주파수 응답해석을 이용한 자동차용 에어컨 라인 어셈블리의 진동전달 특성에 관한 연구

A Study on the Vibration Transmission Property of Automotive Air Conditioning Assembly by Frequency Response Analysis

  • 발행 : 2013.06.30

초록

An automotive air conditioning assembly consists of a condenser, a compressor and an evaporator. These major components are connected with rubber hoses and aluminum pipes. Once mounted on the automotive air conditioning assembly, it is exposed to a serious vibration environment for a long time. In some cases, there are vibration cracking on the assembly. In order to solve this vibration problem, several real vibration tests are performed on the assembly of which the lay-out was optimized, in spite of sample production cost and making time. In this study, a frequency response analysis, which is a kind of finite element method of the vibration, was performed to know the characteristic of the vibration transmission on the assembly lay-out. The analysis result indicated the damping performance, which is satisfied with the vibration standard of car maker, in rubber hoses and the whole assembly.

키워드

참고문헌

  1. Lee, C. W., Jang, S. C. and Lee, Y. W., "CAE Analysis of Automobile Type Air Conditioner Tube Connecter," Proc. of the KSAE, pp. 33-37, 2010.
  2. Duffner, D. H., "Air conditioner failure investigation-intergranular cracking in a pure copper condenser tube," Jour. of Failure Analysis and Prevention, Vol, 5, Issue, 1. pp. 79-85, 2005.
  3. Li, S. Y., Guo, J., Zhang, X. W., and Tang, W. Y., "Optimization for Pipeline System of Air-Conditioner Base On Finite Element Simulation," Appl. Mech. Mater., Vol. 121-126, pp. 2115-2155, 2012.
  4. Wijaya, C., Yoon, M. C., and Kim, B. T., "Numerical Investigation on The Dynamic Characteristics of an Automotive A/C Hose," Int. Jour. Auto. Tech., Vol. 12, No. 3, pp. 433-440, 2012.
  5. Cho, J. U., Han, M. S., "Structural Analysis on Tension Bearing of Automotive Engine," Jour. Korean Soc. Manuf. Proc. Eng., Vol. 11, No. 5, pp. 21-28, 2012
  6. Berger, E. H., Royster, L. H., Royster, J. D., Driscoll, D. P. and Layne, M., "The Noise Manual," AIHA, pp. 38-39, 2003.