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首页> 外文期刊>Journal of Engineered Fibers and Fabrics >Preparation of Superhydrophobic Teflon? AF 1600 Sub-Micron Fibers and Yarns Using the Forcespinning? Technique
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Preparation of Superhydrophobic Teflon? AF 1600 Sub-Micron Fibers and Yarns Using the Forcespinning? Technique

机译:超疏水聚四氟乙烯的制备?使用力纺AF 1600亚微米纤维和纱线?技术

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摘要

Superhydrophobic materials combined with manufacturing processes that can increase surface roughness of the material, offer an opportunity to effectively control wetting properties. Rapid formation of Teflon? AF (TAF) fibrous mats with sub-micron fiber diameter using the Forcespinning? technique is presented. The fiber formation technique is based on the use of centrifugal forces. SEM analysis shows uniform formation of TAF 1600 fibers with average diameter of 362±58nm. Contact angle measurement confirms the superhydrophobic nature of the mats with contact angles as high as 169° ± 3° and rolling angles of 2°. TAF 1600 mats were forcespun at a rate of 1gr/min. The relationship between the contact angle and hierarchical surface roughness of the TAF mat is also discussed. TAF yarns were also manufactured and characterized. Yarns with diameters of 156 microns withstood 17.5 MPa of engineering stress with a Young’s modulus of 348 MPa in the elastic region and excellent thermal stability.
机译:超疏水材料与可增加材料表面粗糙度的制造工艺相结合,为有效控制润湿性能提供了机会。快速形成铁氟龙?使用Forcespinning制成的亚微米纤维直径的AF(TAF)纤维垫?提出了技术。纤维形成技术是基于离心力的使用。 SEM分析显示平均直径为362±58nm的TAF 1600纤维的均匀形成。接触角的测量证实了垫子的超疏水性,其接触角高达169°±3°,滚动角为2°。以1gr / min的速度强制纺丝TAF 1600毡。还讨论了TAF垫的接触角和分层表面粗糙度之间的关系。还生产并表征了TAF纱线。直径为156微米的纱线可以承受17.5 MPa的工程应力,在弹性区域的杨氏模量为348 MPa,并且具有出色的热稳定性。

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