Information support for quality management processes of products
News of the Kabardin-Balkar scientific center of RAS, Tome 26 (2024) no. 1, pp. 21-28.

Voir la notice de l'article provenant de la source Math-Net.Ru

This article discusses in detail the main issues of quality management of products made from multicomponent elastomeric composites based on information models. The main technological stages, technical procedures and production operations in a complex chemical-technological system for producing finished products from multi-component elastomeric composites are described (considered). A logical-information model of a production system is presented based on a verbal model for describing processes in tabular form. The main actions and functions of process performers that implement specific stages of production of semi-finished and finished products are presented. Based on the principles of the systems approach and the SADT methodology of structural analysis, a set of logical-information and functional models was built for the production system – descriptions of a complex chain of production processes for producing elastomeric composites. A generalized functional and technological scheme for the production of a finished product is proposed based on the IDEF0 functional modeling methodology. A functional decomposition of a generalized structural-functional model of production was carried out in order to detail the production stages, operations and actions of individual performers of process groups. All technological stages and operations for the production of the finished product – an elastomeric composite with a level of properties and performance characteristics that meet the required level of quality indicators – have been formalized. The proposed information support in the form of a complex of structural and functional production models can be used for further intensification of production processes, organization of a more flexible and adaptive, highly efficient process of operational management and production control by identifying the most sensitive control points. Identifying and using new control points will allow you to more effectively manage the quality characteristics of the finished product. The scientific research methodology is based on the analysis of scientific data, comparative analysis, data synthesis, and graphic interpretation. The result of the study is the creation of an information support model for managing the quality of products made from multi-component elastomeric composites. The work also identifies development prospects and reviews research in this area.
Mots-clés : nformation support
Keywords: management processes, elastomeric composite, structural analysis, systems approach
@article{IZKAB_2024_26_1_a1,
     author = {A. S. Kuznetsov},
     title = {Information support for quality management processes of products},
     journal = {News of the Kabardin-Balkar scientific center of RAS},
     pages = {21--28},
     publisher = {mathdoc},
     volume = {26},
     number = {1},
     year = {2024},
     language = {ru},
     url = {http://geodesic.mathdoc.fr/item/IZKAB_2024_26_1_a1/}
}
TY  - JOUR
AU  - A. S. Kuznetsov
TI  - Information support for quality management processes of products
JO  - News of the Kabardin-Balkar scientific center of RAS
PY  - 2024
SP  - 21
EP  - 28
VL  - 26
IS  - 1
PB  - mathdoc
UR  - http://geodesic.mathdoc.fr/item/IZKAB_2024_26_1_a1/
LA  - ru
ID  - IZKAB_2024_26_1_a1
ER  - 
%0 Journal Article
%A A. S. Kuznetsov
%T Information support for quality management processes of products
%J News of the Kabardin-Balkar scientific center of RAS
%D 2024
%P 21-28
%V 26
%N 1
%I mathdoc
%U http://geodesic.mathdoc.fr/item/IZKAB_2024_26_1_a1/
%G ru
%F IZKAB_2024_26_1_a1
A. S. Kuznetsov. Information support for quality management processes of products. News of the Kabardin-Balkar scientific center of RAS, Tome 26 (2024) no. 1, pp. 21-28. http://geodesic.mathdoc.fr/item/IZKAB_2024_26_1_a1/

[1] M. L. Uralsky, R. A. Gorelik, A. M. Bukanov, Monitoring and regulation of technological properties of rubber compounds, Chemistry, Moscow, 1983, 128 pp. (In Russian)

[2] F. A. Makhlis, D. L. Fedyukin, Terminological reference book on rubber, Chemistry, Moscow, 1989, 400 pp. (In Russian)

[3] B. A. Dogadkin, A. A. Dontsov, V. A. Shershnev, Chemistry of elastomers, Chemistry, Moscow, 1981, 376 pp. (In Russian)

[4] A. E. Kornev, A. M. Bukanov, O. N. Sheverdyaev, Technology of elastomeric materials, Exim, Moscow, 2000, 288 pp. (In Russian)

[5] A. N. Sochnev, G. M. Sadchikova, V. P. Biryukov, “Analysis of the state parameters of the rubber mixture to control the technological process of its production”, Collection of scientific papers «Automation and control in mechanical and instrument engineering», SGTU, Saratov, 2007, 206–209 (In Russian)

[6] I. M. Agayants, Five centuries of rubber and rubber, Modern, Moscow, 2002, 432 pp. (In Russian)

[7] I. A. Novakov, O. M. Novopoltseva, M. A. Krakshin, Methods for assessing and regulating the plastoelastic and vulcanization properties of elastomers and compositions based on them, Chemistry, Moscow, 2000, 240 pp. (In Russian)

[8] A. S. Kuznetsov, V. F. Kornyushko, L. V. Sadekov, “Information and software of a hybrid intelligent system for process control”, Software systems, 2021, no. 4, 629–638 (In Russian) | DOI | DOI

[9] L. A. Stolbov, D. S. Dubavov, O. A. Filoretova, A. V. Lisitsa, “Information support systems when creating a problem-oriented database using cognitive modeling”, Integral, 2013, no. 1, 52–53 (In Russian)

[10] E. M. Samoilova, “Construction of an expert decision support system as an intellectual component of a technological process monitoring system”, Bulletin of PNIPU. Mechanical engineering, materials science, 2016, no. 2, 128–142 (In Russian)

[11] V. P. Meshalkin, Expert systems in chemical technology, Chemistry, Moscow, 1995, 367 pp. (In Russian)

[12] A. F. Egorov, T. V. Savitskaya, P. G. Mikhailova, “Models and methods for solving problems of operational safety management of continuous chemical-technological systems. Part 1. Management under conditions of uncertainty”, Management problems, 2005, no. 6, 50–56 (In Russian)

[13] A. F. Egorov, T. V. Savitskaya, V. P. Belkov, A. V. Goransky, Mathematical modeling and methods of synthesis of flexible chemical production. Automated laboratory complex, RHTU im. D. I. Mendeleeva, 2008, 202 pp. (In Russian)

[14] Informatics for chemical technologists, eds. eds. L.S. Gordeev, V. F. Kornyushko, Higher School, Moscow, 2006, 286 pp. (In Russian)

[15] V. N. Volkova, A. A. Denisov, Systems theory and system analysis: a textbook for universities, Yurayt, Moscow, 2023, 562 pp. (In Russian)