首页> 外文会议>Proceedings of the 2010 5th IEEE International Conference on Nano/Micro Engineered and Molecular Systems >Experiment and simulation of coiled nanofiber deposition behavior from near-field electrospinning
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Experiment and simulation of coiled nanofiber deposition behavior from near-field electrospinning

机译:近场静电纺丝卷绕纳米纤维沉积行为的实验与仿真

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Both experiment and simulation works were utilized to research the deposition behavior of single coiled nanofiber on silicon substrate from Near-Field Electrospinning (NFES). In the experiment process, when the collector moving speed (CMS) is compatible with electrospinning speed, straight line nanofiber can be collected. When CMS decreases, jet would step into whipping motion due to the imbalance charge repulsive force from landed nanofiber. As decreasing CMS, nanofiber in waved shape, single circle coil and multi-circle coil can be fabricated in turn. In order to improve the controlling technology, a computational model based on Maxwell viscoelastic theory was build up to analyzed the deposition behavior of single nanofiber. Simulation results show that CMS is the main controlling parameter influence the nanofiber deposition morphology: beads deposited in straight line, when CMS higher than 0.35m/s; beads deposited in waved shape, when CMS lies between 0.15m/s and 0.35m/s; beads in single-circle coiled can be gained, when CMS ranges from 0.08m/s to 0.15m/s; beads would deposit in multi-circle coil, when CMS lower than 0.08m/s. The effect of collector conductivity was also investigated by the computational modeling: the diameter of multi-circle nanofiber zone and distance between adjacent nanofiber coil increases with collector conductivity decrease. The calculated behaviors of nanofiber deposition are in good agreement with the experimental results, which is a good way to represent the motion behavior of charged jet and nanofiber.
机译:实验和模拟工作都被用于研究近场静电纺丝(NFES)在硅基板上单卷纳米纤维的沉积行为。在实验过程中,当收集器的移动速度(CMS)与静电纺丝速度兼容时,就可以收集直线型纳米纤维。当CMS降低时,由于着陆纳米纤维的不平衡电荷排斥力,射流将进入鞭打运动。随着CMS的降低,可以依次制造波浪形的纳米纤维,单圈线圈和多圈线圈。为了改进控制技术,建立了基于麦克斯韦粘弹性理论的计算模型,以分析单纳米纤维的沉积行为。仿真结果表明,CMS是影响纳米纤维沉积形态的主要控制参数,当CMS高于0.35m / s时,珠粒呈直线状沉积。当CMS位于0.15m / s和0.35m / s之间时,珠子以波浪形沉积;当CMS范围从0.08m / s到0.15m / s时,可以获得单圆盘绕的磁珠;当CMS低于0.08m / s时,磁珠会沉积在多圈线圈中。还通过计算模型研究了集电极电导率的影响:随着集电极电导率的降低,多圈纳米纤维区域的直径和相邻纳米纤维线圈之间的距离增加。计算得到的纳米纤维沉积行为与实验结果吻合良好,这是表征带电射流和纳米纤维运动行为的良好方法。

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