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Tytuł artykułu

Development of Knitted Materials Selection for Compression Underwear

Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The presented research deals with the development of comfortable male underwear taking into account the development of pattern block methods and the analysis of the relationships existing between the compression pressure, the knitted materials properties, and some push-up effects. The main aim of this study is to achieve the technical selection of the materials based on KES-FB evaluations. The ease value has been used as the main index to connect the structural design of underwear, on one hand, and the body sizes, on other hand. A “bodyshell” system for testing the soft tissue of male bodies by FlexiForce sensor has been implemented. The pressures under the shells at six different places on the male body with ease changing have been tested. The collected results including maximum-possible pressure and material tensile indexes measured thanks to KES-FB have been analyzed in order to find the most relevant indexes of the material properties. A mathematical equations based on relationships combining theoretical model with practical application have been established. These equations will be helpful for the consumers and designers to select “the suitable knitting materials for male underwear” and they can be used too in the perspective of parameterization in CAD, in order to improve product developments efficiency.
Rocznik
Strony
177--187
Opis fizyczny
Bibliogr. 26 poz.
Twórcy
autor
  • Wuhan Textile University, Institute of Clothing, Minzu Av., Wuhan, Hubei, P.R.China
  • Ivanovo State Polytechnic University, Textile Institute, 21, Sheremetev Av., Ivanovo, Russian Federation
  • University of Haute Alsace, ENSISA, 11, rue Alfred Werner, Mulhouse, France
Bibliografia
  • [1] Yi, L. (2002). Clothing comfort and product development. Beijing: China textile press.
  • [2] Sybilska, W., Napieralska, L. & Mielicka, E. (2010). Analysis of body measurements using a 3D contactless scanning method. AUTEX Research Journal, 10(3), 77-79.
  • [3] Shijia, Y. (2008). Study of pressure comfort and size optimization on female seamless underwear. Zhejiang Polytechnic University, December, 39-45. PhD.
  • [4] Minxia, L., Yueping, W. & Jinzi, W. (2009). Objective measurement and analysis of the female underwear pressure. Knitting Industry, 1(1), 42-45.
  • [5] Jinzi, W. (2005). Study of pressure comfort on Young women’s underwear. Beijing Institute of Fashion Technology, March, 36-57. PhD.
  • [6] Zimin, J. & Yuxiu, Y. (2008). A Study on the Dynamic Pressure Comfort of Tight Seamless Sportswear. Journal of Fiber Bioengineering and Informatics, 1(3), 217-224.
  • [7] Zimin, J. & Xiaoju, L. (2009). Influence of seamless underwear on static pressure comfort of men’s under body. Journal of Textile Research, 30(6), 99-103.
  • [8] Zimin, J. & Xiaoju, L. (2010). Pressure distribution and comfortmpressure range of men’s seamless underwear. Journal of Textile Research, 31(10), 104-109.
  • [9] Yaping, L. & Yuxiu, Y. (2012). Research of the Relationship between Stress Comfort and Shaping Figure Effect of Seamless Shape-wear Lingerie. Journal of Zhejiang Sci- Tech University, 29(1), 48-52.
  • [10] Lei, G. (2012). Underwear construction comfort research based on male physical characteristic. Shanghai University of Engineering Science, December, 69-77. PhD.
  • [11] Toshiyuki, T. (2013). Influence of the Compression Position and the Strength on the Wearing Comfort of High Socks. Research Report of Nara Prefecture Industry Promotion Center, 39, 14.
  • [12] Kobayashi,T. & Oi, S. (2011). Analysis of Clothing Pressure on the Human Body. SIMULIA Customer Conference, March, 1-15.
  • [13] Tamura, T. (2010). A basic study for design functional sportswear: effect of clothing pressure on the human body. Bunka women’s University, 94-107.
  • [14] Sato, M. & Kuwabara, R. (2011). Effects of clothing pressure around the trunk on sweating in the face. The Fourth International Conference on Human-Environment System, October, 125-130.
  • [15] Flerova L.N. & Surikova, G.I. (1972). Materials science.-M., Light Industry, 182.
  • [16] Zhe, C. (2013). Art and constructive database of men’s underwear design. Sewing Industry, 6, 26-29.
  • [17] http://english.keskato.co.jp/products
  • [18] Xiangling, M. & Weiyuan, Z. (2006). Progress of study on pressure comfort of clothing. Journal of Textile Research, (27)7, 109-112.
  • [19] Ruil, D. & Dongsheng, C. (2010). Advances and research on distribution and prediction of clothing pressure. Journal of Textile Research, (31)4, 139-144.
  • [20] Wenxia, Y. & Gehui W. (2012). Effect of clothing pressure on human body and testing method. Journal of Xi‘an Polytechnic University, 26(4), 452-456.
  • [21] Tekscan (2009). FlexiForce® Sensors User Manual. Boston.
  • [22] Mengna, G. (2013). Pressure and comfort perception in the system ‘female body-dress’. AUTEX Research Journal, 13(3), 71-78.
  • [23] Behera, B.K. (2007). Comfort and handle behavior of linenblended fabrics. AUTEX Research Journal, 7(1), 33-47.
  • [24] Gurumurthy, B.R. (2007). Prediction of fabric compressive properties using artificial neural networks. AUTEX Research Journal, 7(1), 19-31.
  • [25] Murthyguru. (2005). Novel approach to study compression properties in textiles. AUTEX Research Journal, 5(4), 176-193.
  • [26] Kirstein, T., Krzywinski, S. & Rödel, H. (1999). Pattern construction for close-fitting garments made of knitted fabrics. Frankfurt: Melliand English, 80(3), E46-E48.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-8c36c3a6-2620-4214-b4d9-5b4b5e10c13a
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