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Fibers and polymers v.11 no.3, 2010년, pp.516 - 520   SCIE 피인용횟수: 1
본 등재정보는 저널의 등재정보를 참고하여 보여주는 베타서비스로 정확한 논문의 등재여부는 등재기관에 확인하시기 바랍니다.

Integrated Graphical Presentation of Fabric Sound and Mechanical Properties

Cho, Gil-Soo    (Department of Clothing and Textiles, Yonsei University   ); Lim, Nam-Kyoo    (Human Ecology Research Institute, Yonsei University   ); Yang, Yoon-Jung    (Department of Clothing and Textiles, Yonsei University  );
  • 초록

    This paper proposes a new model capable of predicting frictional sounds of woven fabrics, knitted fabrics and vapor permeable water repellent fabrics by measuring the relationships between their sound parameters and mechanical properties. We conducted an experiment in which fabric frictional sounds were recorded and analyzed. A total of 217 specimens consisting of woven fabrics, knitted fabrics, and vapor permeable water repellent fabrics were sampled, and their frictional sounds recorded using a Sound Quality System. Sound parameters of fabrics including SPL (Sound Pressure Level), Loudness (Z), Sharpness (Z), and mechanical properties by Kawabata Evaluation System (KES) were obtained. The relation between sound parameters and mechanical properties were analyzed by multiple regressions. Specimens were divided into 3 clusters using mechanical properties selected by stepwise selection method, and the mechanical properties of each cluster were investigated. Specimens were classified into clusters having high level of SPL and Loudness (Z), high level of Sharpness (Z), and middle level of Loudness (Z) and Sharpness (Z), which means that sound parameters are well verified by mechanical properties of the specimens. Mechanical properties relevant to each sound parameter were mapped on two dimensional spaces by integrated graphical presentation. SPL showed high positive correlation coefficients with MMD and LT. Loudness (Z) was well predicted by 2HG5 and Sharpness (Z) by MIU.


  • 주제어

    Cluster analysis .   Fabric sound .   Mechanical properties of fabrics .   Multi-dimensional scaling .   Factor analysis.  

  • 참고문헌 (15)

    1. C. Kim and G. Cho, Korean J. Sci. Emotion and Sensibility, 9, 133 (2006). 
    2. J. Cho, E. Yi, and G. Cho, Text. Res. J., 71, 1068 (2001). 
    3. K. Choi, C. Kim, and G. Cho, Korean J. Sci. Emotion and Sensibility, 5, 23 (2002). 
    4. J. Cho and G. Cho, Text. Res. J., 77, 29 (2007). 
    5. S. Cho, E. Yi, and G. Cho, Fiber. Polym., 7, 450 (2006). 
    6. K. Slater, J. Text. Inst., 88, 79 (1997). 
    7. E. Yi, C. Kim, and G. Cho, Text. Sci. Eng., 44, 172 (2007). 
    8. C. Kim, Y. Yang, and G. Cho, Fiber. Polym., 9, 639 (2008). 
    9. C. Kim, Y. Yang, J. Park, H. You, and G. Cho, "Proceedings of the 2nd International Conference on Applied Human Factors and Ergonomics", pp.14-17, 2008. 
    10. E. Yi and G. Cho, Text. Res. J., 70, 828 (2000). 
    11. K. H. E. Kroemer, H. B. Kroemer, and K. E. Kroemer-Elbert, "Ergonomics: How to Design for Ease and Efficiency", Prentice Hall, NJ, USA, 1994. 
    12. E. Zwicker and H. Fastl, "Psychoacoustics: Facts and Models", 2nd Updated Edition, Springer-Verlag, Berlin, Germany, 1999. 
    13. S. Kawabata, "The Standardization and Analysis of Hand Evaluation", The Textile Machinery Society of Japan, Osaka, Tiger Printing Co. Ltd., Japan, 1980. 
    14. M. Matsudaira, S. Kawabata, and M. Niwa, J. Text. Machinery Soc. Japan, 30, 53 (1985). 
    15. G. Cho and E. Yi, J. Korean Fiber Soc., 36, 554 (1999). 
  • 이 논문을 인용한 문헌 (1)

    1. 2012. "" Fibers and polymers, 13(3): 403~410     

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