Abstract <p>The trajectory for integrating the automated production system of a cutting tool into a digital cyberphysical environment is considered. The development of an automated design system is based on the relationship between the main design elements of the cutting tool and the design parameters of the final part. By means of a geometric model, the cutter shape of conical end mills may be modified on the basis of geometric relations in the new design algorithm for the conical end mill. Three-dimensional models are developed for a set of structures of the new tools.</p>

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Trajectories Permitting the Integration of an Automated Production System for Cutting Tools into a Digital Cyberphysical Environment

  • P. M. Pivkin,
  • V. A. Kuznetsov,
  • E. S. Nazarenko,
  • A. A. Ershov,
  • A. M. Yazev,
  • M. Yu. Prus,
  • L. A. Uvarova,
  • A. B. Nadykto

摘要

Abstract

The trajectory for integrating the automated production system of a cutting tool into a digital cyberphysical environment is considered. The development of an automated design system is based on the relationship between the main design elements of the cutting tool and the design parameters of the final part. By means of a geometric model, the cutter shape of conical end mills may be modified on the basis of geometric relations in the new design algorithm for the conical end mill. Three-dimensional models are developed for a set of structures of the new tools.