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Modelling experimental parameters for fabrication of nanofibres using Taguchi optimization by an electrospinning machine
Bulletin of Materials Science ( IF 1.9 ) Pub Date : 2020-07-01 , DOI: 10.1007/s12034-020-02138-y
Farhad Madani , Roghaieh Didekhani , Mahmoud Reza Sohrabi , Shirin Mofavvaz

In this research study, a photo-electrospinning device was designed and manufactured to produce nanofibres (NFs) by using an optical polymerization method. For this purpose, an electrospinning machine was designed and optimized. Various parameters such as voltage, speed of collector and distance were investigated on the uniformity and diameter of polycaprolactone fibres. Therefore, a Taguchi experimental design was used to optimize the diameter of the fibres. Nine experiments were conducted using scanning electron microscopy to study the surface morphology of the obtained fibres. The best conditions for producing NFs include: voltage $$=$$ = 15 V, speed of collector $$=$$ = 600 rpm and distance $$=$$ = 20 cm.

中文翻译:

通过静电纺丝机使用田口优化模拟制造纳米纤维的实验参数

在这项研究中,设计和制造了一种光静电纺丝装置,通过使用光聚合方法生产纳米纤维 (NFs)。为此,设计并优化了静电纺丝机。研究了电压、收集器速度和距离等各种参数对聚己内酯纤维的均匀性和直径的影响。因此,田口实验设计用于优化纤维的直径。使用扫描电子显微镜进行了九个实验来研究所得纤维的表面形态。生产 NF 的最佳条件包括:电压 $$=$$ = 15 V,收集器速度 $$=$$ = 600 rpm,距离 $$=$$ = 20 cm。
更新日期:2020-07-01
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