4.7 Article

Orthogonal Optimization Research on Various Nozzles of High-Speed Centrifugal Spinning

出版社

FRONTIERS MEDIA SA
DOI: 10.3389/fbioe.2022.884316

关键词

centrifugal spinning; stepped nozzle; conical-straight nozzle; conical nozzle; curved-tube nozzle; orthogonal optimization

资金

  1. National Natural Science Foundation of China [51775389]

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This article studied four different spinning nozzles for fabricating nanofibers by high-speed centrifugal spinning method, optimizing the nozzle structures and observing the morphology and surface quality of nanofibers using scanning electron microscope. The results showed that conical-straight nozzle and curved-tube nozzle produced smoother nanofibers with smaller diameter compared to stepped and conical nozzles.
High-speed centrifugal spinning is a burgeoning method of fabricating nanofibers by use of the centrifugal force field. This article studied four different spinning nozzles, which were called stepped nozzle, conical-straight nozzle, conical nozzle, and curved-tube nozzle, to explore the optimal nozzle structures for fabricating nanofibers. According to the principle of centrifugal spinning, the spinning solution flow states within the four nozzles were analyzed, and the solution outlet velocity model was established. Then, the structural parameters of the four kinds of nozzles were optimized with the spinning solution outlet velocity as the test index by combining the orthogonal test and numerical simulation. Based on the orthogonal test results, the influence of nozzle structure parameters on the solution outlet velocity was analyzed, and the best combination of parameters of the centrifugal spinning nozzle structure was obtained. Subsequently, the four kinds of nozzles were used to fabricate nanofibers in the laboratory, under different solution concentration, motor rotation speed, and outlet diameters. Finally, the scanning electron microscope (SEM) was applied to observe the morphology and surface quality of nanofibers. It was found that the surface of nanofibers manufactured by the conical-straight nozzle and curved-tube nozzle was smoother than that by stepped and conical nozzles, and the fiber diameter by the conical-straight nozzle was minimal, followed by curved-tube nozzles, stepped nozzles, and conical nozzles in the diameter distribution of nanofibers.

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