자동차 루프의 진동제어를 위한 제진재의 위치 및 두께에 대한 실험적 연구

An Experimental Study on Placements and Thickness of Damping Material for Vibration Control of Automotive Roof

  • 이정균 (국민대학교 자동차공학전문대학원생) ;
  • 김찬묵 (국민대학교 자동차공학전문대학원) ;
  • 사종성 (서일대학 자동차과)
  • Lee, Jeong-Kyun (Student, Graduate School of Automotive Engineering, Kookmin University) ;
  • Kim, Chan-Mook (Graduate School of Automotive Engineering, Kookmin University) ;
  • Sa, Jong-Sung (Dept. of Automotive Engineering Seoil College)
  • 발행 : 2005.11.01

초록

This paper presents an experimental study on vibration characteristics of an automotive roof with damping material. The goal of the study is to extract modal parameters(natural frequency, loss factor, and mode shape) of automotive roof with damping materials treatment. To determine the effective positions and thickness of the damping material on a roof, vibration tests have been carried out for six cases; an aluminum plate with damping material on maximum strain energy positions, and an aluminum plate with damping material on nodal lines. From the result of aluminum plate, it is found that the damping material should be placed on the location with maximum strain energy part. For the automotive roof, patches of constrained damping material, which has two different density, have been attached to the positions of the maximum strain energy with four kinds of thicknesses. This paper shows that the proper positioning of the damping material is very important and the effective thickness is about twice that of the roof panel.

키워드

참고문헌

  1. B. Baker and B. Wyerman, 'Automotive Noise and Vibration Control Practices in the New Millennium,' SAE 2003-01-1589, 2003
  2. Y. K. Kang, 'Vibration Characteristics of Laminated Composite Beams with Passive Constrained Layer Damping,' Transactions of KSNVE, Vol.12, No.12, pp.964-969, 2002 https://doi.org/10.5050/KSNVN.2002.12.12.964
  3. B. C. Nakra, 'Vibration Control in Machines and Structures using Viscoelastic Damping,' Journal of Sound and Vibration, Vol.211, No.3, pp.449-465, 1998 https://doi.org/10.1006/jsvi.1997.1317
  4. D. H. Lee and W. S. Hwang, 'Length Optimization for Unconstrained Visco-elastic Damping Layer of Beams,' Proceedings of KSNVE Annual Autumn Conference, pp.665-671, 2003
  5. W. J. Hwang and J. M. Park, 'Vibration Damping Analysis of Viscoelastic and ViscoelasticaIIy Damped Structures,' Transactions of KSNVE, VoI.10, No.1, pp.64-73, 2000
  6. H. He, Q. Zhang and R. J. Fridrich, 'Vehicle Panel Vibro-Acoustic Behavior Damping,' SAE 2003 01-1406, 2003
  7. I. Y. Shen and Y. H. Perter, 'Thickness Deformation of Constrained Layer Damping : An Experimental and Theoretical Evaluation,' Journal of Vibration and Acoustics, VoI.123, pp.213-221, 2001 https://doi.org/10.1115/1.1340625
  8. Y. K. Kang and C. M. Kim, 'Placement of Passive Constrained Layer Damping for Vibration Control of Smart Plate,' Proceeding of KAMES 2002 Joint Symposium, KSNVE 02F003, 2002
  9. A. D. Nashif, D. I. G. Jones and J. P. Henderson, Vibration Damping, John Wiley & Sons, 1985
  10. J. K. Lee, C. M. Kim, Y. K. Kang, J. S. SA and S. K. Hong, 'An Experimental Study on Vibration Characteristics of Automotive Roof with Passive Constrained Layer Damping,' Proceedings of KSNVE Annual Spring Conference, pp.613-617, 2004
  11. S. W. Kang and J. M. Lee, 'Noise Reduction of an Enclosed Cavity by Means of Air-gap Systems,' Int. J. Automotive Technology, Vol.5, No.3, pp.209-213, 2004
  12. K. H. Ko, S. J. Heo and H. Kook, 'Evaluation of Road-induced Noise of a Vehicle Using Experimental Approach,' Int. J. Automotive Technology, Vol.4, No.1, pp.21-30, 2003