Mathematical modeling of technological parameters of laser powder surfacing based on approximation of the deposition track profile

Objectives. Laser powder surfacing is a promising mechanical engineering technology used to effectively restore worn surfaces of parts and create special coatings with valuable properties. In the research and development of laser cladding technology, mathematical modeling methods are of crucial impo...

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Main Authors: Mikhail E. Soloviev, Denis V. Malyshev, Sergey L. Baldaev, Lev Kh. Baldaev
Format: Article
Language:Russian
Published: MIREA - Russian Technological University 2025-04-01
Series:Российский технологический журнал
Subjects:
Online Access:https://www.rtj-mirea.ru/jour/article/view/1132
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author Mikhail E. Soloviev
Denis V. Malyshev
Sergey L. Baldaev
Lev Kh. Baldaev
author_facet Mikhail E. Soloviev
Denis V. Malyshev
Sergey L. Baldaev
Lev Kh. Baldaev
author_sort Mikhail E. Soloviev
collection DOAJ
description Objectives. Laser powder surfacing is a promising mechanical engineering technology used to effectively restore worn surfaces of parts and create special coatings with valuable properties. In the research and development of laser cladding technology, mathematical modeling methods are of crucial importance. The process of applying powder coating involves moving the spray head relative to the surface of the part to form a roller or spray path, whose sequential application results in the formation of coatings. The study sets out to evaluate methods of profile approximation and optimization of technological parameters in laser powder cladding processes.Methods. In order to describe the dependencies of the profile parameters of the deposition paths during laser surfacing on the technological parameters of the process, mathematical modeling methods were used. The contours of the profiles of the surfacing section were obtained by analyzing images of microphotographs of thin sections of the cross sections of parts with applied surfacing. To approximate the curves of the section contours, methods of linear and nonlinear regression analysis were used. The dependence of the parameters of the profile contours of the surfacing section on the technological parameters of the spraying was represented by a two-factor parabolic regression equation. The search for optimal values of spraying technological parameters was carried out using the method of conditional optimization with linear approximation of the confidence region.Results. A nonlinear two-parameter function was selected from three options for approximating functions of the section profile of a surfacing track. Technological surfacing parameters were mapped onto a set of parameters of the approximating contour line. Optimal values of the technological parameters of surfacing were obtained using regression models of these mappings to provide the maximum value of the area of the surfacing contour under restrictions on the proportion of the sub-melting area to the total cross-sectional area. The approximating function of the cross-sectional profile of the surfacing track was used to calculate the optimal pitch of the tracks that provides the most even surface.Conclusions. The results of the study represent a technique for optimizing the technological parameters of laser surfacing with powder metals to ensure specified characteristics of the deposition track profile and select the track deposition step at which the most even deposition surface is achieved.
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issn 2782-3210
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publisher MIREA - Russian Technological University
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series Российский технологический журнал
spelling doaj-art-d07348fbecfa4065a65931e71bbcd1a82025-08-20T03:57:35ZrusMIREA - Russian Technological UniversityРоссийский технологический журнал2782-32102500-316X2025-04-0113213214210.32362/2500-316X-2025-13-2-132-142489Mathematical modeling of technological parameters of laser powder surfacing based on approximation of the deposition track profileMikhail E. Soloviev0Denis V. Malyshev1Sergey L. Baldaev2Lev Kh. Baldaev3Yaroslavl State Technical UniversityYaroslavl State Technical UniversityTechnological Systems of Protective CoatingsTechnological Systems of Protective CoatingsObjectives. Laser powder surfacing is a promising mechanical engineering technology used to effectively restore worn surfaces of parts and create special coatings with valuable properties. In the research and development of laser cladding technology, mathematical modeling methods are of crucial importance. The process of applying powder coating involves moving the spray head relative to the surface of the part to form a roller or spray path, whose sequential application results in the formation of coatings. The study sets out to evaluate methods of profile approximation and optimization of technological parameters in laser powder cladding processes.Methods. In order to describe the dependencies of the profile parameters of the deposition paths during laser surfacing on the technological parameters of the process, mathematical modeling methods were used. The contours of the profiles of the surfacing section were obtained by analyzing images of microphotographs of thin sections of the cross sections of parts with applied surfacing. To approximate the curves of the section contours, methods of linear and nonlinear regression analysis were used. The dependence of the parameters of the profile contours of the surfacing section on the technological parameters of the spraying was represented by a two-factor parabolic regression equation. The search for optimal values of spraying technological parameters was carried out using the method of conditional optimization with linear approximation of the confidence region.Results. A nonlinear two-parameter function was selected from three options for approximating functions of the section profile of a surfacing track. Technological surfacing parameters were mapped onto a set of parameters of the approximating contour line. Optimal values of the technological parameters of surfacing were obtained using regression models of these mappings to provide the maximum value of the area of the surfacing contour under restrictions on the proportion of the sub-melting area to the total cross-sectional area. The approximating function of the cross-sectional profile of the surfacing track was used to calculate the optimal pitch of the tracks that provides the most even surface.Conclusions. The results of the study represent a technique for optimizing the technological parameters of laser surfacing with powder metals to ensure specified characteristics of the deposition track profile and select the track deposition step at which the most even deposition surface is achieved.https://www.rtj-mirea.ru/jour/article/view/1132mathematical modelinglaser claddingsection contourapproximationregression analysisoptimization
spellingShingle Mikhail E. Soloviev
Denis V. Malyshev
Sergey L. Baldaev
Lev Kh. Baldaev
Mathematical modeling of technological parameters of laser powder surfacing based on approximation of the deposition track profile
Российский технологический журнал
mathematical modeling
laser cladding
section contour
approximation
regression analysis
optimization
title Mathematical modeling of technological parameters of laser powder surfacing based on approximation of the deposition track profile
title_full Mathematical modeling of technological parameters of laser powder surfacing based on approximation of the deposition track profile
title_fullStr Mathematical modeling of technological parameters of laser powder surfacing based on approximation of the deposition track profile
title_full_unstemmed Mathematical modeling of technological parameters of laser powder surfacing based on approximation of the deposition track profile
title_short Mathematical modeling of technological parameters of laser powder surfacing based on approximation of the deposition track profile
title_sort mathematical modeling of technological parameters of laser powder surfacing based on approximation of the deposition track profile
topic mathematical modeling
laser cladding
section contour
approximation
regression analysis
optimization
url https://www.rtj-mirea.ru/jour/article/view/1132
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AT denisvmalyshev mathematicalmodelingoftechnologicalparametersoflaserpowdersurfacingbasedonapproximationofthedepositiontrackprofile
AT sergeylbaldaev mathematicalmodelingoftechnologicalparametersoflaserpowdersurfacingbasedonapproximationofthedepositiontrackprofile
AT levkhbaldaev mathematicalmodelingoftechnologicalparametersoflaserpowdersurfacingbasedonapproximationofthedepositiontrackprofile