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Structure Analysis and Torque Reduction Design of Industrial Ball Valve

산업용 볼밸브의 구조 해석 및 토크 저감 설계

  • Ha, Sun-Ho (School of Mechanical Engineering, Changwon National University) ;
  • Kim, Sang-Jin (School of Mechanical Engineering, Changwon National University) ;
  • Song, Jung-Il (School of Mechanical Engineering, Changwon National University)
  • Received : 2014.07.17
  • Accepted : 2014.12.30
  • Published : 2014.12.31

Abstract

Ball valves are used as a key element in the process industries. The industrial development of valves has increased steadily, but continued improvement requires high design reliability and long service life. Currently, the development of high performance valves is not easy because of the lack of relevant technology in Korea. Valves are being imported at a level of up to 58 percent of the domestic market, which represents a value of almost 7 million US dollars. Therefore, in this work, the improvement of the design and performance of industrial valves has been studied in an attempt to achieve valves that will have longer service life and better output during operation. The structural stability was evaluated using the ANSYS FSI (Fluid-Structural Interaction) module. Moreover, to obtain maximum product reliability, torque analysis simulation was performed to compare and experimental results. The simulation results were used to predict the change in torque by changes in shape, thereby reducing the time and cost of manufacturing a number of prototypes for experimental validation.

Keywords

References

  1. Bruckent, F. W., "Using Ball Valves in Control Applications," Hydrocarbon Processing, 2002
  2. Ryu, C. U., Park, J. H., Park, H. W., Lim, J. I. and Kim, J. R., "The Evaluation on Structural Safety of Ball Valve use in Cryogenic Environment," 2008 spring conference Proceeding of the KSME, pp. 414-419, 2008
  3. H. Y. Song, K. A. Park, S. Ko., "Performance Analysis of Emergency Shut-Off Safety Valve," Proceedings of KFMA 2001 Conference, pp. 413-418, 2001
  4. Kazuhiko Ogawa, Takeyoshi Kimura, "Hydrodyna-mic characteristics of a butterfly valve-Prediction of torque characteristics", ISA Transactions 34, pp. 327-333, 1995 https://doi.org/10.1016/0019-0578(95)00023-2
  5. H. M. Chae, C. N. Kim,, "A numerical study with FSI mode on the characteristics of pressure fluctuation and discharge valve motion in rotary compressors with single and dual muffler", International Journal of Precision Engineering and Manufacturing, Volume 11, Issue 4, pp. 589-596, 2010 https://doi.org/10.1007/s12541-010-0068-2
  6. David Burris. and Brian Holtkanmp,, "Finite element analysis and experiments of metal/metal wear in oscillatory contacts," Wear, No. 258, pp.1787-1793, 2005

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