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  4. Simulation-based correction approach thermo-elastic workpiece deformations during milling processes
 
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2016
Journal Article
Title

Simulation-based correction approach thermo-elastic workpiece deformations during milling processes

Other Title
Simulation-based correction approach thermo-elastic deformation during drilling and milling
Simulationsbasierter Korrekturansatz für thermoelastische Verformung bei Fräsprozessen
Abstract
Based on the method of adaptive finite elements (FEM) a correction approach has been considered to identify the influence of thermo-elastic workpiece deformations during the production process milling. The paper presents a simulation-based tolerance variation calculation of cutting paths, which is caused by the heat input of the machine tool. Therefore a mathematical method is developed to numerically depict the progress of the miller with different curves A(t), B(t) and C(t). These curves are used to map the state of the milling path during the production process as well as to compare the current workpiece contour and the target workpiece contour. The tool center point (TCP) correction results from mapping of time-dependent deformation fields from the FE simulation. The aim is, on the one hand, to make statements before the production about keeping the tolerance, and on the other hand, to derive other correction approaches for the adaption of the cutting path coordinates.
Author(s)
Glänzel, Janine  
Herzog, Roland
Ihlenfeldt, Steffen  
Meyer, Alexander
Unger, Roman
Journal
Procedia CIRP  
Conference
Conference on High Performance Cutting (HPC) 2016  
Open Access
DOI
10.1016/j.procir.2016.03.178
Additional link
Full text
Language
English
Fraunhofer-Institut für Werkzeugmaschinen und Umformtechnik IWU  
Keyword(s)
  • milling

  • tolerancing

  • material removal

  • thermo-elastic

  • adaptive FEM

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