Conceptual Design of Hybrid-Driven Precision Press
| Periodical | Applied Mechanics and Materials (Volume 141) |
|---|---|
| Main Theme | Functional Manufacturing and Mechanical Dynamics II |
| Edited by | Hun Guo, Taiyong Wang, Zeyu Weng, Weidong Jin, Shaoze Yan, Xuda Qin, Guofeng Wang, Qingjian Liu and Zijing Wang |
| Pages | 26-32 |
| DOI | 10.4028/www.scientific.net/AMM.141.26 |
| Citation | Yong Gang Li et al., 2011, Applied Mechanics and Materials, 141, 26 |
| Online since | November, 2011 |
| Authors | Yong Gang Li, Bing Yan |
| Keywords | Dynamic Simulation, Hybrid-Driven, Optimal Design, Precision Press |
| Price | US$ 28,- |
In this paper, a novel precision press is proposed, which is to combine the motion of a large constant speed motor with a small servomotor via a two-DOF mechanism, where, the constant speed motor provides main torque and motion requirements, while the servomotor contributes to modulations on this motion. The forward kinematic optimal design, electromechanical system dynamics modeling and simulation of this new mechanical press system have been presented here. The simple analysis of theoretical feasibility of the hybrid-driven press is investigated.