Error Modeling and Sensitivity Analysis of a Five-Axis Machine Tool

Geometric error modeling and its sensitivity analysis are carried out in this paper, which is helpful for precision design of machine tools. Screw theory and rigid body kinematics are used to establish the error model of an RRTTT-type five-axis machine tool, which enables the source errors affecting...

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Veröffentlicht in:Mathematical problems in engineering 2014-01, Vol.2014 (1)
Hauptverfasser: Tian, Wenjie, Gao, Weiguo, Chang, Wenfen, Nie, Yingxin
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Chang, Wenfen
Nie, Yingxin
description Geometric error modeling and its sensitivity analysis are carried out in this paper, which is helpful for precision design of machine tools. Screw theory and rigid body kinematics are used to establish the error model of an RRTTT-type five-axis machine tool, which enables the source errors affecting the compensable and uncompensable pose accuracy of the machine tool to be explicitly separated, thereby providing designers and/or field engineers with an informative guideline for the accuracy improvement by suitable measures, that is, component tolerancing in design, manufacturing, and assembly processes, and error compensation. The sensitivity analysis method is proposed, and the sensitivities of compensable and uncompensable pose accuracies are analyzed. The analysis results will be used for the precision design of the machine tool.
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source Elektronische Zeitschriftenbibliothek - Frei zugängliche E-Journals; Wiley-Blackwell Open Access Titles; Alma/SFX Local Collection
subjects Accuracy
Body kinematics
Compensation
Design
Design analysis
Design engineering
Engineering
Error analysis
Error compensation
Error detection
Errors
Five axis
Kinematics
Machine tool industry
Machine tools
Mathematical models
Modelling
R&D
Research & development
Rigid structures
Screw theory
Sensitivity analysis
title Error Modeling and Sensitivity Analysis of a Five-Axis Machine Tool
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