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首页> 外文期刊>European Polymer Journal >Novel mechanism for spinning continuous twisted composite nanofiber yarns
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Novel mechanism for spinning continuous twisted composite nanofiber yarns

机译:新型连续复合纳米纤维丝的纺丝机理

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摘要

Highly aligned and twisted composite Nylon 6 nanofibers incorporating multiwall carbon nanotubes (MWCNTs) were successfully electrospun, using a novel mechanism. It has been found that; ultrasound combined with high speed shearing is the simplest and most convenient method to improve the dispersion of MWCNTs into a polymer matrix with a certain loading. Scanning electron microscopy (SEM) and transmission electron microscopy (TEM) were conducted to characterize the morphology of nanofibers, the dispersion of MWCNTs and their alignment inside the fiber body. By manipulating the electrical forces during electrospinning and applying mechanical stretching to the electrospun nanofibers, high polymer chain orientation and better alignment of the MWCNTs particles along the fiber axis was achieved. Twist was applied to the nanofibers for providing the required inter fiber lateral cohesion interaction and friction thus, spinning a continuous twisted composite yarn. SEM images show twisted yarns with diameters ranging between 5 and 10 μm. The twist effect of the parallel bundle was investigated by controlling the twist per unit length using a motor speed controller at values of 100, 250, 500, 750 and 1000 rpm. The paper also provides a comprehensive review of various yarn spinning mechanisms of electrospun nanofibers.
机译:结合了多壁碳纳米管(MWCNT)的高度对齐和扭曲的复合尼龙6纳米纤维已成功通过新型机制进行电纺丝。已经发现;超声与高速剪切相结合是提高MWCNT在一定载荷下向聚合物基体分散的最简单,最方便的方法。进行扫描电子显微镜(SEM)和透射电子显微镜(TEM)表征纳米纤维的形态,MWCNT的分散及其在纤维体内的排列。通过操纵静电纺丝过程中的电力并将机械拉伸应用于静电纺丝纳米纤维,实现了高聚合物链取向和MWCNTs颗粒沿纤维轴的更好排列。将捻度施加到纳米纤维上以提供所需的纤维间横向内聚力相互作用和摩擦,从而使连续捻合的复合纱线纺丝。 SEM图像显示了直径在5至10μm之间的加捻纱。通过使用电动机速度控制器将单位长度的捻度控制在100、250、500、750和1000 rpm的值来研究平行束的捻度效应。本文还对电纺纳米纤维的各种纺纱机理进行了全面综述。

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