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首页> 外文期刊>Journal of Applied Polymer Science >Nano and submicrometric fibers of poly(D, L -lactide) obtained by solution blow spinning: Process and solution variables
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Nano and submicrometric fibers of poly(D, L -lactide) obtained by solution blow spinning: Process and solution variables

机译:通过溶液吹纺获得的聚(D,L-丙交酯)纳米和亚微米纤维:工艺和溶液变量

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摘要

Nano and submicrometric fibers of poly(D,L-lactide) (PDLLA or PLA) were spun from solutions using a solution blow spinning (SBS) apparatus. Fiber morphology and diameter were investigated by scanning electron microscopy as a function of polymer concentration, feed rate, and air pressure. A more systematic understanding of the SBS process parameters was obtained, and a quantitative relationship between these parameters and average fiber diameter was established by design of experiments and response surface methodology. It was observed that polymer concentration played an important role in fiber diameter, which ranges from 70 to 2000 nm, and its distribution. Lower polymer concentration tended to increase the formation of bead-on-string structures, whereas smooth fibers were formed at higher concentrations. Fiber diameter tended to increase with polymer concentration and decrease with feed rate. Based on these results, optimal conditions could be obtained for solution-blow spun fibers.
机译:使用溶液吹纺(SBS)设备从溶液中纺出聚(D,L-丙交酯)(PDLLA或PLA)的纳米和亚微米纤维。通过扫描电子显微镜研究纤维形态和直径,作为聚合物浓度,进料速率和气压的函数。获得了对SBS工艺参数的更系统的了解,并通过实验设计和响应面方法建立了这些参数与平均纤维直径之间的定量关系。观察到聚合物浓度在纤维直径(分布范围为70至2000 nm)中起着重要作用。较低的聚合物浓度倾向于增加串珠结构的形成,而在较高的浓度下形成光滑的纤维。纤维直径倾向于随聚合物浓度而增加,而随进料速率而减少。基于这些结果,可以获得固溶纺丝纤维的最佳条件。

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