Contact analysis of interference fit in turbocharger compressor

被引:0
|
作者
Liao, AH [1 ]
Zhang, HW [1 ]
Wu, CH [1 ]
机构
[1] Dalian Univ Technol, Dept Engn Mech, Dalian 116024, Peoples R China
关键词
turbocharger compressor impeller; interference fit; 3-D frictional contact analysis; parametric quadratic; programming method;
D O I
暂无
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
The interference fit between impeller and shaft assembly is one of the most important factors influencing the performance of the turbo unit in the design of turbocharger compressor. The assembly creates a complicated frictional contact problem in the interface of the mating parts. The existing of centrifugal force may cause the variation of the interference fit especially when the rotating speed is high. Therefore, a suitable fit tolerance needs to be considered in the structural design of turbocharger compressor. A locomotive-type turbocharger compressor with 24 blades under combined centrifugal and interference-fit loading is used for the analysis. The FE parametric quadratic programming (PQP) method which was developed based on the parametric variational principle (PVP) is used for the analysis of the stress distribution of 3D frictional contact problem of impeller-shaft sleeve-shaft, and then, using the multi-level, multi-branch substructure technique of FE, makes it possible to precisely simulate complicated geometrical shapes of impeller and considerably enhances accuracy in numerical computation. The advantages of the parametric programming method as compared with the conventional ones are that the penalty factors can be cancelled and the solutions can be obtained directly without tedious iterative procedures such as general incremental iterative method. The effects of fit tolerance and rotating speed, the displacement and the contact pressure on the interference-fitting surfaces are discussed in detail in the numerical computation. A range of friction coefficients in the impeller-shaft sleeve and shaft sleeve-shaft contact interfaces is investigated in order to represent the mechanical behaviors of the structure due to the change of the interface characteristic. To decrease the difficulty of the assembling process and make sure the safety of the working state, the suitable amount of the interference is studied so that the interface can have adequate contact pressure under full load. To assure quality of press-fitting, the amount of interference between the shaft sleeve and shaft by press-fitting should be controlled strictly to avoid the rapid increase of the contact stress. The results obtained play a referential role in deciding the proper fit tolerance and improving design and manufacturing technology of compressor impellers. The study provides also an effective approach which achieves more reliable interference-fitted connections and more precise assembly accuracy with lower manufacturing cost in the structural design.
引用
收藏
页码:801 / 806
页数:6
相关论文
共 50 条
  • [1] Numerical analysis of a turbocharger compressor
    Hazizi, Kristaq
    Ramezanpour, Ahad
    Costall, Aaron
    Asadi, Mehrdad
    XII INTERNATIONAL CONFERENCE ON COMPUTATIONAL HEAT, MASS AND MOMENTUM TRANSFER (ICCHMT 2019), 2019, 128
  • [2] Contact analysis for interference fit of vane machinery
    State Key Laboratory of Structural Analysis for Industrial Equipment, Department of Engineering Mechanics, Dalian University of Technology, Dalian 116024, China
    J. Mech. Strength, 2006, 2 (282-286):
  • [3] Frictional Contact Analysis of Turbocharger Compressor-Shaft Sleeve-Shaft
    Liao Ai-hua
    2009 INTERNATIONAL CONFERENCE ON MEASURING TECHNOLOGY AND MECHATRONICS AUTOMATION, VOL II, 2009, : 817 - 820
  • [4] Contact Stress Analysis of Tapered Interference Fit for the Cantilevered Axle
    Xiao, Shufen
    Jiang, Xueqi
    Li, Xiwen
    PROCEEDINGS OF THE 3RD INTERNATIONAL CONFERENCE ON MATERIAL, MECHANICAL AND MANUFACTURING ENGINEERING, 2015, 27 : 1685 - 1689
  • [5] Finite element method-based three-dimensional frictional contact analysis of turbocharger compressor
    Liao, A. H.
    Zhang, H. W.
    Wu, C. H.
    PROCEEDINGS OF THE INSTITUTION OF MECHANICAL ENGINEERS PART A-JOURNAL OF POWER AND ENERGY, 2007, 221 (A7) : 1037 - 1047
  • [6] Simulation Analysis Of Compressor Flow Field In Vehicle Turbocharger
    Lei, Rujing
    2019 11TH INTERNATIONAL CONFERENCE ON MEASURING TECHNOLOGY AND MECHATRONICS AUTOMATION (ICMTMA 2019), 2019, : 199 - 203
  • [7] The CFD Analysis of Internal Flow Field in Turbocharger Compressor
    Liu, Xiangling
    Hu, Liaoping
    Gong, Jinke
    Jiaqiang, E.
    MATERIALS SCIENCE, MECHANICAL ENGINEERING AND APPLIED RESEARCH, 2014, 628 : 279 - 282
  • [8] Acoustic and vibration analysis of a turbocharger centrifugal compressor failure
    Sandoval, Oscar R.
    Machado, Luiz Henrique Jorge
    Hanriot, Vitor Mourao
    Troysi, Fernanda
    Faria, Marco Tulio C.
    ENGINEERING FAILURE ANALYSIS, 2022, 139
  • [9] Structure computation and analysis of vehicle turbocharger compressor impeller
    Zhang, Hong
    Ma, Chao-Chen
    Neiranji Gongcheng/Chinese Internal Combustion Engine Engineering, 2007, 28 (01): : 62 - 66
  • [10] VIBRATION ANALYSIS OF A TURBOCHARGER WITH AN ADDITIVELY MANUFACTURED COMPRESSOR WHEEL
    Andrearczyk, Artur
    Baginski, Pawel
    SCIENTIFIC JOURNAL OF SILESIAN UNIVERSITY OF TECHNOLOGY-SERIES TRANSPORT, 2020, 107 : 5 - 17