Computational and experimental analysis of machine tool vibrations in micro-milling

In machining processes, it is necessary to study the vibration phenomena which take place in cutting zone between the cutting tool and the workpiece in order to ascertain the factors that affect them. The subject of this paper is to identify the influence of the cutting parameters and the dynamic ch...

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Published inMATEC web of conferences Vol. 112; p. 1022
Main Authors Sagris, Dimitrios, Davids, Constantine, Stergianni, Evlampia, Tsiafis, Christos, Tsiafis, Ioannis
Format Journal Article Conference Proceeding
LanguageEnglish
Published Les Ulis EDP Sciences 01.01.2017
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Abstract In machining processes, it is necessary to study the vibration phenomena which take place in cutting zone between the cutting tool and the workpiece in order to ascertain the factors that affect them. The subject of this paper is to identify the influence of the cutting parameters and the dynamic characteristics of the machine tool spindle and the cutting tool on the vibrations by means of FEM analysis. A FEM modal analysis of the machine tool spindle in combination with cutting force measurements are used to build up a transient FEM model in time domain in order to study the vibrations induced by the cutting process. The results of the transient FEM model will serve for further analysis to find out the optimum cutting parameters in micro-milling.
AbstractList In machining processes, it is necessary to study the vibration phenomena which take place in cutting zone between the cutting tool and the workpiece in order to ascertain the factors that affect them. The subject of this paper is to identify the influence of the cutting parameters and the dynamic characteristics of the machine tool spindle and the cutting tool on the vibrations by means of FEM analysis. A FEM modal analysis of the machine tool spindle in combination with cutting force measurements are used to build up a transient FEM model in time domain in order to study the vibrations induced by the cutting process. The results of the transient FEM model will serve for further analysis to find out the optimum cutting parameters in micro-milling.
Author Davids, Constantine
Tsiafis, Ioannis
Tsiafis, Christos
Sagris, Dimitrios
Stergianni, Evlampia
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SubjectTerms Computer programs
Cutting force
Cutting parameters
Cutting tools
Dynamic characteristics
Finite element method
Machine tool industry
Machine tools
Mathematical models
Milling (machining)
Modal analysis
Parameter identification
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