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Finite Element Analysis of Statics and Natural Characteristic of Vibrating Screen

진동스크린의 정적 및 고유특성 유한요소해석

  • Hong, Seok-Beom (Daejin university, Dept. of Mechanical Design Engineering) ;
  • Kwon, Hyuk-Hong (Daejin university, Dept. of Computer Aided Mechanical Design Engineering)
  • Received : 2013.07.27
  • Accepted : 2013.09.25
  • Published : 2013.10.15

Abstract

A vibrating screen with multiple decks is widely employed for the process separation of many valuable export commodities. In this study, the inclination angle of the deck of the vibrating screen and the direction angle of the screen's vibration under single particle kinematics were predicted. A finite element model of the vibrating screen was established by parameterization modeling. Through modal analysis and static analysis of the model, the natural frequency, natural vibration mode, and stress distribution of the structure were determined, based on which the dynamics and design optimization of the vibrating screen could be achieved. Future plans also reflect this by conducting detailed design of vibrating screens for the manufacturing plans of vibrating screen machine.

Keywords

References

  1. Han, B. F., AN, X. W., XU, W. B., 2008, Finite Element Analysis of Statics and Natural Properties of Bananatype Vibrating Screen, University & Mining machinery industry co., Shenyang Ligong University, Republic of China.
  2. He, X. M., Liu, C. S., 2009, Dynamics and screening characteristics of a vibrating screen with variable elliptical trace, Journal of China University of Mining Science & Technology 19 0508-0513.
  3. Fernandez, J. W., Cleary, P. W., Sinnott, M. D., Morrison, R. D., 2011, Using SPH one-way coupled to DEM to model wet industrial banana screens, Minerals Engineering 24 741-753. https://doi.org/10.1016/j.mineng.2011.01.004
  4. Delaney, G. W., Cleary, P. W., Marko Hilden., Morrison, R. D., 2012, Testing the validity of the spherical DEM model in simulating real granular Screening processes, Chemical Engineering Science 68 215-226. https://doi.org/10.1016/j.ces.2011.09.029
  5. Swanson, J., 2012, Ansys 14.0, Ansys Inc, USA.
  6. TaeSung SNE FEA Division, 2012, Ansys Workbench 14.0 Sigma Press, Seoul, South Korea.
  7. Cho, J. U., Kwon, O. B., 2010, Structural Strength Analysis of Automotive Suspension, Journal of the KSMTE, 19:1 89-93.
  8. Cho, J. U., Han, M. S., 2011, Strength and Fatigue Analysis of Universal joint, Journal of the KSMTE, 20:4 427-433.
  9. Han, M. S., Cho, J. U., 2012, Evaluation on Structural Stability According to Steering Wheel Type, Journal of the KSMTE, 21:5 733-740. https://doi.org/10.7735/ksmte.2012.21.5.733
  10. Han, M. S., Cho, J. U., 2013, Durability Analysis by Shape of Brake Disk Structure, Journal of the KSMTE, 22:1 36-44. https://doi.org/10.7735/ksmte.2013.22.1.36
  11. Cho, J. U., Han, M. S., 2013, Structure Structural Durability Analysis on Bike Carrier Basket, Journal of the KSMTE, 22:1 70-76. https://doi.org/10.7735/ksmte.2013.22.1.70
  12. Cho, H. Y., Kwon, H. H., Lee, B. K., 2001, Finite Element Analysis on Welded Part of Control Link for Automobile, Transactions of the KSMTE, 10:6 63-70.
  13. Cho, J. U., Min, B. S., Han, M. S., 2009, Fatigue and Vibration Analysis on Main Parts of Engine, Journal of the KSMTE, 22:1 36-44.
  14. Kwon, H. H., Lee, J. R., 2001, Structure Analysis of the Tapping M/C for Hi-speed Machining, Journal of KIPS,Daejin University, Republic of Korea.