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Melt electrospinning process optimization of polylactic acid nanofibers

机译:聚乳酸纳米纤维熔体静电纺丝工艺优化

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摘要

Melt electrospinning is a safe and simple technique for the production of micro and nanofibers which can be an alternative to conventional solvent electrospinning. The effects of various melt-electrospinning parameters, including molecular weight, electric field strength, flow rate and temperature on the morphology, and fiber diameter of polylactic acid nanofibers were studied. An orthogonal design was used to examine process parameters. It was shown that molecular weight was the predominant factor in determining the obtainable fiber diameter of the collected fibers and is the most effective parameter on the average fiber diameter of melt electrospun PLA nanofibers. The flow rate has the less important impact. Mean fiber diameter (MFD) increased by increasing MW and flow rate, but decreased by increasing electric field strength and temperature. MFD of optimized fibers was below 100nm and the result of statistical analysis using Design Expert software was in good agreement with the experimental condition.
机译:熔体静电纺丝是生产微纤维和纳米纤维的安全且简单的技术,可以替代常规溶剂静电纺丝。研究了分子量,电场强度,流速和温度等各种熔体静电纺丝参数对聚乳酸纳米纤维的形貌和纤维直径的影响。正交设计用于检查工艺参数。结果表明,分子量是决定所收集纤维的可得纤维直径的主要因素,并且是熔融电纺PLA纳米纤维的平均纤维直径上最有效的参数。流速的影响较小。平均纤维直径(MFD)随分子量和流量的增加而增加,但随电场强度和温度的增加而减小。优化纤维的MFD在100nm以下,使用Design Expert软件进行的统计分析结果与实验条件吻合良好。

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