ALGORITHMIC FOUNDATIONS OF OPTIMIZATION USING FINITE ELEMENT MODELING OF HIGH-SPEED GRINDING TECHNOLOGY IN APPLICATION TO 3D MICRO-LEVEL MODELS

Authors

  • A.G. Mamalis Project Center for Nanotechnology and Advanced Engineering, NCSR “Demokritos”, Athens, Greece
  • V.A. Fedorovich Department of Integrated Engineering Techniques named after M.F. Semko, National Technical University “Kharkov Polytechnic Institute”, Ukraine
  • D.V. Romashov Department of Integrated Engineering Techniques named after M.F. Semko, National Technical University “Kharkov Polytechnic Institute”, Ukraine
  • Y.V. Ostroverkh Department of Integrated Engineering Techniques named after M.F. Semko, National Technical University “Kharkov Polytechnic Institute”, Ukraine

Keywords:

3D modelling, methodology, diamond wheel, high-speed grinding, finite element method, simulations, micro-scale, optimization

Abstract

Optimization consists in choosing the best of all possible options for implementing high-speed grinding technology. A complete enumeration of all options may turn out to be inefficient or practically impossible. Therefore, to solve such a problem, we should apply fundamental mathematical results and numerical methods of optimization theory, which allow choosing the best option without directly checking all possible solutions. Such a choice is realized by means of calculations carried out using special algorithms and is practically impossible without the use of computer technology.

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Published

2023-11-09

Issue

Section

Oral Session A: High Strain-Rate Phenomena / Impact to Shock Loading