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A Basic Experimental Study on the Squeak Noise Using the Pin-on-disk

Pin-on-disk를 이용한 기초 마찰소음 실험 연구

  • 남재현 (공주대학교 기계자동차공학부) ;
  • 강재영 (공주대학교 기계자동차공학부)
  • Received : 2012.05.11
  • Accepted : 2012.07.12
  • Published : 2012.08.20

Abstract

Squeak noise is studied by using the pin-on-disk system with aluminum pin and steel disk. Noise induced by friction is measured with respect to the normal loads and sliding speeds. The negative slope of friction-velocity curve is seen when the squeak noise occurs. It is found that the normal load influences on the sound level of squeak noise. From the hammering test, the major frequency of the squeak noise is shown to correspond to one of system modes, which implies that squeak phenomenon arises from the unstable system modes. The result of FE analysis shows that the major squeak mode is the bending mode of the pin.

Keywords

References

  1. Jibiki, T., Shima, M., Akita, H. and Tamura, M., 2001, A Basic Study of Friction Noise Caused by Fretting, Wear, Vol. 251, pp. 1492-1503. https://doi.org/10.1016/S0043-1648(01)00792-X
  2. Chen, G., Zhou, Z., Philippe, K. and Leo, V., 2001, Effect of Surface Topography on Formation of Squeal under Reciprocating Sliding, Wear, Vol. 253, pp. 411-423.
  3. Kang, J., 2010, Tilting Effect of Automotive Seat System on Squeak Noise, Journal of Sound and Vibration, Vol. 20, pp. 577-582.
  4. Kong, H., Yoon, E., Kwan, O. and Oh, J., 1995, Sliding Frictional Characteristics with the Change of Dynamic Parameter in the Friction Measurement, Journal of KSTLE, Vol. 11, pp. 44-55.
  5. Kang, J., Krousgrill, C. M. and Sadeghi, F., 2008, Dynamic Instability of a Thin Circular Plate with Friction Interface and Its Application to Disc Brake Squeal, Journal of Sound and Vibration, Vol. 316, pp. 164-179. https://doi.org/10.1016/j.jsv.2008.02.041
  6. Kang, J., Krousgrill, C. M. and Sadeghi, F., 2009, Wave Pattern Motion and Stick-slip Limit Cycle Oscillation of a Disc Brake, Journal of Sound and Vibration, Vol. 325, pp. 552-564. https://doi.org/10.1016/j.jsv.2009.03.030
  7. Choi, D. and Lee, S., 2005, Experimental Study on the Squeak Noise Characterized by the Plastic Parts Material in Automobile, Proceedings of KSAE, KSAE05-F0315, pp. 1986-1991.
  8. Suh, N. and Sin, H., 1981, The Genesis of Friction, Wear, Vol. 66, pp. 91-114.
  9. Kovmopolous, K., Saka, N. and Suh, N., 1986, Plowing Friction in Dry and Lubricated Metal Sliding, Journal of Tribology, Vol. 108, pp. 301-313. https://doi.org/10.1115/1.3261181
  10. Gao, C. and Kuhlmann-Wilsdorf, D., 1990, On Stick-slip and Velocity Dependence of Friction at Low Speeds, Journal of Tribology, Vol. 112, pp. 354-360. https://doi.org/10.1115/1.2920264
  11. Meziane, A., Baillet, B. and Laulagnet, B., 2010, Experimental and Numerical Investigation of Friction-induced Vibration of a Beam-on-beam in Contact with Friction, Journal of Applied Acoustics, Vol. 71, pp. 843-853. https://doi.org/10.1016/j.apacoust.2010.04.012

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