The influence of glow-discharge nitriding on the properties of thermally sprayed steel coatings

Hybrid technologies are one of the directions of materials engineering development. They contribute to the subject of research on improving the performance of thermally sprayed steel coatings by thermo-chemical treatment. The paper presents the test results of arc spraying stainless steel coatings a...

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Main Authors: Tomasz Babul, Anna Olbrycht, Szymon Pawlik, Janusz Trojanowski
Format: Article
Language:English
Published: Publishing Agency - Welding Technology Review 2018-09-01
Series:Przegląd Spawalnictwa
Subjects:
Online Access:http://www.pspaw.pl/index.php/pspaw/article/view/947
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author Tomasz Babul
Anna Olbrycht
Szymon Pawlik
Janusz Trojanowski
author_facet Tomasz Babul
Anna Olbrycht
Szymon Pawlik
Janusz Trojanowski
author_sort Tomasz Babul
collection DOAJ
description Hybrid technologies are one of the directions of materials engineering development. They contribute to the subject of research on improving the performance of thermally sprayed steel coatings by thermo-chemical treatment. The paper presents the test results of arc spraying stainless steel coatings and then glow-discharge nitrided. The glow-discharge nitriding was performed with the following parameters: at 450 °C for 6 hours and at 530 °C for 4 hours. The results of the following tests are described and presented: metallographic (SEM), qualitative and quantitative analysis point EDS, measurement of hardness HV, hardness distribution, measurement of roughness parameters (Ra, Rz), wear resistance by the Amsler method. The results showed that the glow-discharge nitriding increases the hardness and the frictional wear resistance of thermal sprayed stainless steel X46Cr13 and X2CrNi18-9 coatings. The hybrid technology, combining thermal spraying of martensitic stainless steel X46Cr13 and glow-discharge nitriding at 530 °C for 4 hours, provides formation of a coating with the highest hardness and wear resistance of all the tested coatings. This coating can be applied to the regeneration of machine parts, which are required to have particularly high useful properties.
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spelling doaj.art-025f61aa9c344672bf7d67a5165d56da2022-12-22T03:09:31ZengPublishing Agency - Welding Technology ReviewPrzegląd Spawalnictwa0033-23642449-79592018-09-0190910.26628/wtr.v90i9.947947The influence of glow-discharge nitriding on the properties of thermally sprayed steel coatingsTomasz Babul0Anna Olbrycht1Szymon Pawlik2Janusz Trojanowski3Institute of Precision Mechanics, WarsawInstitute of Precision Mechanics, WarsawInstitute of Precision Mechanics, WarsawInstitute of Precision Mechanics, WarsawHybrid technologies are one of the directions of materials engineering development. They contribute to the subject of research on improving the performance of thermally sprayed steel coatings by thermo-chemical treatment. The paper presents the test results of arc spraying stainless steel coatings and then glow-discharge nitrided. The glow-discharge nitriding was performed with the following parameters: at 450 °C for 6 hours and at 530 °C for 4 hours. The results of the following tests are described and presented: metallographic (SEM), qualitative and quantitative analysis point EDS, measurement of hardness HV, hardness distribution, measurement of roughness parameters (Ra, Rz), wear resistance by the Amsler method. The results showed that the glow-discharge nitriding increases the hardness and the frictional wear resistance of thermal sprayed stainless steel X46Cr13 and X2CrNi18-9 coatings. The hybrid technology, combining thermal spraying of martensitic stainless steel X46Cr13 and glow-discharge nitriding at 530 °C for 4 hours, provides formation of a coating with the highest hardness and wear resistance of all the tested coatings. This coating can be applied to the regeneration of machine parts, which are required to have particularly high useful properties.http://www.pspaw.pl/index.php/pspaw/article/view/947thermal sprayingarc sprayingglow-discharge nitridingcoating X46Cr13coating X2CrNi18-9Vickers hardness
spellingShingle Tomasz Babul
Anna Olbrycht
Szymon Pawlik
Janusz Trojanowski
The influence of glow-discharge nitriding on the properties of thermally sprayed steel coatings
Przegląd Spawalnictwa
thermal spraying
arc spraying
glow-discharge nitriding
coating X46Cr13
coating X2CrNi18-9
Vickers hardness
title The influence of glow-discharge nitriding on the properties of thermally sprayed steel coatings
title_full The influence of glow-discharge nitriding on the properties of thermally sprayed steel coatings
title_fullStr The influence of glow-discharge nitriding on the properties of thermally sprayed steel coatings
title_full_unstemmed The influence of glow-discharge nitriding on the properties of thermally sprayed steel coatings
title_short The influence of glow-discharge nitriding on the properties of thermally sprayed steel coatings
title_sort influence of glow discharge nitriding on the properties of thermally sprayed steel coatings
topic thermal spraying
arc spraying
glow-discharge nitriding
coating X46Cr13
coating X2CrNi18-9
Vickers hardness
url http://www.pspaw.pl/index.php/pspaw/article/view/947
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