Motion simulation of annular polishing


Autoria(s): Fan Quantang; 朱健强; 张宝安; Bao Lei
Data(s)

2007

Resumo

Based on the Coulomb friction model, the frictional motion model of workpiece relating to the polishing pad was presented in annular polishing. By the dynamic analysis software, the model was simulated and analysed. The conclusions from the results were that the workpiece did not rotate steadily. When the angular velocity of ring and the direction were the same as that of the polishing pad, the angular velocity of workpiece hoicked at the beginning and at the later stage were the same as that of the polishing pad before contacting with the ring. The angular velocity of workpiece vibrated at the moment of contacting with the ring. After that the angular velocity of workpiece increased gradually and fluctuated at a given value, while the angular velocity of ring decreased gradually and also fluctuated at a given value. Since the contact between the workpiece and the ring was linear, their linear velocities and directions should be the same. But the angular velocity of workpiece was larger than that of the polishing pad on the condition that the radius of the workpiece was less than that of the ring. This did not agree with the pure translation principle and the workpiece surface could not be flat, either. Consequently, it needed to be controlled with the angular velocity of ring and the radii of the ring and the workpiece, besides friction to make the angular velocity of workpiece equal to that of the polishing pad for obtaining fine surface flatness of the workpiece. Copyright © 2007 Inderscience Enterprises Ltd.}

Identificador

http://ir.siom.ac.cn/handle/181231/3092

http://www.irgrid.ac.cn/handle/1471x/10890

Idioma(s)

英语

Fonte

Fan Quantang;朱健强;张宝安;Bao Lei.,International Journal of Computer Applications in Technology,2007,29(2-4):159-162

Palavras-Chave #Angular velocity #Computer simulation #Friction #Mathematical models #Motion estimation #Polishing
Tipo

期刊论文