Daniel D'Agostino
DEVELOPMENT FOR A FLEXIBLE GEAR WHEEL DYNAMICS SIMULATION ALGORITHM.
Rel. Aldo Sorniotti, Fabio Bruzzone, Carlo Rosso. Politecnico di Torino, Master of science program in Automotive Engineering, 2026
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Abstract
In this study, the dynamic response of a spur gear pair is analyzed using a novel nonlinear approach. The actual rolling motion and gear engagement are simulated through a set of reduced-order models obtained in a pre-processing phase, using the minimum number of master’s degrees of freedom without loss of accuracy or generality. Gear body flexibility is included by means of a refined finite element model, while all sources of nonlinearity are retained and no geometric simplifications are introduced. To reduce computational cost, the time-varying meshing stiffness is precomputed and applied according to the instantaneous loading conditions. Contact loss and recovery are considered, with reconnection events modeled as vibro-impacts.
The proposed method achieves a computational cost several orders of magnitude lower than models with comparable accuracy
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