참고문헌
- American Association of Textile Chemists and Colorists. (2018). AATCC TM88B-2018t Seam smoothness in fabrics after home laundering. AATCC. Retrieved from https://members.aatcc.org/store/tm88b/504/
- American Society for Testing and Materials. (2018). ASTM D 1683 / D1683M-17 Standard test method for failure in sewn seams of woven fabrics. ASTM International. Retrieved from https://www.astm.org/Standards/D1683.htm
- Brad, R., HAloiu, E., & Brad, R. (2014). Seam puckering objective evaluation method for sewing process. Annals of the University of Oradea: Fascicle of Textiles, Leatherwork, XV(1), 23-28.
- Brown, P., & Rice, J. (2013). Ready-to-wear apparel analysis (4th ed.). London: Pearson
- Dobilaite, V., & Juciene, M. (2006). The influence of mechanical properties of sewing threads on seam pucker. International Journal of Clothing Science and Technology, 18(5), 335-345. doi:10.1108/09556220610685276
- Dobilaite, V., & Juciene, M. (2007). Influence of sewing machine parameters on seam pucker. Tekstil, 56(5), 286-292.
- Hati, S., & Das, B. R. (2011). Seam pucker in apparels: A critical review of evaluation methods. Asian Journal of Textile, 1(2), 60-73. doi:10.3923/ajt.2011.60.73
- Jung, I., & Lee, S. (2018a). Tensile and electrical property of stainless steel conductive yarn under various sewing methods. Textile Science and Engineering, 55(3), 202-210. doi:10.12772/TSE.2018.55.202
- Jung, I., & Lee, S. (2018b). Durability evaluation of stainless steel conductive yarn under various sewing method by repeated strain and abrasion test. Journal of the Korean Society of Clothing and Textiles, 42(3), 474-485. doi:10.5850/JKSCT.2018.42.3.474
- Kim, H.-A., & Kim, S.-J. (2011). Seam pucker and formability of the worsted fabrics. Fibers and Polymers, 12(8), 1099-1105. doi:10.1007/s12221-011-1099-8
- Lee, E., & Kim, J. (2014). A study on practical function of neoprene fabric design in wearable device for golf posture training: Focus on assistance band with Arduino/flex sensor. Journal of Fashion Business, 18(4), 1-14. doi:10.12940/jfb.2014.18.4.1
- Mousazadegan, F., Saharkhiz, S., & Latifi, M. (2012). Prediction of tension seam pucker formation by finite-element model. International Journal of Clothing Science and Technology, 24(2/3), 129-140. doi:10.1108/09556221211205577
- Ryu, J.-W., Jee, Y.-J., Kim, H.-J., & Yoon, N.-S. (2011). Basic study of weaving structure and durability for fabric-type ECG sensor design. Textile Coloration and Finishing, 23(3), 219-226. doi:10.5764/TCF.2011.23.3.219
- Uh, M.-K. (2013). Seam strength depending on the change of cutting direction of fine cotton fabrics. Journal of the Korea Fashion & Costume Design Association, 15(3), 33-40.
- Uh, M.-K., & Park, M.-J. (2005). A study on the seam strength and resistance to slippage of yarns of lining fabrics. Journal of the Korean Society for Clothing Industry, 7(4), 433-438.