656
Views
1
CrossRef citations to date
0
Altmetric
Research Article

Theoretical Porosity of Elastic Single Jersey Knitted Fabric Based on 3D Geometrical Model of Stitch Overlapping

, , &

References

  • Abdolmaleki, S., A. A. J. Ali, and M. Amani. 2012. Estimation on the 3D porosity of plain knitted fabric under uniaxial extension. Fibers and Polymers 13 (4):535–13. doi:10.1007/s12221-012-0535-8.
  • Abou-Taleb, H., and H. El-Fowaty. 2016. Theoretical Development of Mathematical Model to Predict Vertical Wicking Behavior of Flow through Terry Towels. Mansoura Engineering Journal 41 (4):1–15. doi:10.21608/bfemu.2020.103986.
  • Atalay, Ö. 2018. Development of textile-based resistive pressure sensing structures for wearable electronic systems. Tekstil ve Mühendis 25 (110):140–45. doi:10.7216/1300759920182511009.
  • Benltoufa, S., F. Fayala, M. Cheikhrouhou, and B. Nasrallah. 2007. Porosity determination of jersey structure. AUTEX Research Journal 7 (1):63–69.
  • Elnashar, E. A. 2017. Volume porosity and air permeability in knitting fabrics. International Journal of Research in Advanced Engineering and Technology 5 (1):75–80. doi:10.15547/artte.2017.01.003.
  • Eltahan, E. A. E., M. Sultan, and A.B. Mito. 2016. Determination of loop length, tightness factor and porosity of single jersey knitted fabric. Alexandria Engineering Journal 55 (2):55. doi:10.1016/j.aej.2016.02.006.
  • Fouda, A., and M. Eldeeb. 2020. Mathematical modeling to predict the geometrical properties of float stitches in single jersey knitted fabrics. Mansoura Engineering Journal 45 (2):1–7. doi:10.21608/bfemu.2020.101030.
  • Fouda, A., A. El-Hadidy, and A. El-Deeb. 2015. Mathematical modeling to predict the geometrical and physical properties of bleached cotton plain single jersey knitted fabrics. Journal of Textiles 2015:1–10. doi:10.1155/2015/847490.
  • Guidoin, R., M. King, D. Marceau, A. Cardou, D. De La Faye, J.M. Legendre, and P. Blais. 1987. Textile arterial prostheses: Is water permeability equivalent to porosity? Journal of Biomedical Materials Research 21 (1):65–87. doi:10.1002/jbm.820210111.
  • Havlová, M. 2021. Air permeability and structural parameters of single jersey knitted fabric. Fibres and Textiles 28 (3):20–27.
  • Havlová, M., and J. Špánková. 2017. Porosity of knitted fabrics in the aspect of air permeability-discussion of selected assumptions. Fibres & Textiles in Eastern Europe 25 (3):86–91. doi:10.5604/01.3001.0010.1695.
  • Imrith, M. K., R. Unmar, and S. Rosunee. 2016. Determination of knitted fabric porosity using digital imaging techniques. Advances in Materials Science and Engineering 2016 (1):1–10. doi:10.1155/2016/6470351.
  • International Standard IS0 5084. 1996. Textiles- determination of thickness of textiles and textile products ( ISO 5084:1996).
  • Karaguzel, B. 2004. Faculty of North Carolina state university “Characterization and Role of Porosity in Knitted Fabric.” https://www.researchgate.net/publication/269107473_What_is_governance/link/548173090cf22525dcb61443/download%0Ahttp://www.econ.upf.edu/~reynal/Civilwars_12December2010.pdf%0Ahttps://think-asia.org/handle/11540/8282%0Ahttps://www.jstor.org/stable/41857625.
  • Khalil, A., A. Fouda, P. Těšinová, and A. S. Eldeeb. 2021. Comprehensive assessment of the properties of cotton single jersey knitted fabrics produced from different lycra states. AUTEX Research Journal 21 (1):71–78. doi:10.2478/aut-2020-0020.
  • Khalil, A., P. Těšinová, and A. R. R. Aboalasaad. 2021a. Effect of lycra weight percent and loop length on thermo-physiological properties of elastic single jersey knitted fabric. AUTEX Research Journal. doi:10.2478/aut-2021-0030.
  • Khalil, A., P. Těšinová, and A. R. R. Aboalasaad. 2021b. Thermal comfort properties of cotton/spandex single jersey knitted fabric. Industria Textila 72 (3):244–49. doi:10.35530/IT.072.03.1760.
  • Kumar, R., and S. Sood. 2020. A study on porosity related aspects of cotton knitted fabric with single jersey structure for improved comfort application for garment. Journal of Textile Engineering & Fashion Technology 6 (5):199–204.
  • Mezarciöz, S., and R. Tuğrul Oğulata. 2015. Modelling of porosity in knitted fabrics. Journal of Fashion Technology &textile Engineering 1:1–3. doi:10.4172/2329-9568.S1-005.
  • Ogulata, R. T., and S. Mavruz. 2010. Investigation of porosity and air permeability values of plain knitted fabrics. Fibres & Textiles in Eastern Europe 18 (5):71–75.
  • Peirce, F. T. 1947. Geometrical principles applicable to the design of functional fabrics. Textile Research Journal 17 (3):123–47. doi:10.1177/004051754701700301.
  • Puszkarz, A. K., and I. Krucińska. 2018. Modeling of air permeability of knitted fabric using the computational fluid dynamics. AUTEX Research Journal 18 (4):364–76. doi:10.1515/aut-2018-0007.
  • Salama, A. A., A. S. El-Deeb, and I. M. El-Shahat. 2015. Evaluation of bed cover properties produced from double fabric based on honeycomb. Journal of Textiles 2015:1–7. doi:10.1155/2015/470456.
  • Siddiqui, M. O. R., and D. Sun. 2015. Porosity prediction of plain weft knitted fabrics. Fibers 3 (4):1–11. doi:10.3390/fib3010001.
  • Song, G. 2011. Improving comfort in clothing. Cambridge: The Textile Institute.”.
  • Turan, R. B., A. Okur, R. Deveci, and M. Açikel. 2012. Predicting the intra-yarn porosity by image analysis method. Textile Research Journal 82 (16):1720–28. doi:10.1177/0040517511427971.