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A comprehensive analysis on coast side contact behaviour of thermoplastic gears against steel gear: a FEA approach.

Authors :
Vignesh, S.
Johnney Mertens, A.
Source :
Multidiscipline Modeling in Materials & Structures (Emerald Group Publishing Limited). 2024, Vol. 20 Issue 6, p1125-1147. 23p.
Publication Year :
2024

Abstract

Purpose: The research paper comprehensively investigates the gear tooth deflection of standard thermoplastic gears with steel gear as the driver and driven companions. An accurate mapping of characteristic contact regions between the meshing gears was done, and the behaviour of the gear tooth in the premature and prolonged contact zones was studied. Design/methodology/approach: The study employs the finite element method to conduct a quasi-static 2D analysis of meshing gear teeth. The finite element model was created in AutoCAD and analysed using the ANSYS 19.1 simulation package. Findings: In the polymer-polymer gear combinations, premature and prolonged contact primarily occurs along the addendum radii of meshing gears, whereas a novel contact phenomenon was observed in the coast side for polymer-metal and metal-polymer combinations, exhibiting a path perpendicular to the standard drive side contact. As well, the deflection of the tooth alters the load distribution across the interlocking gears, leading to a decrement in the root stresses. Originality/value: The Lewis bending equation demonstrates that bending stresses depend solely on the applied load and the geometry of the tooth. It does not consider the effects of deflection. However, the computational results showed that the gear tooth deflection caused by different gear pair combinations also affects the bending stresses. The contact stresses observed in the polymer-polymer gear combination were observed to be within the material's proportional limit. However, when a steel gear is paired with a polymer gear, the contact stresses exceed the proportional limit due to coast side contact. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
15736105
Volume :
20
Issue :
6
Database :
Academic Search Index
Journal :
Multidiscipline Modeling in Materials & Structures (Emerald Group Publishing Limited)
Publication Type :
Academic Journal
Accession number :
180472904
Full Text :
https://doi.org/10.1108/MMMS-12-2023-0400