Solving optimization problems in the design of fixtures for flexible manufacturing systems

Author:

Khusainov R M,Mindiyarov R R,Petrovetskiy B I

Abstract

Abstract This article discusses one of the technologies of digital production, expressed in the application of CAD/CAM systems and methods of mathematical optimization to the design of technological equipment intended for use in flexible production systems. The authors offer a solution of the problem of increasing the reliability of the manufacturing process on the machine by eliminating collisions of elements of technological equipment, by selecting the parameters of the technological system. The application of mathematical optimization methods for selecting parameters of technological equipment is considered. Optimization criteria for solving this problem and optimization parameters for this problem are derived and justified. The results of the solution are based on computer simulation of processing on a specific machine.

Publisher

IOP Publishing

Subject

General Medicine

Reference20 articles.

1. Methodology of the formalized approach of the automated construction of the manufacturing route of a mechanical engineering product;Govorkov;IOP Conf. Series: Materials Science and Engineering,2019

2. Design, Modelling and Manufacturing of 16 Cylinder Hydraulic Fixture with Automated Clamping System;Jaykumar;J. Phys.: Conf. Ser.,2019

3. Implementation of ISO 9001, ISO 14001, ISO 45001 requirements with the Systems of Electronic Document Turnover;Balabanov;International Journal of Engineering & Technology,2018

4. Prevention of undercutting of the leg of the tooth of cylindrical helical gears during roughing and finishing gear processing;Safarov;IOP Conf. Ser.:Mater. Sci. Eng.,2020

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