The Effect of Electroplated Ni Nanocoating on Fatigue Life of 1020 AISI Low Carbon Steel

Low carbon steel 1020 AISI has been selected in this study to show the influence of Ni Nano coating on fatigue life of this metal under fatigue loading at room temperature with a stress ratio R= -1. The prepared specimens are exposed to electroplated process using Nano nickel with 40 nm at diverse...

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Main Authors: Israa Akram Hantoosh, Aliaksandr Skaskevich
Format: Article
Language:English
Published: middle technical university 2023-09-01
Series:Journal of Techniques
Subjects:
Online Access:https://journal.mtu.edu.iq/index.php/MTU/article/view/1608
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author Israa Akram Hantoosh
Aliaksandr Skaskevich
author_facet Israa Akram Hantoosh
Aliaksandr Skaskevich
author_sort Israa Akram Hantoosh
collection DOAJ
description Low carbon steel 1020 AISI has been selected in this study to show the influence of Ni Nano coating on fatigue life of this metal under fatigue loading at room temperature with a stress ratio R= -1. The prepared specimens are exposed to electroplated process using Nano nickel with 40 nm at diverse situations to improve the fatigue limit of metal. (SCHENCK PUNN) rotating bending fatigue test, hardness, tensile strength, microstructure, surface roughness and SEM, XRD diffraction tests have been completed for base metal and electroplating treated metal. The experimental results indicate that Ni nano coating by electroplating improve the fatigue life at due to steel substrates are typically polished mechanically and chemically before deposition to enhance the fatigue properties and nano nickel have fair distribution on steel surface.
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record_format Article
series Journal of Techniques
spelling doaj-art-a48873e30b3d4cd9862c256bf7df78052025-01-19T10:59:04Zengmiddle technical universityJournal of Techniques1818-653X2708-83832023-09-015310.51173/jt.v5i3.1608The Effect of Electroplated Ni Nanocoating on Fatigue Life of 1020 AISI Low Carbon SteelIsraa Akram Hantoosh0Aliaksandr Skaskevich1Yanka Kupala State University Of Grodno, Grodno, BelarusYanka Kupala State University Of Grodno, Grodno, Belarus Low carbon steel 1020 AISI has been selected in this study to show the influence of Ni Nano coating on fatigue life of this metal under fatigue loading at room temperature with a stress ratio R= -1. The prepared specimens are exposed to electroplated process using Nano nickel with 40 nm at diverse situations to improve the fatigue limit of metal. (SCHENCK PUNN) rotating bending fatigue test, hardness, tensile strength, microstructure, surface roughness and SEM, XRD diffraction tests have been completed for base metal and electroplating treated metal. The experimental results indicate that Ni nano coating by electroplating improve the fatigue life at due to steel substrates are typically polished mechanically and chemically before deposition to enhance the fatigue properties and nano nickel have fair distribution on steel surface. https://journal.mtu.edu.iq/index.php/MTU/article/view/1608ElectroplatingLow Carbon Steel 1020 AISIFatigue Life Fatigue StrainNano Coating
spellingShingle Israa Akram Hantoosh
Aliaksandr Skaskevich
The Effect of Electroplated Ni Nanocoating on Fatigue Life of 1020 AISI Low Carbon Steel
Journal of Techniques
Electroplating
Low Carbon Steel 1020 AISI
Fatigue Life
Fatigue Strain
Nano Coating
title The Effect of Electroplated Ni Nanocoating on Fatigue Life of 1020 AISI Low Carbon Steel
title_full The Effect of Electroplated Ni Nanocoating on Fatigue Life of 1020 AISI Low Carbon Steel
title_fullStr The Effect of Electroplated Ni Nanocoating on Fatigue Life of 1020 AISI Low Carbon Steel
title_full_unstemmed The Effect of Electroplated Ni Nanocoating on Fatigue Life of 1020 AISI Low Carbon Steel
title_short The Effect of Electroplated Ni Nanocoating on Fatigue Life of 1020 AISI Low Carbon Steel
title_sort effect of electroplated ni nanocoating on fatigue life of 1020 aisi low carbon steel
topic Electroplating
Low Carbon Steel 1020 AISI
Fatigue Life
Fatigue Strain
Nano Coating
url https://journal.mtu.edu.iq/index.php/MTU/article/view/1608
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