THERMAL SCIENCE

International Scientific Journal

CRIMP FREQUENCY OF A VISCOELASTIC FIBER IN A CRIMPING PROCESS

ABSTRACT
Crimp frequency during the stuffer box crimping process is of great importance for controlling morphology of crimped fibers. A fiber is considered as a viscoelastic rheological fluid, and an approximate formulation for crimp frequency is obtained revealing the main factors affecting the crimping process.
KEYWORDS
PAPER SUBMITTED: 2016-01-01
PAPER REVISED: 2016-09-05
PAPER ACCEPTED: 2016-09-06
PUBLISHED ONLINE: 2017-09-09
DOI REFERENCE: https://doi.org/10.2298/TSCI160101077H
CITATION EXPORT: view in browser or download as text file
THERMAL SCIENCE YEAR 2017, VOLUME 21, ISSUE Issue 4, PAGES [1839 - 1842]
REFERENCES
  1. Huang, H., et al., A Mathematical Model for an Axially Moving Slender Fiber of Viscoelastic Fluid: Part 1 Fabrication of Crimped Fiber, SYLWAN, 158 (2015), 5, pp. 285-293
  2. Huang, J. X., et al., Transverse Vibration of an Axially Moving Slender Fiber of Viscoelastic Fluid in Bubbfil Spinning and Stuffer Box Crimping, Thermal Science, 19 (2013), 4, pp. 1437-1441
  3. Huang, J. X., et al., Effect of Temperature on Nonlinear Dynamical Property of Stuffer Box Crimping and Bubble Electrospinning, Thermal Science, 18 (2014), 3, pp. 1049-1053
  4. Wang, P., et al., Nonlinear Vibration Mechanism for Fabrication of Crimped Nanofibers with Bubble Electrospinning and Stuffer Box Crimping Method, Textile Research Journal, On-line first, https: //doi.org.10.1177/0040517516658513
  5. Chen, R. X., et al., Mechanism of Nanofiber Crimp, Thermal Science, 17 (2013), 5, pp. 1473-1477
  6. Liu, P., et al., Facile Preparation of Alpha-Fe2O3 Nanobulk via Bubble Electrospinning and Thermal Treatment, Thermal Science, 20 (2016), 3, pp. 967-972
  7. Shen, J., et al., Primary Study of Ethyl Cellulose Nanofiber for Oxygen-Enrichment Membrane, Thermal Science, 20 (2016), 3, pp. 1008-1009
  8. He, C. H., et al., Bubbfil Spinning for Fabrication of PVA Nanofibers, Thermal Science, 19 (2015), 2, pp. 743-746
  9. Liu, P., et al., Micro-Nanofibers with Hierarchical Structure by Bubbfil-Spinning, Thermal Science, 19 (2015), 4, pp. 1455-1456
  10. Li, Y., et al. Bubbfil Electrospinning of PA66/Cu Nanofibers, Thermal Science, 20 (2016), 3, pp. 993-998

© 2024 Society of Thermal Engineers of Serbia. Published by the Vinča Institute of Nuclear Sciences, National Institute of the Republic of Serbia, Belgrade, Serbia. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution-NonCommercial-NoDerivs 4.0 International licence