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Study on Static Puncture Strength of Needle Punched Non-Woven Fabrics

V. Ilango

Subject area: Science,Engineering and Technology  ·  Area of research: Textile Technology

Abstract

Geo-textile fabrics can be designed for a particular industrial applications based on the static puncture test results. Different types of non-woven fabrics are available. But in particular needle punched polyester, polypropylene and its blends are very much used in industries. In this paper sisal and polypropylene fibres are used to produce different combination of blends and the static puncture analysis carried out using box-behnken experimental design.

Keywords

Geo-textile, static puncture, box-behnken, sisal and polypropylene fibers

References

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[2] Narejo, D, Koerner, RM & Wilson-Fahmy, RF 1996, ‘Puncture protection of geomembranes Part II: Experimental’, Geosynthetics International, vol. 3, no. 5, pp. 629-653.

[3] Sarma, B, Kaushik, K, Bharali, R &Sharma B 2013, ‘A study of CBR properties of soil reinforced with jute geotextile with reference to the road construction in Assam’, In Indian Geotechnical Conference, pp. 22-26.

[4] SenthilKumar, P &Pandiammal Devi, S 2011, ‘Effect of needle punched nonwoven coir and jute geotextiles on CBR strength of soft subgrade’, ARPN Journal of Engineering and Applied Sciences, vol. 6, no. 11, pp. 114-116.

[5] Senthilkumar, P &Rajkumar, R 2012, ‘Effect of geotextile on CBR strength of unpaved road with soft subgrade’, Electronic Journal of Geotechnical Engineering, vol. 17, pp. 1355-1363.

[6] Som, N &Sahu, RB 1999, ‘Bearing capacity of a geotextile-reinforced unpaved road as a function of deformation: a model study’, Geosynthetics International, vol. 6, no. 1, pp. 1-7.

[7] Van Dyke, S 2014, ‘Comparison of cbr and pin puncture strength testing used in the evaluation of geotextiles’, PhD dissertation, The University of Wisconsin-Milwaukee.

[8] Hsieh, CW & Wang, JB 2008, ‘Clamping mechanism effects on the puncture resistance tests of high strength geotextiles’, Journal of Geo Engineering, vol. 3, no. 2, pp. 47-53.

[9] Anjali Karolia&Bhoj, RN 2016, ‘A Comparative study on the effect of chemical and enzyme treatment on the softening of sisal fibre’, International Journal of Scientific Research, vol. 5, no. 2, pp. 18-22.

[10] Askari, AS, Najar, SS &Vaghasloo, YA 2012, ‘Study the effect of test speed and fabric weight on puncture behavior of polyester needle punched nonwoven geo-textiles’, Journal of Engineered Fibers and Fabrics, vol. 7, no. 3, pp. 1-5.

How to cite this paper

V. Ilango "Study on Static Puncture Strength of Needle Punched Non-Woven Fabrics" Iconic Research And Engineering Journals Volume 1 Issue 2 2017 Page 96-101
V. Ilango "Study on Static Puncture Strength of Needle Punched Non-Woven Fabrics" Iconic Research And Engineering Journals, vol. 1, no. 2, Aug. 2017
V. Ilango (2017). Study on Static Puncture Strength of Needle Punched Non-Woven Fabrics. Iconic Research And Engineering Journals, 1(2).
V. Ilango "Study on Static Puncture Strength of Needle Punched Non-Woven Fabrics" Iconic Research And Engineering Journals, vol. 1, no. 2, Aug. 2017.
@article{1702615,
      author = {V. Ilango},
      title = {Study on Static Puncture Strength of Needle Punched Non-Woven Fabrics},
      journal = {Iconic Research And Engineering Journals},
      year = {2017},
      volume = {1},
      number = {2},
      pages = {96-101},
      issn = {2456-8880},
      url = {https://www.irejournals.com/formatedpaper/1702615.pdf},
      abstract = {Geo-textile fabrics can be designed for a particular industrial applications based on the static puncture test results. Different types of non-woven fabrics are available. But in particular needle punched polyester, polypropylene and its blends are very much used in industries. In this paper sisal and polypropylene fibres are used to produce different combination of blends and the static puncture analysis carried out using box-behnken experimental design.},
      keywords = {Geo-textile, static puncture, box-behnken, sisal and polypropylene fibers},
      month = {August},
  }