A two-dimensional dynamic friction model for rolling contact is obtained by generalizing the FrBD framework, combining a rheological bristle representation with an analytical sliding law, and using the Implicit Function Theorem to eliminate sliding velocity.
Kinematics of rolling contact: derivation, misconceptions, and generalisations
2 Pith papers cite this work. Polarity classification is still indexing.
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A unified dynamic toolkit simulates transmission behavior in precision reducers by explicitly computing contact geometry, gear stiffness, and vibrations with claimed gains in precision and speed.
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Two-dimensional FrBD friction models for rolling contact
A two-dimensional dynamic friction model for rolling contact is obtained by generalizing the FrBD framework, combining a rheological bristle representation with an analytical sliding law, and using the Implicit Function Theorem to eliminate sliding velocity.
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A Dynamic Toolkit for Transmission Characteristics of Precision Reducers with Explicit Contact Geometry
A unified dynamic toolkit simulates transmission behavior in precision reducers by explicitly computing contact geometry, gear stiffness, and vibrations with claimed gains in precision and speed.