Design Methodology of Main Bearing Cap by a Finite Element Analysis

베어링 캡 유한 요소 해석 설계 방법

  • Yang, Chull-Ho (School of Mechanical Engineering, Andong National University) ;
  • Han, Moon-Sik (School of Mechanical and Automotive Engineering, Keimyung University)
  • 양철호 (안동대학교 기계공학부) ;
  • 한문식 (계명대학교 기계자동차공학부)
  • Published : 2009.01.01

Abstract

Main bearing cap is one of the essential structural elements in internal combustion engine. Main bearing cap guides and holds the crankshaft, withstanding the full combustion and inertia loads of the engine. A seamless design methodology using FEA has been proposed to produce a reliable design of main bearing cap. A Levy's thick cylinder model was applied to calculate the contact pressure between bearing shell and housing bore. A calculated contact pressure at housing bore is within the allowed limit comparing with that from bearing shell model. An adequate FEA model was suggested to obtain reliable solutions for the durability of main bearing cap. 3D global model consists of engine bulkhead, main bearing cap, and bolts. Sub-model consisting of cap and part of bolts is used to get detailed solution of main bearing cap. A very careful contact modeling practice is needed to resolve the convergence problems frequently encountering during combined geometric and material non-linear problems. A proposed methodology has been applied to the main bearing cap model successfully and obtained reliable stress results and fatigue safety factors.

Keywords

References

  1. C. Taylor, The Internal Combustion Engine in Theory and Practice, M.I.T. Press, Cambridge, 1985
  2. C. H. Yang and M. S. Han, "Finite Element Analysis of Engine Cylinder Block and Main Bore for Reliable Design," Transactions of KSAE, Vol.13, No.4, pp.39-48, 2005
  3. W. Crouse and D. Anglin, Automotive Mechanics, 10th Ed., McGraw Hill Inc., New York, 2001
  4. ABAQUS User Manual, Ver 6.2, HKS, 2002
  5. A. Boresh, R. Schmidt and O. Sidebottom, Advanced Mechanics of Materials, 5th Ed., John Wiely & Sons, New York, 1993
  6. R. Juvinall and K. Marshek, Fundamentals of Machine Component Design, 3rd Ed., John Wiely & Sons, New York, 1999
  7. ABAQUS Seminar Note on Contact Modeling, HKS, 2000
  8. S. Suresh, Fatigue of Materials, 2nd Ed., Cambridge University Press, Cambridge, UK, 1999