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首页> 外文期刊>Journal of Materials Science >Solution blow spinning: parameters optimization and effects on the properties of nanofibers from poly(lactic acid)/dimethyl carbonate solutions
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Solution blow spinning: parameters optimization and effects on the properties of nanofibers from poly(lactic acid)/dimethyl carbonate solutions

机译:固溶吹纺:参数优化及其对聚乳酸/碳酸二甲酯溶液中纳米纤维性能的影响

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Solution blow spinning (SBS) is a process to produce non-woven fiber sheets with high porosity and an extremely large amount of surface area. In this study, a Box-Behnken experimental design (BBD) was used to optimize the processing parameters for the production of nanofibers from polymer solutions consisting of poly(lactic acid) (PLA) dissolved in dimethyl carbonate. In addition, a comparative study between SBS fibers and cast film was performed to verify the influence of the SBS process on the crystallinity and thermal properties of PLA. The PLA concentration in polymer solutions was the most significant parameter affecting fiber diameter. The BBD analysis revealed that small diameter fibers were best obtained by a combination of 8 % w/v PLA concentration, 80 psi air pressure, and a feed rate of 50 A mu L min(-1). The comparative study showed that both the SBS and the film casting processes increased the PLA crystallinity. However, the PLA films had a higher degree of crystallinity compared with the fibers made by the SBS process (39 and 17 %, respectively), which was attributed to the high shear created at the SBS nozzle inducing orientation and chain alignment. During the fiber formation, crystals formed with varied morphology including the alpha'-crystals, which have a less ordered structure and lower thermal stability compared to the alpha-crystals. The lower thermal stability of SBS fibers compared to the films can be explained by the lower degree of crystallinity and also by the higher surface area which can accelerate the weight loss process.
机译:固溶吹纺(SBS)是一种生产具有高孔隙率和极大表面积的非织造纤维片的工艺。在这项研究中,Box-Behnken实验设计(BBD)用于优化由溶解在碳酸二甲酯中的聚乳酸(PLA)组成的聚合物溶液生产纳米纤维的工艺参数。此外,进行了SBS纤维和流延膜之间的比较研究,以验证SBS工艺对PLA结晶度和热性能的影响。聚合物溶液中的PLA浓度是影响纤维直径的最重要参数。 BBD分析表明,小直径纤维最好通过8%w / v PLA浓度,80 psi气压和50 AμL min(-1)的进料速度组合获得。对比研究表明,SBS和流延膜工艺均可提高PLA的结晶度。然而,与通过SBS工艺制得的纤维相比,PLA膜具有更高的结晶度(分别为39%和17%),这归因于SBS喷嘴产生的高剪切力导致取向和链取向。在纤维形成过程中,形成的晶体具有多种形态,包括α'晶体,与α晶体相比,α'晶体结构较不规则,热稳定性较低。 SBS纤维与薄膜相比较低的热稳定性可以用较低的结晶度以及较高的表面积来解释,这可以加快失重过程。

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