Finite Element Based Surface Wear Analysis of Cam and Follower System

Tesfie, Nega (2014) Finite Element Based Surface Wear Analysis of Cam and Follower System. Masters thesis, Addis Ababa University.

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Abstract

A particular type of contact condition, known as cam and follower contact, exists in the direct valve train system of an engine and is partly responsible for wear. In this thesis the wear analysis of cam and follower contact system are analyzed and finite element modeling of cam and follower assembly is done using the ABAQUS analysis software. The contact pressure , von misses stress are calculated theoretically and the ABAQUS results are presented in contour plot and numerically. The results showed that the cam rotational angle and the pressure angle had an effect on the contact pressure, on stress distribution and also plays a great role on the surface wear of the contact. The results also showed that the contact pressure, von misses stress and the wear increases with of cam rotational angle and the wear increases linearly with the contact pressure.Based upon the theoretical analyses and ABAQUS analysis, a theoretical model for evaluating the tribological performance of the valve train was developed. A multi-aspect comparison between theoretical and ABAQUS results was made. A good agreement between theoretical and experimental results showed that the model provided a reliable prediction o f the tribological characteristics of the cam/roller follower. Three critical portions of the cam could be identified these are the cam basic surface region, cam flank and cam lobe region.

Item Type: Thesis (Masters)
Uncontrolled Keywords: Mechanical Engineering
Subjects: Q Science > Q Science (General)
Q Science > QA Mathematics > QA76 Computer software
T Technology > T Technology (General)
T Technology > TJ Mechanical engineering and machinery
Divisions: Africana
Depositing User: Andriamparany Edilbert RANOARIVONY
Date Deposited: 13 Jul 2018 12:09
Last Modified: 13 Jul 2018 12:09
URI: http://thesisbank.jhia.ac.ke/id/eprint/7477

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