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Development and Optimization of an Alternative Electrospinning Process for High Throughput.

机译:开发和优化高产量的替代静电纺丝工艺。

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摘要

This work is an investigation of the prospect of electrospinning from the simplest aperture-free system, a flat plate on which polymer solution is placed as droplets or undergoes a gravity-assisted flow. Nanofibers with a similar fiber diameter and diameter distribution were fabricated at similar voltages and working distances as that in an aperture-based system, however with much more flexibility to scale up the process and with no openings or nozzles that can clog. It is verified that the field gradient at the site of jet formation is important. In particular, it is shown that the relatively homogeneous electric field on the plate surface does not promote electrospinning as compared with the significantly more inhomogeneous field at the needle tip in the needle-plate configuration. However, the strong field gradient at the plate edge allows electrospinning from unconfined droplets of the polymer solution and formation of fibers with very similar diameters and diameter distributions as those fabricated by traditional needle electrospinning for the same polymer solution. Further it is also shown that this edge-plate methodology can be extended to systems with many “edges” and curved edges (such as those from a hollow cylinder) for massively-parallel electrospinning (that is, higher potential throughput). A detailed examination of the changes in fiber diameter, diameter distribution, and mat porosity is reported as a function of the electric field magnitude and geometry, and it is concluded that the process is quite stable over a range of experimental conditions. The connection between fiber properties and spinning conditions via changes in the length and duration of the linear region and the degree of whipping is discussed in the context of comparing edge-plate and needle-plate electrospinning. Not only do these results address issues specific to such a surface-based, parallel aperture-less electrospinning approach, they also continue to expand understanding of electrospinning in more general terms.
机译:这项工作是对从最简单的无孔系统进行静电纺丝的前景的研究,该系统是将聚合物溶液以液滴形式放置或经历重力辅助流动的平板。具有与基于孔径的系统相似的电压和工作距离,可制造出具有相似纤维直径和直径分布的纳米纤维,但是,纳米纤维具有更大的灵活性,可以扩大工艺规模,并且没有开口或喷嘴会堵塞。证实了射流形成部位的场梯度很重要。特别地,显示出,与针板构造中的针尖处的明显更不均匀的电场相比,板表面上的相对均匀的电场不促进静电纺丝。然而,板边缘处的强电场梯度允许从无限制的聚合物溶液液滴中进行静电纺丝,并形成直径和直径分布与通过相同聚合物溶液的传统针刺静电纺丝工艺非常相似的纤维。此外,还显示出该边缘板方法可以扩展到具有许多“边缘”和弯曲边缘(例如来自中空圆柱的边缘)的系统,以进行大规模平行的静电纺丝(即,更高的潜在产量)。据报道,对纤维直径,直径分布和毡孔隙率变化的详细检查是电场强度和几何形状的函数,可以得出结论,该过程在一系列实验条件下都非常稳定。通过比较边板和针板的静电纺丝,讨论了通过改变线性区域的长度和持续时间以及搅打程度改变纤维特性和纺丝条件之间的关系。这些结果不仅解决了这种基于表面的,平行的,无孔的静电纺丝方法所特有的问题,而且还在更广泛的意义上继续扩大了对静电纺丝的理解。

著录项

  • 作者单位

    North Carolina State University.;

  • 授予单位 North Carolina State University.;
  • 学科 Chemistry Polymer.;Nanotechnology.
  • 学位 Ph.D.
  • 年度 2012
  • 页码 90 p.
  • 总页数 90
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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