In this thesis, a method for the modeling and simulation of the interaction between the turning process and the machine tool structure was developed and experimentally verified. Thereby, a high accuracy of both the cutting force model and the machine tool model could be achieved. Together with the representation of the control system and the electrical drives all relevant subsystems of the machine tool were considered. In regard to the prediction of process accuracy and efficiency, this offers new potential for the manufacturer and the user of machine tools.
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In this thesis, a method for the modeling and simulation of the interaction between the turning process and the machine tool structure was developed and experimentally verified. Thereby, a high accuracy of both the cutting force model and the machine tool model could be achieved. Together with the representation of the control system and the electrical drives all relevant subsystems of the machine tool were considered. In regard to the prediction of process accuracy and efficiency, this offers n...
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