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Multi spinnerets electrospinning with assistant sheath gas

机译:多喷丝板用辅助鞘气进行静电纺丝

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A multi nozzle electrospinning spinneret with assistant sheath gas was designed to realize the multi jets injection, by which the production rate of nanofiber can be promoted. The sheath gas around the nozzle decreased the surface charge density, and provided an excess stretching force to increase the motion speed of charged jet. The diameter of charged jet was also decreased by the sheath gas further. On the other hand, the sheath gas also reduced the mutual disturbance among charged jets, by which stable multi jets injection can be gained. The stretching force increased along with air pressure of sheath gas. Then, both of the nanofiber diameter and the critical voltage required for jet injection decreased with the increase of air pressure. With the increase of sheath gas pressure, the uniformity of electrospinning nanofiber can be also improved. As sheath gas pressure increased from 0kPa to 50kPa, the critical voltage required for the jet injection from multi nozzle decreased from 5kV to 0.3kV, meanwhile the averaged diameter of electrospinning nanofiber decreased from 472.80nm to 230.60nm. Multi nozzles electrospinning spinneret with sheath gas provided an excellent way to increase the production speed of nanofiber, and promoted the application of electrospinning technology.
机译:设计了带有辅助鞘气的多喷嘴静电纺丝喷丝头,以实现多喷流喷射,从而可以提高纳米纤维的生产率。喷嘴周围的鞘气降低了表面电荷密度,并提供了过量的拉伸力以提高带电射流的运动速度。鞘气进一步降低了带电射流的直径。另一方面,鞘气还减少了带电射流之间的相互干扰,由此可以获得稳定的多射流喷射。拉伸力随着鞘气的气压而增加。然后,随着空气压力的增加,纳米纤维直径和喷射喷射所需的临界电压均减小。随着鞘气压力的增加,静电纺丝纳米纤维的均匀性也可以得到改善。随着鞘气压力从0kPa增加到50kPa,多喷嘴喷射所需的临界电压从5kV降低到0.3kV,而静电纺丝纳米纤维的平均直径从472.80nm降低到230.60nm。带鞘气的多喷嘴静电纺丝喷头为提高纳米纤维的生产速度提供了极好的途径,并促进了静电纺丝技术的应用。

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