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Electrospinning of nanofibers: Analysis of diameter distribution and process dynamics for control.

机译:纳米纤维的静电纺丝:直径分布和过程动力学分析,以进行控制。

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摘要

Electrospinning employs electrostatic force to stretch a charged polymer solution jet and is capable of producing submicron diameter fibers. There has been considerable interest in electrospun fibers due to the ease with which nanometer-scale fibers can be produced from a wide range of polymers. In many applications, the average electrospun fiber diameter and its uniformity have important implications for the product's performance and process economics. Thus, it is desirable to develop electrospinning capability to achieve consistent and controllable fiber diameters. However, the current state-of-the-art electrospinning process results in varying diameter both during a run and runto-run. In addition, the relations of the process and material parameters to the resulting fiber diameter characteristics are not completely understood.;This research focuses on understanding what determines the fiber diameter distribution and developing the knowledge base for design of a fiber diameter control system in order to achieve a consistent and repeatable process.;The effects of operating parameters on process variability and resulting fiber diameter distribution are investigated. Different operating regimes are determined based on the Taylor cone behaviors and fluctuations. A minimal jet fluctuation regime is identified which helps select appropriate operating conditions.;The role of solvent evaporation in fiber spinning process is analyzed. Fiber diameter becomes smaller when solvent evaporation happens more slowly. The effect of ambient humidity on fiber formation by using aqueous PEO solutions is studied. For aqueous PEO solutions, the relative humidity is found to significantly affect fiber diameters and formation.;The correlations between several measurable variables such as straight jet diameter and bending angle to the resulting fiber diameter are established and able to predict the resulting fiber diameter.;The fundamental process dynamics are identified by step responses. An electrohydrodynamics model is developed to understand the fluid cone-jet and electric current dynamics as well as provide the basis for developing a measurement-based fiber diameter control system.
机译:电纺丝利用静电力拉伸带电的聚合物溶液射流,并能够生产亚微米直径的纤维。由于可以容易地由多种聚合物生产纳米级纤维,因此电纺纤维引起了极大的兴趣。在许多应用中,平均电纺纤维直径及其均匀度对产品的性能和工艺经济性具有重要意义。因此,期望发展电纺丝能力以实现一致且可控制的纤维直径。但是,当前最新的静电纺丝工艺会导致在运行和运行之间直径发生变化。此外,还没有完全理解过程和材料参数与所得纤维直径特性之间的关系。本研究着重于了解确定纤维直径分布的因素并开发用于设计纤维直径控制系统的知识库。实现了一致且可重复的过程。研究了操作参数对过程可变性和所得纤维直径分布的影响。基于泰勒锥的行为和波动来确定不同的运行方式。确定了最小的喷射波动范围,有助于选择合适的操作条件。分析了溶剂蒸发在纤维纺丝过程中的作用。当溶剂蒸发发生得更慢时,纤维直径会变小。研究了使用PEO水溶液对环境湿度对纤维形成的影响。对于水性PEO溶液,发现相对湿度会显着影响纤维直径和形成。基本的过程动力学通过阶跃响应来识别。开发了电动流体力学模型以了解流体锥喷射和电流动力学,并为开发基于测量的纤维直径控制系统提供了基础。

著录项

  • 作者

    Yan, Xuri.;

  • 作者单位

    Boston University.;

  • 授予单位 Boston University.;
  • 学科 Engineering Biomedical.;Engineering Mechanical.;Nanotechnology.
  • 学位 Ph.D.
  • 年度 2011
  • 页码 340 p.
  • 总页数 340
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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