공압 제진 시스템의 해석과 설계: I. 모델링과 전달율 계산 알고리즘

Analysis and Design of a Pneumatic Vibration Isolation System: Part I. Modeling and Algorithm for Transmissibility Calculation

  • 문준희 (서울대학교 마이크로 열 시스템 연구센터) ;
  • 박희재 (서울대학교 기계항공공학부)
  • 발행 : 2004.10.01

초록

This paper is the first of two companion papers concerning the analysis and design of a pneumatic vibration isolation system. The design optimization of the pneumatic vibration isolation system is required for the reduction of cost, endeavor and time, and it needs modeling and calculation algorithm. The nonlinear models are devised from the fluid mechanical expression for components of the system and the calculation algorithm is derived from the mathematical relationship between the models. It is shown that the orifice makes the nonlinear property of the transmissibility curve that the resonant frequency changes by the amplitude of excited vibration. Linearization of the nonlinear models is tried to reduce elapsed time and truncation error accumulation and to enable the transmissibility calculation of the system with multi damping chambers. The equivalent mechanical models generated by linearization clarify the function of each component of the system and lead to the linearized transfer function that can give forth to the transmissibility exactly close to that of nonlinear models. The modified successive under-relaxation method is developed to calculate the linearized transfer function.

키워드

참고문헌

  1. Gas Encyclopedia, L'air Liquide, Elsevier, Netherland, pp.6,67-68, 1976
  2. Erin, C. and Wilson, B., 'An improved model of a pneumatic vibration isolator: theory and experiment,' Journal of Sound and Vibration, Vol.218, No.1, pp.81-101, 1998 https://doi.org/10.1006/jsvi.1998.1777
  3. Washio, S., Konishi, T., Nishii, K., Tanaka, A., 'Research on Wave Phenomena in Hydralic Lines (9th Report, Experimental Investigation of Oscillatory Orifice Flows),' Bulletin of the JSME, Vol. 25, No. 210, pp.1906-1913, 1982 https://doi.org/10.1299/jsme1958.25.1906
  4. Doebelin, E., Measurement Systems : Application and Design, 4th Ed., McGraw-Hill, pp.566, 1990
  5. Popov, G. and Sankar, S., 'Modelling and Analysis of Non-linear Orifice Type Damping in Vibration Isolators,' J. Sound and Vibration, Vol.183, No.5, pp.751-764, 1995 https://doi.org/10.1006/jsvi.1995.0284
  6. Tse, Francis S., Mechanical Vibration, 2nd Ed., Allyn and Bacon, 1978
  7. Firestone Airmount Isolator Catalog, 1996
  8. Burden, Richard L., Numerical Analysis, 6th Ed, ITP, 1997