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Stable multi-jet electrospinning with high throughput using the bead structure nozzle

机译:使用珠状结构喷嘴的高产量稳定多喷静电纺

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摘要

A modified bead structure nozzle for the electrospinning process was developed to improve the production efficiency of nanofibers and facilitate the cleaning of equipment. The effects of the flow rate, voltage and receiving distance on the number of jets were studied. The results indicate that the number of stable jets can be effectively controlled by spinning conditions. The rotating spinning phenomenon, which occurred during spinning, was subjected to force analysis. The COMSOL Multiphysics model was applied to simulate the electric field to show that the bead structured nozzle does not change the overall spinning electric field compared with traditional spinning. The results indicate that the bead structure nozzle can produce a stable multi-jet using a curved surface structure and improve the production efficiency of nanofibers. Compared with the high-voltage conditions of needleless spinning, the bead-type nozzle helps to save energy and facilitate cleaning, so as to avoid the production of waste in experimental research and industrial production.
机译:开发了一种用于静电纺丝工艺的改进的珠状结构喷嘴,以提高纳米纤维的生产效率并促进设备清洁。研究了流量,电压和接收距离对射流数量的影响。结果表明,稳定的射流数量可以通过纺丝条件得到有效控制。对在纺丝过程中发生的旋转纺丝现象进行力分析。应用COMSOL Multiphysics模型对电场进行仿真,结果表明与传统纺丝相比,珠状喷嘴不会改变整体纺丝电场。结果表明,珠状结构的喷嘴可以利用曲面结构产生稳定的多喷嘴,并提高了纳米纤维的生产效率。与无针纺的高压条件相比,珠型喷嘴节省了能源,便于清洁,避免了实验研究和工业生产中的浪费。

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