54
Views
0
CrossRef citations to date
0
Altmetric
Research Article

Optimization of the Resilience of Tunisian Hand-made Carpet

, , ORCID Icon &

References

  • Abidi, F., T. Harizi, S. Msahli, and F. Sakli. 2016. Study on the pile height loss of Tunisian handmade carpets under dynamic loading. International Journal of Recent Science Research 7 (9):13235–37.
  • Abidi, F., T. Harizi, S. Msahli, and F. Sakli. 2017. Modeling of tunisian hand-made carpet resilience under long static loading using fuzzy expert system. Fibers and Polymers Journal 18 (9):1810–15. doi:10.1007/s12221-017-7295-4.
  • Carnaby, G. A., and E. J. Wood. 1989. The physics of carpets. Journal of Textile Institute 80:71–90. doi:10.1080/00405008908659186.
  • Celik, N., and E. Koc. 2007. An experimental study on thickness loss of wilton type carpets produced with different pile materials after prolonged heavy static loading. Part 2: Energy absorption and hysteresis effect. Fibres & Textiles In Eastern Europe 15 (3):87–92.
  • Celik, N., and E. Koc. 2010. Study on the thickness loss of Wilton-type carpets under dynamic loading. Fibres & Textiles In Eastern Europe 1 (78):54–59.
  • Dayiary, M., S. N. Shaikhzadeh, and M. Shamsi. 2009. A new theoretical approach to the cut-pile carpet compression based on elastic stored bending energy. Journal of Textile Institute 100 (8):688–694. doi:10.1080/00405000802170242.
  • Dubinskaite, K., L. V. Langenhove, and R. Milasius. 2008. Influence of pile height and density on the end-use properties of carpets. Fibres & Textiles In Eastern Europe 16 (3):47–50.
  • El-Sheikh, A., and S. P. Hersh. 1970. The deformation and recovery of cut-pile carpets: A theoretical analysis, Studies in modern fabrics. Diamond Jubilee Conference of the Textile Institute, Manchester, August, 159–180.
  • Hersh, S. P., and A. El-Sheikh. 1971. Letters to the editor: Energy considerations in the recovery of carpets. Journal of Textile Institute63:660–663.
  • Ishtiaque, S. M., K. Sen, and A. Kumar. 2014. Influence of yarn structures; part A: On carpet compressional performance under static and dynamic conditions. Journal of Textile Institute 106 (11):1190–202. doi:10.1080/00405000.2014.982373.
  • ISO 2094 (International Organization for Standardization). 1999. Textile floor coverings - Determination of thickness loss under dynamic load.
  • Koc, E., N. Celik, and M. Tekin. 2005. An experimental study on thickness loss of Wilton-type carpets produced with different materials after prolong heavy static loading, Part I: Characteristic parameters and carpet behavior. Fibres & Textiles In Eastern Europe 13 (4):56–62.
  • Korkmaz, Y., and D. Kocer. 2010. Resilience behaviors of woven acrylic carpets under short- and long-term static loading. Journal of Textile Institute 101 (3):236–41. doi:10.1080/00405000802376161.
  • Mirjalili, S. A., and M. Sharzehee. 2005. A study and investigation on the influence of static and dynamic loading on the properties of handmade Persian carpet (I) −The effect of static loading. Fibers and Polymers Journal 6 (2):139–45. doi:10.1007/BF02875605.
  • Moghassem, A. R. 2008. Evaluating pile yarn characteristics in hand woven carpet using stress-strain behavior in compression. International Journal of Engineering Translate. B: Applications 21 (3):303–12.
  • NT 12.165 (Tunisian standard). 2007. Textile floor coverings - Determination of thickness loss under dynamic load.
  • NT 12.187 (Tunisian standard). 1996. Textile floor coverings - Determination of loss of thickness after prolonged application of a high static load.
  • NT 123.07 (Tunisian standard). 2007. Handicraft products - Handmade carpets - Texture 30*30 - Specifications and classification.
  • Öndera, E., and O. E. Erkalp. 2001. Effects of different structural parameters on carpet physical properties. Textile Research Journal 71 (6):549–55. doi:10.1177/004051750107100613.
  • Patni, P. C., R. K. Arora, R. S. Dhillon, and D. L. Bapna. 1996. Influence of fibre and constructional parameters on functional properties of hand-woven carpets. Indian Journal of Fibre and Textile 21 (3):189–93.
  • Tabatabaei, M., M. Ghane, A. Z. Hamadani, and H. Hasani. 2014a. Modeling the performance properties on woolen hand-knotted carpets using response surface methodology. Fashion Technologies of Textile Engineering 2 (3):2–3.
  • Tabatabaei, M., M. Ghane, A. Z. Hamadani, and H. Hasani. 2014b. Modeling the functional compression properties of hand-knotted carpets using factorial design and response surface methodology. Fibers and Polymers Journal 15 (9):1977–84. doi:10.1007/s12221-014-1977-y.
  • Vangheluwe, L., and P. Kiekens. 1997. Resilience properties of polypropylene carpets. Textile Research Journal 67 (9):671–76. doi:10.1177/004051759706700906.
  • Werney, F. 1993. A statistical model for bulk and texture retention in residential saxony carpets. Textile Research Journal 63 (4):194–204. doi:10.1177/004051759306300402.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.