Methods of Mathematical Modeling of Automated Machine Systems of Multi-Nomenclature Production

Automated machine tool systems for multi-product manufacturing were designed for processing parts of a certain nomenclature, which includes separate groups of parts, united by the design, technological, organizational and economic properties. To reduce the number of options in the structure of an au...

Full description

Bibliographic Details
Main Authors: Dumler Elena, Vakhitova Roza, Saracheva Diana, Makarova Tatyana
Format: Article
Language:English
Published: EDP Sciences 2021-01-01
Series:EPJ Web of Conferences
Online Access:https://www.epj-conferences.org/articles/epjconf/pdf/2021/02/epjconf_mnps2021_04022.pdf
id doaj-7b1076f46c6c4caeb43a1af649a219b9
record_format Article
spelling doaj-7b1076f46c6c4caeb43a1af649a219b92021-08-02T21:30:55ZengEDP SciencesEPJ Web of Conferences2100-014X2021-01-012480402210.1051/epjconf/202124804022epjconf_mnps2021_04022Methods of Mathematical Modeling of Automated Machine Systems of Multi-Nomenclature ProductionDumler Elena0Vakhitova Roza1Saracheva Diana2Makarova Tatyana3Ufa State Petroleum Technical UniversityAlmetyevsk State Oil InstituteAlmetyevsk State Oil InstituteAlmetyevsk State Oil InstituteAutomated machine tool systems for multi-product manufacturing were designed for processing parts of a certain nomenclature, which includes separate groups of parts, united by the design, technological, organizational and economic properties. To reduce the number of options in the structure of an automated machine tool system, a target nonlinear design function was applied. Technological conditions were formulated in such a way as to allow synthesizing alternative structures of the designed automated system. At this stage, a matrix of relations was built and a formalized description of technological conditions was given. Specific and generalized technological conditions, which take into account the graph of relations and compatibility condition formulated for any pair of elements, were considered. The article discusses the generalized technological conditions obtained on the basis of the synthesis of compatibility and follow-up properties. The existence of generalized technological conditions for the elements of the automated system of the same name was assessed. The interaction of the elements of an automated system during processing, when the condition of the following and compatibility of technological parameters are met, was studied. By analyzing the functional and technological structure of an automated machine tool system for multi-product manufacturing, the key relationships between its main elements were determined, and the technological environment, a key subject of the system research, was identified.https://www.epj-conferences.org/articles/epjconf/pdf/2021/02/epjconf_mnps2021_04022.pdf
collection DOAJ
language English
format Article
sources DOAJ
author Dumler Elena
Vakhitova Roza
Saracheva Diana
Makarova Tatyana
spellingShingle Dumler Elena
Vakhitova Roza
Saracheva Diana
Makarova Tatyana
Methods of Mathematical Modeling of Automated Machine Systems of Multi-Nomenclature Production
EPJ Web of Conferences
author_facet Dumler Elena
Vakhitova Roza
Saracheva Diana
Makarova Tatyana
author_sort Dumler Elena
title Methods of Mathematical Modeling of Automated Machine Systems of Multi-Nomenclature Production
title_short Methods of Mathematical Modeling of Automated Machine Systems of Multi-Nomenclature Production
title_full Methods of Mathematical Modeling of Automated Machine Systems of Multi-Nomenclature Production
title_fullStr Methods of Mathematical Modeling of Automated Machine Systems of Multi-Nomenclature Production
title_full_unstemmed Methods of Mathematical Modeling of Automated Machine Systems of Multi-Nomenclature Production
title_sort methods of mathematical modeling of automated machine systems of multi-nomenclature production
publisher EDP Sciences
series EPJ Web of Conferences
issn 2100-014X
publishDate 2021-01-01
description Automated machine tool systems for multi-product manufacturing were designed for processing parts of a certain nomenclature, which includes separate groups of parts, united by the design, technological, organizational and economic properties. To reduce the number of options in the structure of an automated machine tool system, a target nonlinear design function was applied. Technological conditions were formulated in such a way as to allow synthesizing alternative structures of the designed automated system. At this stage, a matrix of relations was built and a formalized description of technological conditions was given. Specific and generalized technological conditions, which take into account the graph of relations and compatibility condition formulated for any pair of elements, were considered. The article discusses the generalized technological conditions obtained on the basis of the synthesis of compatibility and follow-up properties. The existence of generalized technological conditions for the elements of the automated system of the same name was assessed. The interaction of the elements of an automated system during processing, when the condition of the following and compatibility of technological parameters are met, was studied. By analyzing the functional and technological structure of an automated machine tool system for multi-product manufacturing, the key relationships between its main elements were determined, and the technological environment, a key subject of the system research, was identified.
url https://www.epj-conferences.org/articles/epjconf/pdf/2021/02/epjconf_mnps2021_04022.pdf
work_keys_str_mv AT dumlerelena methodsofmathematicalmodelingofautomatedmachinesystemsofmultinomenclatureproduction
AT vakhitovaroza methodsofmathematicalmodelingofautomatedmachinesystemsofmultinomenclatureproduction
AT sarachevadiana methodsofmathematicalmodelingofautomatedmachinesystemsofmultinomenclatureproduction
AT makarovatatyana methodsofmathematicalmodelingofautomatedmachinesystemsofmultinomenclatureproduction
_version_ 1721226854954696704