Papers by Author: Yong Gang Li

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Abstract: The finite element model of a novel 5-dof mould repairing hybrid machine tool is modeled by using the ANSYS Parametric Design Language (APDL), and the static stiffness of the whole machine and the sensitivity are analyzed. With the help of APDL and the concept of substructure integration, the fast reconstruction strategy to establish the finite element model is put forward. Then, the implementation strategy aimed to analyze the static stiffness of the whole machine and optimize the hinge structure are proposed. Then through the data statistics and the sensitivity analysis, the influence tendency of key flexible components affecting the static stiffness of the system are identified, which provides the guidance for parameter design of this prototype machine.
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Abstract: This article presents a direct position analysis of a reconfigurable 2PRS-2PUS parallel mechanism. Based on the structural features of this new mechanism, take the absolute coordinates of the four balls vice center on movable platform as the output variables, a direct position analysis which using elimination method is presented. The solution is verified by a group of numerical examples, which given by matlab. In addition, graphical representations of the real solutions are presented.
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Abstract: A detailed numerical simulation analysis on the dynamic response of intermittent roller chain drive has been carried out in this study. Instead of using analytical method, three dimension solid modeling software and multi-rigid body dynamic analysis software are utilized for modeling and simulating the dynamic behavior of chain drive. The longitudinal vibration response of the chain links is concentrated on, which aims to reveal the dynamic characteristics of the intermittent chain drive under varying motion laws such as the modified sinusoid (MS), the modified constant velocity (MCV) and the unsymmetrical modified trapezoid (UMT). The simulation results can enable designers to require information on the analysis and design of mechanisms with the intermittent roller chain drives.
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Abstract: 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.
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