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Development of Virtual Simulation System for Remote Collaborative Surface Machining
作者姓名:R.S.Lee
作者单位:Department of
摘    要:1 Introduction Many parts of aerospace ,automobile and mold industries are high precision and complex-shaped. There-fore ,it needs multi-axis machining. Multi-axis machining has advantages of i mproving efficiency and surfaceprecision,reducing production expense and shortening ti me to market . Although there are many advantages inmulti-axis machining,there are many steps on process planningfor complexsurface .And every step needs engi-neers to make appropriate decisions by their professional…


Development of Virtual Simulation System for Remote Collaborative Surface Machining
R.S.Lee.Development of Virtual Simulation System for Remote Collaborative Surface Machining[J].Journal of Wuhan University of Technology,2006(Z1).
Authors:RSLee  YSLin  YCKao  C H She
Affiliation:R.S.Lee1,Y.S.Lin1,Y.C.Kao2,C. H. She3
Abstract:Most researches about virtual machine tool are emphasized on simulations of machine motion and machining process for single machine. In this paper,a virtual simulation system for remote collaborative surface machining is developed. The motion command of machine tool is generated by an interpolator,which can derive synchronized motion commands according to feedrate. Thus,the system can estimate the machining time. For universal assembly of five-axis virtual machine tool,it is based on the D-H notation representation and machining constraints consideration. The remote collaborative virtual manufacturing system based on the CORBA technology is proposed in this paper. It demonstrated that the developed virtual machine tool can be used to verify and simulate the machining process for the collaboration of the surface design and manufacturing team.
Keywords:virtual machine tool  remote collaboration  five-axis  
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