Vibration Analysis of an Cantilever Beam in Partially Liquid-Filled Cylindrical Pipe

부분적으로 유체가 채워진 원통형 관내의 외팔보 진동해석

  • 권대규 (전북대학교 메카트로닉스연구센터) ;
  • 유계형 (전북대학교 대학원 기계공학) ;
  • 방두열 (순천제일대학 메카트로닉스학) ;
  • 이성철 (전북대학교 기계공학부)
  • Published : 2003.05.01

Abstract

This paper presents the vibration characteristics of a cantilever beam in contact with a fluid using a PZT actuator and PVDF film. dynamic behaviors of a flexible beam-water interaction system are examined. The effect of the liquid level on free vibration of the composite beam in a partially liquid-filled circular cylinder is investigated. The coupled system is subject to an undisturbed boundary condition un the fluid domain. In the vibration analysis of a wetted beam. the decoupled analyses between beam and fluid have been conventionally employed by considering first the composite beam vibration in the all and secondly Performing the correction taking account for surrounding fluid effects. That is, this investigation was to look at how natural frequencies, mode shapes. and damping are affected by liquid level variations. The signals from the sensor according to the applied input voltage are digitalized and filtered in order to obtain the dynamic characteristics of the composite beam in contact with fluid. It was found that the coupled natural frequencies decreased with the fluid level for the identical composite beam due to added mass effect. In case of the free-free boundary condition, the natural frequency gently decreased at fluid water level between 20% and 80% in the first tending mode and we found out the bends of stair shape for added mass effect of the fluid.

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