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A Study of Electrospun PVDF on PET Sheet

机译:PET片上静电纺PVDF的研究

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PVDF (Kynar~R 761) nanofibers were made by electrospinning with an external voltage of 6-10 kV,a traveling distance of 7-15 cm and a flow rate of 0.4-1 mL/h.Although the mean diameter of the fibers has not changed significantly,the conditions affected the change in diameter distribution.This was attributed to interactions,both attraction and repulsion,between the positive charges on the polymer solutions and the electrically grounded collector.Higher voltages and traveling distance increased the level of attraction between the positive charge on the polymer solution and the electrically grounded collector,resulting in a narrow diameter distribution.In addition,a high flow rate allowed a high population of uniformly charged solutions to travel to the grounded collector,which resulted in a narrow diameter distribution.The optimum conditions for electrospinning of PVDF in DMAc/acetone (3/7 by wt) were a collector voltage of 6 kV,a syringe tip to collector of 7 cm,a flux rate of 0.4 mL/h and 10 kV,10 cm,1 mL/h.Since PVDF is widely used as a filtration membrane,it was electrospun on a PET support with a rotating drum as a grounded collector.Surprisingly,some straight nanofibers were separated from the randomly deposited nanofibers.The straight nanofiber area was transparent,while the randomly deposited nanofiber area was opaque.Both straight nanofibers and aligned nanofibers could be obtained by manipulating the PET dram collector.These phenomena were not observed when the support was changed to an Al sheet.This suggests that a pseudo dual collector was generated on the PET sheet.No negative charge was created because the PET sheet was not a conductive material.However,less charge was created when the sheet was not perfectly attached to the metal drum.Hence,the nanofibers jumped from one grounded site to the nearest one,yielding a straight nanofiber.
机译:PVDF(Kynar〜R 761)纳米纤维是通过电纺丝在6-10 kV的外部电压,7-15 cm的行进距离和0.4-1 mL / h的流速下进行静电纺丝制成的。没有明显的变化,条件影响直径分布的变化。这归因于聚合物溶液上的正电荷与接地的集电器之间的相互作用,吸引和排斥。较高的电压和行进距离增加了聚合物之间的吸引程度。聚合物溶液和接地的集电极上带正电荷,导致直径分布狭窄。此外,高流速使大量均匀电荷的溶液流到接地的集电极上,从而导致直径分布狭窄。在DMAc /丙酮(3/7重量比)中对PVDF进行静电纺丝的最佳条件是集电极电压为6 kV,针尖到集电极的距离为7厘米,通量率为0.4毫升/公顷且通常在10 kV,10 cm,1 mL / h的条件下使用。由于PVDF广泛用作过滤膜,因此将其电纺丝在带有旋转鼓作为接地收集器的PET支撑物上。直的纳米纤维区域是透明的,而随机沉积的纳米纤维区域是不透明的。通过操作PET德拉姆收集器可以得到直的纳米纤维和排列的纳米纤维,当将支撑物换成Al片时没有观察到这些现象。这表明在PET板上产生了伪双重收集器。由于PET板不是导电材料,因此不会产生负电荷。但是,如果该板未完全附着到金属鼓上,则产生的电荷会更少。因此,纳米纤维会跳跃从一个接地的地点到最近的一个地点,产生一条直的纳米纤维。

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