2014
DOI: 10.1515/ijnsns-2014-0024
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A Short Remark on WAN Model for Electrospinning and Bubble Electrospinning and Its Development

Abstract: This paper points out that the Bratu-like equation for the charged jet in electrospinning process (Yu-Qin Wan, Qian Guo & Ning Pan, International Journal of Nonlinear Sciences and Numerical Simulation, 5(1), pp. 5–8) requires much improvement.

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Cited by 7 publications
(6 citation statements)
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“…This equation shows that a higher drawing velocity or a lower flow rate results in a smaller fiber diameter. Similar phenomena were also observed in the bubble electrospinning [19], the bubbfil spinning [20], and electrospinning [22,23] Conclusions This paper suggests a simple analytical model for predicting the fiber diameter in the dry-jet wet spinning process. Neither complex numerical simulation nor complex derivation is involved, only simple mass conservation, eq.…”
Section: Results Discussionsupporting
confidence: 73%
See 2 more Smart Citations
“…This equation shows that a higher drawing velocity or a lower flow rate results in a smaller fiber diameter. Similar phenomena were also observed in the bubble electrospinning [19], the bubbfil spinning [20], and electrospinning [22,23] Conclusions This paper suggests a simple analytical model for predicting the fiber diameter in the dry-jet wet spinning process. Neither complex numerical simulation nor complex derivation is involved, only simple mass conservation, eq.…”
Section: Results Discussionsupporting
confidence: 73%
“…A 1-D model is widely used in the morphology control in fiber fabrication process including the bubble electrospinning [19] and the bubbfil spinning [20].…”
Section: One-dimensional Modelmentioning
confidence: 99%
See 1 more Smart Citation
“…Though there are many mathematical models for electrospinning [8], but the most useful model for electrospinning and bubble electrospinning is the Liu-Wang model [9].…”
Section: Surface Tension Of a Non-hemisphere Bubblementioning
confidence: 99%
“…Bratu-like equations arising in electrospinning and bubble electrospinning processes have caught much attention [1][2][3]. The model was first proposed by Wan et al [3] for classic electrospinning, and the model is called Wan model [4], which can also be applied to the bubble electrospinning. The model can describe the morphology of nanofibers well [5].…”
Section: Introductionmentioning
confidence: 99%