Coupled bending torsional vibrations of non-ideal energy source rotors under non-stationary operating conditions

被引:22
作者
Sghaier, Emna [1 ,2 ]
Bourdon, Adeline [2 ]
Remond, Didier [2 ]
Dion, Jean-Luc [1 ]
Peyret, Nicolas [1 ]
机构
[1] Lab QUARTZ EA 7393 SUPMECA Paris, 3 Rue Fernand Hainaut, F-93400 St Ouen, France
[2] Univ Lyon, LaMCoS, INSA Lyon, CNRS,UMR5259, F-69621 Lyon, France
关键词
Rotor dynamics; Non-stationary operating conditions; Non-ideal energy source; Gyroscopic effect; Bending-torsion coupling; NATURAL FREQUENCIES; LATERAL VIBRATIONS; BEARING SYSTEMS; CRITICAL SPEEDS; ACCELERATION; DISK; RUB;
D O I
10.1016/j.ijmecsci.2019.105155
中图分类号
TH [机械、仪表工业];
学科分类号
0802 ;
摘要
In the automotive industry, high-speed elecrical engines will be used in a very large range of speeds, leading to non-stationary operating conditions. Thus more critical speeds may be crossed a very large number of times during the whole life-time of the engine. Therefore, estimating accurately the non-stationary loads and deformations during these transient regimes is of first importance for a correct design. In this paper, we propose a novel dynamic model for unbalanced high-speed rotors with less restrictive assumptions. The finite element model accounts for flexion, torsion and traction-compression leading to six degrees of freedom on each node. The non-ideal energy source is considered and the rotor is running under non-stationary operating conditions and crossing supercritical speeds. The angular displacement is defined in such a way that it combines simultaneously the intrinsic nominal rotation and the torsional deformation. The comparison of the proposed model with other models under different assumptions on the energy source and on the bending-torsion coupling shows that our model offers more accurate prediction for both lateral and torsional vibrations when crossing critical speeds. The ability of the proposed model to account for the mutual influence between lateral and torsional behavior is highlighted and is exhibited through time-frequency analyses.
引用
收藏
页数:16
相关论文
共 40 条
[21]   On the bending coupled natural frequencies of a spinning, multispan Timoshenko shaft carrying elastic disks [J].
Jia, HS .
JOURNAL OF SOUND AND VIBRATION, 1999, 221 (04) :623-649
[22]  
JIA J-h, 2010, TURBINE TECHNOL, V1
[23]   Sommerfeld effect characterization in rotors with non-ideal drive from ideal drive response and power balance [J].
Karthikeyan, M. ;
Bisoi, Alfa ;
Samantaray, A. K. ;
Bhattacharyya, R. .
MECHANISM AND MACHINE THEORY, 2015, 91 :269-288
[24]  
Lalanne M., 1998, ROTORDYNAMICS PREDIC, V5th
[25]   Analysis of transient amplification for a torsional system passing through resonance [J].
Li, Laihang ;
Singh, Rajendra .
PROCEEDINGS OF THE INSTITUTION OF MECHANICAL ENGINEERS PART C-JOURNAL OF MECHANICAL ENGINEERING SCIENCE, 2015, 229 (13) :2341-2354
[26]   STUDY ON A ROTOR PASSING THROUGH A RESONANCE. [J].
Matsuura, Katsumasa .
Bulletin of the JSME, 1980, 23 (179) :749-758
[27]  
Mokhtar M.A., 2018, INT C ROT DYN, V3, P534
[28]   Investigations on bending-torsional vibrations of rotor during rotor-stator rub using Lagrange multiplier method [J].
Mokhtar, Md Asjad ;
Darpe, Ashish Kamalakar ;
Gupta, Kshitij .
JOURNAL OF SOUND AND VIBRATION, 2017, 401 :94-113
[29]   DYNAMICS OF ROTO-BEARING SYSTEMS USING FINITE-ELEMENTS [J].
NELSON, HD ;
MCVAUGH, JM .
JOURNAL OF ENGINEERING FOR INDUSTRY-TRANSACTIONS OF THE ASME, 1976, 98 (02) :593-600
[30]   A FINITE ROTATING SHAFT ELEMENT USING TIMOSHENKO BEAM THEORY [J].
NELSON, HD .
JOURNAL OF MECHANICAL DESIGN-TRANSACTIONS OF THE ASME, 1980, 102 (04) :793-803