Investigation of Thermostressed State of Coating Formation at Electric Contact Surfacing of “Shaft” Type Parts

The forming of coating at electric contact surfacing is considered. The mathematical model of the coating formation is developed. The method of numerical recurrent solution of the finite-difference form of static equilibrium conditions of the selected elementary volume of coating is used. This model...

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Main Authors: Olena V. Berezshnaya, Eduard P. Gribkov, Valeriy D. Kuznetsov
Format: Article
Language:English
Published: Hindawi Limited 2016-01-01
Series:Advances in Materials Science and Engineering
Online Access:http://dx.doi.org/10.1155/2016/6597317
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spelling doaj-6117ff3902e741aea167fdf526a6e0232020-11-24T21:23:47ZengHindawi LimitedAdvances in Materials Science and Engineering1687-84341687-84422016-01-01201610.1155/2016/65973176597317Investigation of Thermostressed State of Coating Formation at Electric Contact Surfacing of “Shaft” Type PartsOlena V. Berezshnaya0Eduard P. Gribkov1Valeriy D. Kuznetsov2Department of Surface Engineering, National Technical University of Ukraine “Kyiv Polytechnic Institute” (NTUU “KPI”), Prospect Peremohy 37, Kyiv 03056, UkraineAutomated Metal Forming Process and Machinery Department, Donbass State Engineering Academy, Shkadinova 72, Donetsk Region, Kramatorsk 84313, UkraineDepartment of Surface Engineering, National Technical University of Ukraine “Kyiv Polytechnic Institute” (NTUU “KPI”), Prospect Peremohy 37, Kyiv 03056, UkraineThe forming of coating at electric contact surfacing is considered. The mathematical model of the coating formation is developed. The method of numerical recurrent solution of the finite-difference form of static equilibrium conditions of the selected elementary volume of coating is used. This model considers distribution of thermal properties and geometric parameters along the thermal deformation zone during the process of electric contact surfacing by compact material. It is found that the change of value of speed asymmetry factor leads to increasing of the friction coefficient in zone of surfacing. This provides the forming of the coating of higher quality. The limitation of the technological capabilities of equipment for electric contact surfacing is related to the size of recoverable parts and application of high electromechanical powers. The regulation of the speed asymmetry factor allows for expanding the technological capabilities of equipment for electric contact surfacing. The nomograms for determination of the stress on the roller electrode and the finite thickness of the coating as the function of the initial thickness of the compact material and the deformation degree are shown.http://dx.doi.org/10.1155/2016/6597317
collection DOAJ
language English
format Article
sources DOAJ
author Olena V. Berezshnaya
Eduard P. Gribkov
Valeriy D. Kuznetsov
spellingShingle Olena V. Berezshnaya
Eduard P. Gribkov
Valeriy D. Kuznetsov
Investigation of Thermostressed State of Coating Formation at Electric Contact Surfacing of “Shaft” Type Parts
Advances in Materials Science and Engineering
author_facet Olena V. Berezshnaya
Eduard P. Gribkov
Valeriy D. Kuznetsov
author_sort Olena V. Berezshnaya
title Investigation of Thermostressed State of Coating Formation at Electric Contact Surfacing of “Shaft” Type Parts
title_short Investigation of Thermostressed State of Coating Formation at Electric Contact Surfacing of “Shaft” Type Parts
title_full Investigation of Thermostressed State of Coating Formation at Electric Contact Surfacing of “Shaft” Type Parts
title_fullStr Investigation of Thermostressed State of Coating Formation at Electric Contact Surfacing of “Shaft” Type Parts
title_full_unstemmed Investigation of Thermostressed State of Coating Formation at Electric Contact Surfacing of “Shaft” Type Parts
title_sort investigation of thermostressed state of coating formation at electric contact surfacing of “shaft” type parts
publisher Hindawi Limited
series Advances in Materials Science and Engineering
issn 1687-8434
1687-8442
publishDate 2016-01-01
description The forming of coating at electric contact surfacing is considered. The mathematical model of the coating formation is developed. The method of numerical recurrent solution of the finite-difference form of static equilibrium conditions of the selected elementary volume of coating is used. This model considers distribution of thermal properties and geometric parameters along the thermal deformation zone during the process of electric contact surfacing by compact material. It is found that the change of value of speed asymmetry factor leads to increasing of the friction coefficient in zone of surfacing. This provides the forming of the coating of higher quality. The limitation of the technological capabilities of equipment for electric contact surfacing is related to the size of recoverable parts and application of high electromechanical powers. The regulation of the speed asymmetry factor allows for expanding the technological capabilities of equipment for electric contact surfacing. The nomograms for determination of the stress on the roller electrode and the finite thickness of the coating as the function of the initial thickness of the compact material and the deformation degree are shown.
url http://dx.doi.org/10.1155/2016/6597317
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