Investigation of Induced Unbalance Magnitude on Dynamic Characteristics of High-speed Turbocharger with Floating Ring Bearings

被引:7
|
作者
Guang-Fu Bin [1 ]
Yuan Huang [1 ]
Shuai-Ping Guo [1 ]
Xue-Jun Li [1 ]
Gang Wang [2 ]
机构
[1] Health Maintenance for Mechanical Equipment Key Lab of Hunan Province, Hunan University of Science and Technology
[2] Department of Mechanical and Aerospace Engineering, The University of Alabama in Huntsville
基金
中国国家自然科学基金;
关键词
High?speed TC with FRBs; Induced unbalance magnitude; Nonlinear dynamic response; Sub?synchronous vibration; Stability;
D O I
暂无
中图分类号
TH133.3 [轴承];
学科分类号
摘要
Due to operational wear and uneven carbon absorption in compressor and turbine wheels, the unbalance(me) vibration is induced and could lead to sub?synchronous vibration accidents for high?speed turbocharger(TC). There are very few research works that focus on the magnitude e ects on such induced unbalance vibration. In this paper, a finite element model(FEM) is developed to characterize a realistic automotive TC rotor with floating ring bearings(FRBs). The nonlinear dynamic responses of the TC rotor system with di erent levels of induced unbalance magni?tude in compressor and turbine wheels are calculated. From the results of waterfall and response spectral intensity plots, the bifurcation and instability phenomena depend on unbalance magnitude during the startup of TC. The sub?synchronous component 0.12× caused rotor unstable is the dominant frequency for small induced unbalance. The nonlinear e ects of induced unbalance in the turbine wheel is obvious stronger than the compressor wheel. As the unbalance magnitude increases from 0.05 gbration 1·mm to 0.2 g·mm, the vibration component changes from mainly 0.12× to synchronous vi×. When unbalance increases continuously, the rotor vibration response amplitude is rapidly growing and the 1× caused by the large unbalance excitation becomes the dominant frequency. A suitable un?balance magnitude of turbine wheel and compressor wheel for the high?speed TC rotor with FRBs is proposed: the value of induced un?balance magnitude should be kept around 0.2 g·mm.
引用
收藏
页码:99 / 109
页数:11
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