TECHNICAL PAPERS

Dynamic EHL Film Thickness in Cam and Follower Contacts of Various Valve Lifts

Date Published: 2000-06-19
Paper Number: 2000-01-1789
DOI: 10.4271/2000-01-1789

Citation:

Jang, S. and Park, K., "Dynamic EHL Film Thickness in Cam and Follower Contacts of Various Valve Lifts," SAE Technical Paper 2000-01-1789, 2000, doi:10.4271/2000-01-1789.

Author(s):


Siyoul Jang - Kookmin Univ.
Kyoungkuhn Park - Kookmin Univ.

Abstract:

The resistance of driving forces in engine mainly comes from contact behaviors of many components such as piston skirt, piston rings, big-end or main bearings and other components of valve train system. The contact between cam and follower has one of the severest tribological behaviors in these components due to cyclic fluctuation of loads and sudden change of relative contacting speed. In order to verify the characteristics of frictional resistance and wear in these components, the investigation to find the minimum film thickness of these tribological components should be performed preferentially. This verification gives useful clue for better performance and endurance life of the whole engine system. In this investigation, the most important input parameters are the applied loads and the relative contacting velocities during the cycle. These parameters can be obtained from the simulation of kinematics and dynamics of valve train system. In this work, the valve train system of push-rod type which is in wide use for diesel engines are studied for the calculation of applied loads and relative contacting velocities between cam and follower. The follower model in our work is of flat shape, which provides basic concepts of contact behaviors between cam and follower and is applicable to various curvatured followers.

File Size: 321K

Product Status: In Stock

See papers presented at CEC/SAE Spring Fuels & Lubricants Meeting & Exposition, June 2000, Paris, FRANC, Session: Powertrain Tribology

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