首页> 外文期刊>Polymer: The International Journal for the Science and Technology of Polymers >A comparative parameter study: Controlling fiber diameter and diameter distribution in centrifugal spinning of photocurable monomers
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A comparative parameter study: Controlling fiber diameter and diameter distribution in centrifugal spinning of photocurable monomers

机译:比较参数研究:在光固化单体的离心纺丝中控制纤维直径和直径分布

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In this study, the key factors for controlling the average fiber diameter and diameter distribution of fibers made via simultaneous centrifugal spinning and UV initiated polymerization are elucidated. Through systematic investigation, it was found that the average fiber diameter has a strong dependence on monomer delivery rate through the orifice, which can be intuitively linked to both the orifice diameter and monomer mixture viscosity. On the other hand, the breadth of the fiber diameter distribution can be controlled by the spin speed of the rotating spinneret. Carefully tuning these process parameters allows near independent control of average fiber diameter and its distribution, which could provide access to a widely tailorable range of fibers appropriate for different applications. Finally, under optimized process conditions, crosslinked fibers with average diameters of approximately 1.5 mu m can be produced, which are one to two orders of magnitude smaller than photocured fibers fabricated in previous reports and comparable with the smallest melt blown nonwoven fibers produced commercially. Coupled with the advantages of cross-linked fibers made by in-situ photopolymerization, the capability to produce small fibers with tailored diameter distributions by centrifugal spinning could further establish this technology as a competitive alternative to existing approaches. (C) 2016 Elsevier Ltd. All rights reserved.
机译:在这项研究中,阐明了控制平均纤维直径和通过同时离心纺丝和紫外线引发聚合制备的纤维的直径分布的关键因素。通过系统研究,发现平均纤维直径强烈依赖于通过孔的单体传输速率,这可以直观地与孔直径和单体混合物粘度相关。另一方面,纤维直径分布的宽度可以通过旋转喷丝头的纺丝速度来控制。仔细调整这些工艺参数可以对平均纤维直径及其分布进行几乎独立的控制,这可以提供适用于不同应用的广泛定制范围的纤维。最后,在优化的工艺条件下,可以生产平均直径约为1.5微米的交联纤维,该交联纤维比以前报道中制备的光固化纤维小一到两个数量级,可与商业上生产的最小的熔喷非织造纤维相媲美。加上通过原位光聚合制成的交联纤维的优点,通过离心纺丝生产具有定制直径分布的小纤维的能力,可以进一步确立该技术作为现有方法的竞争性选择。 (C)2016 Elsevier Ltd.保留所有权利。

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