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플로워 진동 저감을 위한 제진재 해석 프로세스 연구

Study on the Analysis Process of the Damping Material for Reduced Floor Vibration

  • 투고 : 2011.01.05
  • 심사 : 2011.03.02
  • 발행 : 2011.04.20

초록

This paper describes the design process of floor damping material optimization to reduce structure borne noise. This process uses finite element analysis(FEA) along with experimental techniques to complement each other. The objective of this approach was to develop an optimized damping material application layout and thickness at the initial design stage. The first step is to find the sensitivity areas of vehicle body without damping material applied using FEA. In order to determine the high vibration areas of the floor panel, the velocity was measured using a scanning laser vibrometer from 20 Hz to 300 Hz. To excite the floor panel vibration, shaker was placed at the front suspension attachment point. The second step is the optimization process to determine the light weight solution of damping material. The design guideline of damping material was suggested that the lightweight solution was verified using test result of road noise. Design engineer could efficiently decide the design variable of damping material using parameter analysis results in early design stage.

키워드

참고문헌

  1. Bob, B. and Barry, W., 2003, Automotive Noise and Vibration Control Practices in the New Millennium, SAE 2003-01-1589.
  2. Subramanian, S., Surampudi, R., Thomson, K. R. and Vallurupalli, S., 2003, Optimization of Damping Treatment for Structure Borne Noise Reduction, SAE 2003-01-1592.
  3. Siavoshani, S., Tudor, J. and Barpanda, D., 2007, Vehicle Body Optimization of Structural Noise and Vibration Using a Hybrid Technique, SAE 2007-01-2327.
  4. Kim, K. C. and Kim, C. M., 2007, The Process of Designing Body Structures for the Reduction of Rear Seat Noise in Passenger Car, International Journal of Automotive Technology, February, Vol. 8, No. 1, pp. 67-73.
  5. Kim, J.-B., Ryn, K.-H. and Park, S.-K., 2006, Application of Strain Energy for Determining the Location of Damping Material, Transactions of the Korean Society for Noise and Vibration Engineering, Vol. 18, No. 11, pp. 1199-1205. https://doi.org/10.5050/KSNVN.2008.18.11.1199