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Title
New horizons in modeling and simulation of electrospun nanofibers: A detailed review
Authors
S. RAFIEI S. MAGHSOODLOO M. SABERI S. LOTFI V. MOTAGHITALAB B. NOROOZI and A. K. HAGHI
Received
June 8, 2013
Published
Volume 48 Issue 5-6 May-June
Keywords
electrospinning, electrospinning modeling, electrospinning simulation
Abstract
Electrospinning is applied to create continuous fibers with nanometer diameters through jetting polymer solutions in
high electric fields. A drawback of this method, however, is the unstable behavior of the liquid jet, which causes the
f
ibers to be collected randomly. So a critical concern in this process is to achieve desirable control. Studying the
dynamics of the electrospinning jet will be easier and faster, if it can be modeled and simulated, rather than doing
experiments. This paper focuses on modeling and then simulating the electrospinning process as viewed by different
approaches. In order to study the applicability of the electrospinning modeling equations, which have been discussed in
detail in earlier parts of this review, an existing mathematical model, in which the jet is considered as a mechanical
system, has been interconnected with viscoelastic elements and used to build a numeric method. The simulation
features the possibility of predicting essential parameters of the electrospinning process and the results are in good
agreement with those of other numeric studies of electrospinning, which modeled this process based on axial direction.
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