Moving mode shape function approach for spinning disk and asymmetric disc brake squeal

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초록

The solution approach of an asymmetric spinning disk under stationary friction loads requires the mode shape function fixed in the disk in the assumed mode method when the equations of motion is described in the space-fixed frame. This model description will be termed the 'moving mode shape function approach' and it allows us to formulate the stationary contact load problem in both the axisymmetric and asymmetric disk cases. Numerical results show that the eigenvalues of the time-periodic axisymmetric disk system are time-invariant. When the axisymmetry of the disk is broken, the positive real parts of the eigenvalues highly vary with the rotation of the disk in the slow speeds in such application as disc brake squeal. By using the Floquet stability analysis, it is also shown that breaking the axisymmetry of the disc alters the stability boundaries of the system. (C) 2018 Elsevier Ltd. All rights reserved.

키워드

Spinning diskBrake squealMoving mode shape functionAsymmetric discFloquet theoryTRANSVERSE VIBRATIONSTATIONARYSTABILITY
제목
Moving mode shape function approach for spinning disk and asymmetric disc brake squeal
저자
Kang, Jaeyoung
DOI
10.1016/j.jsv.2018.03.016
발행일
2018-06-23
유형
Article
저널명
Journal of Sound and Vibration
424
페이지
48 ~ 63