RODec 21, 2021

Design And Analysis Of Three-Output Open Differential with 3-DOF

arXiv:2112.11254v14 citations
Originality Incremental advance
AI Analysis

This addresses a mechanical engineering problem for applications requiring multi-output power transmission, but it is incremental as it extends existing two-output differential concepts.

The paper tackled the problem of designing a differential with three outputs that functions analogously to a traditional two-output differential, achieving equal motion and torque distribution to all outputs under unconstrained or equivalent load conditions, with the result being the first such differential to realize this outcome.

This paper presents a novel passive three-output differential with three degrees of freedom (3DOF), that translates motion and torque from a single input to three outputs. The proposed Three-Output Open Differential is designed such that its functioning is analogous to the functioning of a traditional two-output open differential. That is, the differential translates equal motion and torque to all its three outputs when the outputs are unconstrained or are subjected to equivalent load conditions. The introduced design is the first differential with three outputs to realise this outcome. The differential action between the three outputs is realised passively by a symmetric arrangement of three two-output open differentials and three two-input open differentials. The resulting differential mechanism achieves the novel result of equivalent input to output angular velocity and torque relations for all its three outputs. Furthermore, Three-Output Open Differential achieves the novel result for differentials with more than two outputs where each of its outputs shares equivalent angular velocity and torque relations with all the other outputs. The kinematics and dynamics of the Three-Output Open Differential are derived using the bond graph method. In addition, the merits of the differential mechanism along with its current and potential applications are presented.

Foundations

The foundational work for this paper's niche, ranked by how specifically the neighbourhood builds on it — not by global fame.

Your Notes