DOI QR코드

DOI QR Code

The Effect of Fabric Movement on Wrinkle Recovery in a Clothing Care System

의류관리기 내 직물거동이 구김 제거에 미치는 영향

  • Yu, Dongjoo (Dept. of Fashion Industry, Ewha Womans University) ;
  • Yoon, Juhee (Dept. of Physics, Ewha Womans University) ;
  • Lee, Sang Wook (Dept. of Physics, Ewha Womans University) ;
  • Yun, Changsang (Dept. of Fashion Industry, Ewha Womans University)
  • 유동주 (이화여자대학교 의류산업학과) ;
  • 윤주희 (이화여자대학교 물리학과) ;
  • 이상욱 (이화여자대학교 물리학과) ;
  • 윤창상 (이화여자대학교 의류산업학과)
  • Received : 2020.12.10
  • Accepted : 2021.01.13
  • Published : 2021.04.30

Abstract

The purpose of this study was to examine the effect of fabric movement on wrinkle recovery in a clothing care system and to propose an algorithm to improve wrinkle removal performance by adjusting fabric movements. With an increase in the reciprocating speed of the movement system, the number and amplitude of curves on the fabric also increased. This allowed the fabric to be applied to a larger tension, resulting in better wrinkle removal performance at higher speeds. However, even at high reciprocating speeds, wrinkles could not be removed effectively because of nodes at a few specific locations. Based on the results of fabric movement and wrinkle recovery, a complex movement algorithm was proposed with a mixture of various reciprocation speeds. It showed a 41%p (24%→65%) improvement of wrinkle recovery when compared with the conventional algorithm that showed simple fabric movement at 180 rpm. This was because the positions of nodes and antinodes changed continuously and the force by the reciprocating motion could be applied evenly to the fabric.

Keywords

References

  1. American Association of Textile Chemists and Colorists. (2018, January). AATCC Test Method 124-2018t, Test method for smoothness appearance of fabrics after home laundering. AATCC. Retrieved from https://members.aatcc.org/store/tm124/533/
  2. Choi, S., Hwang, Y. J., Lee, H.-j., Kim, M. K., Kim, S. G., & Kim, H. S. (2018). Investigation of particulate matter removal efficiency via image processing. Textile Science and Engineering, 55(2), 89-94. doi:10.12772/TSE.2018.55.089
  3. Cy DeCosse Incorporated. (1985). Clothing care & repair. Minnetonka, MN: Author.
  4. Jeon, K. W. (2020, September 10). 삼성 가전 효자로 떠오른 의류관리기 [Clothing care system, which has emerged as a good son to Samsung's home appliances]. Maeil Business News Korea. Retrieved from https://mk.co.kr/news/business/view/2020/09/938150
  5. Kim, J., Lee, J., Kim, D., Gwon, S., & Baek, J. (2019). A study on the dry flow technology of clothing manager. Proceedings of the Korean Society of Mechanical Engineers, 2019 Conference, Korea, 190-193.
  6. Kim, S.-R. (2017). 세제와 세탁의 과학 (제3판) [Science of detergent and laundry (3th ed.)]. Paju: Gyomunsa.
  7. Lee, Y., Kim, S., Shin, J.-Y., Yun, C., Lee, S.-J., Jang, S., ... Choi, Y. J. (2009). Fashion industry ethics. Paju: Kyomunsa.
  8. Liang, S., Pan, N., Cui, Y., Wu, X., & Ding, X. (2019). Steam impinging and heat and water spreading in fabrics. Textile Research Journal, 89(8), 1455-1471. doi:10.1177/0040517518773373
  9. Liang, S., Pan, N., Wu, X., & Ding, X. (2018). Effects of pressurefree steam ironing on cotton fabric surfaces and wrinkle recovery. Textile Research Journal, 88(22), 2532-2543. doi:10.1177/0040517517725124
  10. Nayak, R. (Ed.). (2019). Sustainable technologies for fashion and textiles. Duxford, Cambridge, and Kidlington: Woodhead Publishing.
  11. Park, J. E. (2019, January 24). 미세먼지 심각할땐 의류청정기...미용실.네일샵으로 간 코웨이 [Clothing purifier when fine dust is serious...Coway to the hair salon and nail shop]. ASIATODAY. Retrieved from https://www.asiatoday.co.kr/view.php?key=20190123010014714
  12. Rhie, J.-S., Ahn, C., Song, K. H., Yoo, H. J., Lee, H.-J., & Kim, J. H. (2010). Textile care & management (2nd ed.). Seoul: Hyungseul.
  13. Sacco, R. G. (2020). Dynamical and statistical modeling of synchronicity: A probabilistic forecasting framework. International Journal of Brain and Cognitive Sciences, 9(1), 16-24. doi:10.5923/j.ijbcs.20200901.03
  14. Serway, R. A., & Jewett, J. W. Jr. (2010). Physics for scientists and engineers with modern physics (8th ed.). Belmot, CA: Brooks/Cole Cengage Learning.
  15. Wu, F., Liang, S., & Ding, X. (2015). Study on the mechanism of woven cotton fabric during steam ironing. Key Engineering Materials, 671, 179-185. doi:10.4028/www.scientific.net/KEM.671.179
  16. Xiao, X. Z., & Park, S. H. (2020). The plan for the improvement direction of clothing management machine through usability evaluation comparison-By taking LG TROMM Styler as the center-. Journal of the Korean Society of Design Culture, 26 (1), 207-220. doi:10.18208/ksdc.2020.26.1.207
  17. Yoon, K. H. (2018, October 4). 냄새 잡는 의류관리기, 편하긴한데 값이 좀... [Clothing care system for deodorization, convenient but...]. The Korea Daily Texas. Retrieved from http://koreadailytx.com/bbs/board.php?bo_table=living&wr_id=5
  18. Yun, C., & Park, C. H. (2016). The effect of fabric movement on washing performance in a front-loading washer III: Focus on the optimized movement algorithm. Textile Research Journal, 86(6), 563-572. doi:10.1177/0040517515590417
  19. Zaouali, R., Msahli, S., El Abed, B., & Sakli, F. (2007). Objective evaluation of multidirectional fabric wrinkling using image analysis. The Journal of The Textile Institute, 98(5), 443-451. doi:10.1080/00405000701489156