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Review

Recent Developments in Laser Fading of Denim: A Critical Review

, , , , &
Pages 11621-11631 | Published online: 14 Feb 2022

References

  • Sustainable denim processing | cottonworksTM. n.d. Accessed March 22, 2021. https://www.cottonworks.com/topics/sourcing-manufacturing/denim/sustainable-denim-finishing/.
  • Angelova, Y., L. Lazov, and S. Mezinska. 2017. Innovative laser technology in textile industry : Marking and engraving. In Proceedings of the 11th International Scientific and Practical Conference, 3:15–21. Rezekne Academy of Technologies, Rezekne. doi:10.17770/etr2017vol3.2610.
  • Ansari, I. Z. 2017. Impact of stone wash and acid wash on the physical properties of denim. International Journal of Engineering Research 6 (12):499–501. doi:10.5958/2319-6890.2017.00073.3.
  • Atav, Riza. 2013. The Use of new technologies in dyeing of proteinous fibers. In Eco-Friendly Textile Dyeing and Finishing Günay, Melih (London: IntechOpen), 103–47 978-953-51-0892-4 5 March 2021. doi:10.5772/53912.
  • Athey, S. N., J. K. Adams, L. M. Erdle, L. M. Jantunen, P. A. Helm, S. A. Finkelstein, and M. L. Diamond. 2020. The widespread environmental footprint of indigo denim microfibers from blue jeans. Environmental Science and Technology Letters 7:840–47. doi:10.1021/acs.estlett.0c00498.
  • Athey, S. N., and L. M. Erdle. 2021. Are we underestimating anthropogenic microfiber pollution? A critical review of occurrence, methods, and reporting. Environmental Toxicology and Chemistry 1–16. doi:10.1002/ETC.5173.
  • Bari, S. 2015. Comparative analysis of manual fading and laser fading process on denim fabric. Science Discovery 3 (6):44. doi:10.11648/j.sd.20150306.11.
  • Chow, Y., C. Chan, and C. Kan. 2011. Effect of CO2 laser treatment on cotton surface. Cellulose 18. doi:10.1007/s10570-011-9603-2.
  • Dakuri, A. (2013). MNF Technology of industrial denim washing : review. International Journal of Industrial Engineering and Technology 3 (4): 25–34.
  • Dalbaşı, E. S., ., & İlleez, A. A., and Özçelik kayseri, G (2019). A research on the effect of various laser fading parameters on physical and surface properties of denim fabric. Optics and Laser Technology 118 (March):28–36. https://doi.org/10.1016/j.optlastec.2019.04.030
  • Dascalu, T., S. E. Acosta-ortiz, M. Ortiz-morales, and I. Compean. 2001. Removal of the indigo color by laser beam-denim interaction. In Proceedings of SPIE, 4430:290–96.
  • Dascalu, T., S. Acosta-Ortiz, M. Ortiz, and I. Compean. 2000. Removal of the indigo color by laser beam–denim interaction. Optics and Lasers in Engineering 34 (3):179–89. doi:10.1016/S0143-8166(00)00087-7.
  • Dudeja, J. P. 2018. Laser application in apparel industry. International Journal of Advanced Scientific Technologies in Engineering and Management Sciences 4 (9):1–5. doi:10.22413/ijastems/2018/v4/i12/49379.
  • Dutta Majumdar, J., and I. Manna. 2003. Laser processing of materials. Sadhana - Academy Proceedings in Engineering Sciences 28 (3–4):495–562. doi:10.1007/BF02706446.
  • Elmogahzy, Y. E. 2020. Performance Characteristics of traditional textiles: denim and sportswear products. In Engineering Textiles second , 319–46. Elsevier. doi:10.1016/b978-0-08-102488-1.00013-7.
  • F.l.x, P. Redefines the future of how jeans are designed, made and sold - levi strauss & co : levi strauss & co. n.d. Accessed March 23, 2021. https://www.levistrauss.com/2018/02/27/project-f-l-x-redefines-future-jeans-designed-made-sold/.
  • Ghoranneviss, M., S. Shahidi, B. Moazzenchi, A. Anvari, A. Rashidi, and H. Hosseini. 2007. Comparison between Decolorization of Denim Fabrics with Oxygen and Argon Glow Discharge. Surface & Coatings Technology 201:4926–30. doi:10.1016/j.surfcoat.2006.07.162.
  • Gokarneshan, N., R. Sandip, and R. Malathi. 2018. Advances in Denim Research. Research & Development in Material Science 3 (1):206–12. doi:10.31031/RDMS.2018.03.000551.
  • Harlapur, S. F., and V. Sreenivasaiah. 2017. Effect of Enzyme Washing on Properties of Denim Fabric Government Institute of Textile Technology. International Journal of Engineering and Technical Research 6 (12):10–13. doi:10.17577/IJERTV6IS120021.
  • Heikinheimo, L., and J. Buchert. 2001. Synergistic Effects of Trichoderma Reesei Cellulases on the Properties of Knitted Cotton Fabric. Textile Research Journal 71 (8):672–77. doi:10.1177/004051750107100804.
  • Heikinheimo, L., J. Buchert, A. Miettinen-Oinonen, and P. Suominen. 2000. Treating Denim fabrics with Trichoderma Reesei cellulases. Textile Research Journal 70 (11):969–73. doi:10.1177/004051750007001106.
  • Hmida, S. B., and N. Ladhari. 2015. Study of parameters affecting dry and wet ozone bleaching of denim fabric. Ozone: Science and Engineering 38 (3):175–80. doi:10.1080/01919512.2015.1113380.
  • Hoque, S., M. Abdur Rashid, S. Chowdhury, and A. Chakraborty. 2019. Alternative washing of cotton denim fabrics by natural agents alternative washing of cotton denim fabrics by natural agents. American Journal of Environmental Protection 7 (6):79–83. doi:10.11648/j.ajep.20180706.12.
  • Hoque, S., J. Hossain, A. Imtiaz, S. Das, and M. Abdur. 2018. Scope of dry wood & wood composite alternate to stone in case of acid wash on denim fabric scope of dry wood & wood composite alternate to stone in case of acid wash on denim fabric. International Journal of Current Engineering and Technology 8 (2):382–88. doi:10.14741/ijcet/v.8.2.32.
  • Hosen, M. D. 2019. Analysis of physical & chemical properties of cotton- jute blended denim after a sustainable (industrial stone enzyme) wash. Journal of Textile Science & Fashion Technology 3 (2):1–18. doi:10.33552/jtsft.2019.03.000558.
  • Hung, O. N., L. J. Song, C. K. Chan, C. W. Kan, and C. W. M. Yuen. 2011. Using Artificial neural network to predict colour properties of laser-treated 100 % cotton fabric. Fibers and Polymers 12 (8):1069–76. doi:10.1007/s12221-011-1069-1.
  • Inam, S.H. 2020 Laser in Denim Industry | Laser Finish Is Safe | Lasers Are Sustainable | Textile Study Center https://textilestudycenter.com/laser-in-denim-industry-laser-finish-is-safe-lasers-are-sustainable/ 23 march 2021
  • Jiang, S. X., G. Yuan, J. Huang, Q. Peng, and Y. Liu. 2016. The effect of laser engraving on aluminum foil-laminated denim fabric. Textile Research Journal 86 (9):919–32. doi:10.1177/0040517515599738.
  • Jie, X., H. Zhenglei, L. Sheng, and K. Wenbo. 2020. Production Cost optimization of enzyme washing for indigo dyed cotton denim by combining kriging surrogate with differential evolution algorithm. Textile Research Journal 90 (15–16):1860–71. doi:10.1177/0040517520904352.
  • Juciene, M., V. Urbelis, Z. Juchneviciene, and L. Cepukone. 2014. The effect of laser technological parameters on the color and structure of denim fabric. Textile Research Journal 84 (6):662–70. doi:10.1177/0040517513494256.
  • Juciene, M., V. Vytautas Urbelis, Ž. Juchneviciene, V. Saceviciene, and V. Dobilaite. 2018. The Influence of Laser treatment and industrial washing on denim fabric tension properties. International Journal of Clothing Science and Technology 30 (4):588–96. doi:10.1108/IJCST-03-2017-0032.
  • Kan, C. W. 2014a. CO2 laser treatment as a clean process for treating denim fabric. Journal of Cleaner Production 66:624–31. doi:10.1016/j.jclepro.2013.11.054.
  • Kan, C. W. 2014b. Colour fading effect of indigo-dyed cotton denim fabric by CO 2 laser. Fibers and Polymers 15 (2):426–29. doi:10.1007/s12221-014-0426-2.
  • Kan, C. W., and K. K. Law. 2013. Dimensional stability of CO 2 Laser-treated denim fabric. In International Conference on Photonics, Optics and LaserTechnology (PHOTOPTICS-2013), Barcelona, Spain, 125–28. doi:10.5220/0004264501250128.
  • Kan, C. W., and C. W. M. Yuen. 2012. Effect of atmospheric pressure plasma treatment on the desizing and subsequent colour fading process of cotton denim fabric coloration technology. Coloration Technology 1–8. doi:10.1111/j.1478-4408.2012.00388.x.
  • Kan, C. W., C. Yuen, and C. Cheng. 2010. Technical study of the effect of CO2 laser surface engraving on the colour properties of denim fabric. Coloration Technology 126:365–71. doi:10.1111/j.1478-4408.2010.00270.x.
  • Kan, C. W., C. W. M. Yuen, and C. W. Cheng. 2012. Color Fading of Indigo-Dyed Cotton Denim Fabric by Laser. Advanced Materials Research, Advanced Materials Research 441:187–91. www.scientific.net/AMR.441.187.
  • Khalil, E. 2015a. Sustainable and Ecological Finishing Technology for Denim Jeans. American Association for Science and Technology 2 (5):159–63.
  • Khalil, E. 2015b. Wrinkle finish on denim by resin treatment : a review. American Association for Science and Technology 2 (3):82–87.
  • Khan, M. M. R., M. Ibrahim H Mondal, and M. Zulhash Uddin. 2013. Sustainable washing for denim garments by enzymatic treatment. Journal of Chemical Engineering 27:27–31. doi:10.3329/jce.v27i1.15854.
  • Kheder, F., S. Dhouib, S. Msahli, and F. Sakli. 2009. The influence of industrial finishing treatments and their succession on the mechanical properties of denim garment. Autex Research Journal 9 (3):93–100.
  • Kumar Roy Choudhury, A 1 April . 2017. Finishing of Denim Fabrics. In Principles of Textile Finishing 1st edition The textile institute book series , 383–415. Woodhead Publishing. doi:10.1016/b978-0-08-100646-7.00012-6.
  • Lizhu, H., X. Zhou, J. Chen, X. Zhang, G. Chen, W. Chang, Y. Alice, Y. Hong, and Y. Changhai. 2021. Investigation of color fading and fabric-touch test for jeans through ozonation. Ozone: Science and Engineering 43 (3):276–83. doi:10.1080/01919512.2020.1796584.
  • Mishra, S., C. Charan Rath, and A. Prasad Das. 2019. Marine microfiber pollution: a review on present status and future challenges. Marine Pollution Bulletin 140:188–97. doi:10.1016/j.marpolbul.2019.01.039.
  • Mondal, I. H., and M. Rahman Khan. 2015. Characterization and process optimization of indigo dyed cotton denim garments by enzymatic wash. Fashion and Textiles 1 (19):1–12. doi:10.1186/s40691-014-0019-0.
  • Nayak, R., and A. Khandual. 2010. Application of laser in apparel industry. Colourage 57 (2):85–90.
  • Nayak, R., and R. Padhye. 2016. The use of laser in garment manufacturing: an overview. Fashion and Textiles 3 (1):1–16. doi:10.1186/s40691-016-0057-x.
  • Nurdan, K. 2005. Treating denim fabrics with immobilized commercial cellulases. Process Biochemistry 40:767–71. doi:10.1016/j.procbio.2004.02.003.
  • Ortiz-Morales, M., M. Poterasu, S. E. Acosta-Ortiz, I. Compean, and M. Rosa Hernandez-Alvarado. 2003. A comparison between characteristics of various laser-based denim fading processes. Optics and Lasers in Engineering 39 (1):15–24. doi:10.1016/S0143-8166(02)00073-8.
  • Özellikleri, M., and Ü. Etkisinin. 2009. A Study on specifying the effect of laser fading process on the color and mechanical properties of the denim fabrics. Tekstil Ve Konfeksiyon 19 (2):133–38.
  • Özgüney, A. T., Özçelik, G., & Özkaya, K. (2009). A study on specifying the effect of laser fading process on the colour and mechanical properties of the denim fabrics. Tekstil ve Konfeksiyon 19 (2):133–138.
  • Pal, Harinder, Kaleshnath Chatterjee, and Deepansh Sharma. 2017. Water footprint of denim industry. In Sustainability in Denim Muthu, Subramanian Senthilkannan The textile institute book series (woodhead publishing) , 111–23. doi:10.1016/B978-0-08-102043-2.00005-8.
  • Park, T. Y., and M. Ok Kim. 2018. Manufacture and physical properties of the denim fabrics using Hanji paper yarn as weft yarn. Fashion and Textiles 5 (1):26. doi:10.1186/s40691-018-0140-6.
  • Patra, A. K., A. Madhu, and N. Bala. 2018. Enzyme Washing of Indigo and Sulphur Dyed Denim. Fashion and Textiles 5 (1):1–15. doi:10.1186/s40691-017-0126-9.
  • Paul, R. 2015. Denim and Jeans: An Overview. In Denim: Manufacture, Finishing and Applications Paul, R. woodhead publishing series in textiles , 1–11. Elsevier Ltd. doi:10.1016/B978-0-85709-843-6.00001-9.
  • Periyasamy, A. P. 2021. Evaluation of microfiber release from jeans: the impact of different washing conditions. Environmental Science and Pollution Research 28 (41):58570–82. doi:10.1007/S11356-021-14761-1.
  • Periyasamy, Aravin Prince, Sunil Kumar Ramamoorthy, and Saatish Siddappa Lavate. 2019. Eco-friendly denim processing. In Handbook of Ecomaterials, Vol. 3, 1559–79. Cham: Springer International Publishing. doi:10.1007/978-3-319-68255-6_102.
  • Petrak, S., and D. Rogale. 2001. Methods of Automatic Computerised Cutting Pattern Construction. International Journal of Clothing Science and Technology 13:228–39. doi:10.1108/09556220110396542.
  • Radetić, M., P. J. Nevena Puač, Z. Saponjic, and Z. Petrović. 2009. Plasma induced decolorization of indigo dyed denim fabrics related to mechanical properties and fiber surface morphology. Textile Research Journal 79:558–65. doi:10.1177/0040517508095612.
  • Sakib, A., T. Islam, S. Islam, M. Ahmed, and S. Ali. 2019. Analysis the physical properties of laser fading on denim fabric. Journal of Textile Engineering 5 (6):288–90. doi:10.15406/jteft.2019.05.00215.
  • Sema, E., G. Özçelik, and A. Asl. 2019. A research on the effect of various laser fading parameters on physical and surface properties of denim fabric. Optics and Laser Technology 118:28–36. doi:10.1016/j.optlastec.2019.04.030.
  • Shahid, A. 2018. Development of eco-friendly development of eco-friendly garments washing for localized fading effect on garments : a future sustainable process for single step dyeing fad. Advance Research in Textile Engineering 3 (1):1–5.
  • Shaulova, E. 2020. Global denim market - statistics & facts. Statista.
  • Shibly, Mohammad Abul Hasan, Mohammad Mohsinul Hoque, and Solayman Miah. 2021. Development of eco-friendly denim fabric washing by natural resources. International Journnal of Textile Science 10 (1):1–6. http://article.sapub.org/10.5923.j.textile.20211001.01.html 12 July 2021.
  • Siddique, A., T. Hussain, W. Ibrahim, Z. Ali Raza, and S. Abid. 2018. Optimization of discharge printing of indigo denim using potassium permanganate via response surface regression. Pigment and Resin Technology 47 (3):228–35. doi:10.1108/PRT-11-2016-0100.
  • Siddique, A., T. Hussain, W. Ibrahim, Z. Ali Raza, S. Abid, and A. Nazir. 2017. Response surface optimization in discharge printing of denim using potassium permanganate as oxidative agent. Clothing and Textiles Research Journal 35 (3):204–14. doi:10.1177/0887302X17701600.
  • Singh, Shalini, and Robinka Khajuria. 2017. Penicillium Enzymes for the Textile Industry. In New and Future Developments in Microbial Biotechnology and Bioengineering: Penicillium System Properties and Applications Gupta, Vijai Kumar, and Rodriguez-Couto, Susana, 201–15 978-0-444-63501-3 . Elsevier. doi:10.1016/B978-0-444-63501-3.00011-9.
  • TalatMadian, W., and B. GebalyGabr. 2016. Durability utilizing abrasion of seamed laser faded denim. International Journal of Scientific Research Engineering & Technology 5 (6):332–37.
  • Tarhan, M., and M. Sariisik. 2009. A comparison among performance characteristics of various denim fading processes. Textile Research Journal 79 (4):301–09. doi:10.1177/0040517508090889.
  • Venkatraman, P. D., and C. M. Liauw. 2019. Use of a carbon dioxide laser for environmentally beneficial generation of distressed/faded effects on indigo dyed denim fabric: evaluation of colour change, fibre morphology, degradation and textile properties. Optics and Laser Technology 111 (April):701–13. doi:10.1016/j.optlastec.2018.09.004.
  • Wei, D., D. Zuo, H. Gan, and Y. Changhai. 2019. Comparative study on the E Ff ects of laser bleaching and conventional bleaching on the physical properties of indigo kapok/cotton denim fabrics. Applied Sciences 9:1–15.
  • Zahir, L., and M. Rahman Khan. 2015. Comparison study of the effects of bleaching and enzyme concentration on the physical and mechanical properties for denim wash. International Journal of Scientific and Engineering Research 6 (4):343–48.

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