방적기계용 스핀들 인서트의 최적설계 관한 연구

The Study for Optimal Design of Spindle Insert used in Cotton Spinning Machine

  • 이동우 (동아대학교 기계공학과) ;
  • 허선철 (경상대학교 정밀기계공학과) ;
  • 이상석 (부산정보대학 자동차계열) ;
  • 심재준 (부산정보대학 자동차계열)
  • Lee, Dong-Woo (Department of Mechanical Engineering, Dong-A Univ.) ;
  • Huh, Sun-Chul (Department of Precision Mechanical Engineering, Gyeongsang National Univ.) ;
  • Lee, Sang-Suk (School of Automobile, Busan Info-Tech College) ;
  • Shim, Jae-Joon (School of Automobile, Busan Info-Tech College)
  • 투고 : 2009.11.12
  • 심사 : 2010.01.07
  • 발행 : 2010.04.01

초록

Textile machinery affects various industry, such as sport leisure industry, metal and chemistry material, electric electron, mechanical energy, packing and printing industry. In case of design of textile machine, the very important fact is absorbing the minute vibration induced by spinning thread and insert which is the part of spindle plays a role of reduction of impact caused by oscillation of thread bobbin. Therefore, Optimal design was executed by design of experiments and kriging optimal design methods to prevent fracture of spindle insert under the fatigue condition and deduced the best value of design parameter to improve the stability of the products. The highest sensitivity is showed at the design parameter A and D. As the spiral number of insert is increase, tension force applied its edge is distributed at whole model and the stress concentration is reduced.

키워드

참고문헌

  1. Kim, J. S., Seong, B. J. and Jo, S. M., "The Present Status and Prospects of Textile Machinery Industry," Machine and Materials, Vol. 13, No. 3, pp. 87-101, 2001.
  2. Chun, D. H., "The Present Status and Technology System," Journal of the KSPE, Vol. 19, No. 9, pp. 7-18, 2002.
  3. Kim, J. S., Kim, N. P. and Seo, S. I., "Experimental Study on the Bogie Frame of Tilting Railway Vehicle for Assessment of Structural Safety," Journal of the KSPE, Vol. 23, No. 1, pp. 166-173, 2006.
  4. Kim, J. S. and Kim, N. P., "Safety Evaluation of Bogie Frame for Tilting Railway Vehicles by Fatigue and Nondestructive Tests," Journal of KSR, Vol. 8, No. 5, pp. 419-424, 2005.
  5. Tae Sung S&E Inc., "ANSYS Workbench Optimization Training Manual," 2009.
  6. Choe, J. G., "Spatial Information Model," Goomibook, pp. 127-128, 2004.
  7. Song, B. C., Park, H. S., Kwon, Y. M., Kim, S. H., Park, Y. C. and Lee, K. H., "Structural Design of an Upper Control Arm, Considering Static Strength," Transactions of KSAE, Vol. 17, No. 1, pp. 190-196, 2009.
  8. Lee, K. H. and Kang, D. H., "Structural Optimization of an Automotive Door Using the Kriging Interpolation Method," Proceedings of the Institution of Mechanical Engineer Part D: Journal of Automobile Engineering, Vol. 221, No. 12, pp. 1524-1534, 2007.