纱线均匀地加捻并涂覆在其表面上,纤维的取向与加捻方向相同。这种气流加捻过程显着改善了纳米纤维混合纱线的机械性能。

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