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The error model of CNC machine tool describes the relationship between the individual error source and its effects on the overall position errors.
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This paper deals with the reliability design of elements of computerized numerical control (CNC) machine tools and the practical applications of multidimensional force spectra of CNC machine tools described in part one of this paper.
First, a framework is proposed for modular and functional description of a machine tool is described, in order to identify the largest energy consuming modules and functions.
On the supplier side, the machinability check, tool path generation and energy use estimation should be identified with machine tool specifications described by STEP-NC.
Furthermore, future evolutionary trends of such ultraprecision machine tools are described.
The multidimensional force spectra of computerized numerical control (CNC) machine tools are described in this paper.
The critical processing capacity of RUM machine tools was described, which guarantees the RUM effectiveness and consequently constitutes the boundary condition of processing parameters determination.
A methodology for tuning the stiffness of machine tool supports is described based on a stiffness model using the contact stiffness approach.
In this paper, the design for an ultraprecision machine tool is introduced by describing its key machine elements and machine tool design procedures.
The bearing units and cooling system influence on machine tool preciseness has been described.
This chapter describes an ideal machine tool structure for micro- and nanometer scale processing.
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