4.4 Article

A study of friction microslip modeling for dynamic analysis of bladed discs with root joints

出版社

SAGE PUBLICATIONS LTD
DOI: 10.1177/0954406218792027

关键词

Blade root joints; microslip; macroslip; friction; vibrations; contact interface; hysteresis

资金

  1. National Natural Science Foundation of China [11372128]
  2. NSAF [U1730129]
  3. Natural Science Foundation of Jiangsu Province [BK20161485]
  4. Jiangsu Province Key Laboratory of Aerospace Power System [NJ20160019]
  5. Key Laboratory of Aero-engine Thermal Environment and Structure, Ministry of Industry and Information Technology, The International Joint Laboratory on Structure Materials and Dynamics at NUAA

向作者/读者索取更多资源

In machinery structures with joints, the contact pressures at contact interfaces are usually high enough to ensure that the contacting components stay joined and the gross slip does not occur. Nevertheless, the small relative slip over parts of the contact interface, i.e. the microslip, contributes significantly to the vibration damping. In the high-fidelity analysis of practical bladed discs, the macroslip model cannot provide sufficient accuracy for the predictive analysis of the properties of the friction damping in the contact interfaces. In this article, numerical studies of microslip damping effects is performed using 2D and 3D models of blade root joints. Analysis of hysteresis loops is performed to assess the influence of modeling parameters: choice of reference points, mesh configurations, and other physical parameters. The impact of the physical parameters, such as the contact geometry, friction coefficient, contact stiffness and tangential and normal loading, on the friction damping is numerically examined. The numerical results demonstrate the possibilities of microslip prediction using finite element modeling and show the microslip friction damping effects using simplified and realistic blade root models.

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