
PRODUCT QUALITY AT DESIGN STAGE
Author(s) -
V. K. Tikhomirov,
Михаил Измеров,
Михаил Шалыгин
Publication year - 2020
Publication title -
vestnik brânskogo gosudarstvennogo tehničeskogo universiteta
Language(s) - English
Resource type - Journals
ISSN - 1999-8775
DOI - 10.30987/1999-8775-2020-2020-2-11-18
Subject(s) - novelty , quality (philosophy) , process (computing) , product (mathematics) , quality assurance , engineering design process , new product development , manufacturing engineering , unit (ring theory) , systems engineering , product design , computer science , work (physics) , presentation (obstetrics) , industrial engineering , risk analysis (engineering) , engineering , mechanical engineering , operations management , medicine , philosophy , geometry , theology , mathematics , external quality assessment , epistemology , mathematics education , marketing , business , operating system , radiology
The purpose of the work consists in the presentation to the scientific community a special methodology for tribo-system designing, where a design process interacts with the analysis of possible behavior of a friction angle while operating specified technical conditions taking into account an environment impact that is taking into account a forecasting of tribo-system behavior under specified conditions. For that the best possibility is the creation of the computer model of a friction unit with the estimate of its time behavior during the impact of outer parameters upon it and the impact of inner factors, for this purpose a design-engineer must have competences in different fields of science and technology. Besides, a designer must develop procedures for replacement, restoration and repair to support an operating status of the equipment under development for the whole life required.
A basic method of friction process investigations is a computer modeling of friction unit behavior.
The result and investigation novelty is the development of a special methodology for designing technical systems taking into account the simulation of their evolution ensuring product quality at the designing stage.
In such a way there are shown principles for machinery quality assurance during designing engineering systems.