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首页> 外文期刊>Biomaterials Research >A new prototype melt-electrospinning device for the production of biobased thermoplastic sub-microfibers and nanofibers
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A new prototype melt-electrospinning device for the production of biobased thermoplastic sub-microfibers and nanofibers

机译:用于生产生物基热塑性亚超细纤维和纳米纤维的新型原型熔融电纺丝设备

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Sub-microfibers and nanofibers have a high surface-to-volume ratio, which makes them suitable for diverse applications including environmental remediation and filtration, energy production and storage, electronic and optical sensors, tissue engineering, and drug delivery. However, the use of such materials is limited by the low throughput of established manufacturing technologies. This short report provides an overview of current production methods for sub-microfibers and nanofibers and then introduces a new melt-electrospinning prototype based on a spinneret with 600 nozzles, thereby providing an important step towards larger-scale production. The prototype features an innovative collector that achieves the optimal spreading of the fiber due to its uneven surface, as well as a polymer inlet that ensures even polymer distribution to all nozzles. We prepared a first generation of biobased fibers with diameters ranging from 1.000 to 7.000?μm using polylactic acid and 6% ( w /w) sodium stearate, but finer fibers could be produced in the future by optimizing the prototype and the composition of the raw materials. Melt electrospinning using the new prototype is a promising method for the production of high-quality sub-microfibers and nanofibers.
机译:亚微纤维和纳米纤维具有高的表面体积比,这使其适用于各种应用,包括环境修复和过滤,能量生产和存储,电子和光学传感器,组织工程以及药物输送。但是,这种材料的使用受到现有制造技术的低产量的限制。这份简短的报告概述了当前亚微米纤维和纳米纤维的生产方法,然后介绍了基于具有600个喷嘴的喷丝头的新型熔体静电纺丝原型,从而为大规模生产迈出了重要一步。该原型具有一个创新的收集器,该收集器由于其表面不均匀而实现了光纤的最佳散布,并具有一个聚合物入口,可确保聚合物均匀分布到所有喷嘴。我们使用聚乳酸和6%(w / w)的硬脂酸钠制备了第一代生物基纤维,其直径在1.000至7.000?μm之间,但将来可以通过优化原型和原料组成来生产更细的纤维材料。使用新原型进行熔体静电纺丝是生产高质量亚超细纤维和纳米纤维的有前途的方法。

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