Cargando…

The Sclerometrical, Mechanical, and Wear Behavior of Mg-Y-Nd Magnesium Alloy after Deep Cryogenic Treatment Combined with Heat Treatment

The paper investigates changes in the structure, microhardness, and sclerometrical and tribological properties of a Mg-Y-Nd alloy under the influence of deep cryogenic treatment (DCT) in combination with heat treatment. The solution treatment was carried out at 545 °C for 8 h, aging was carried out...

Descripción completa

Detalles Bibliográficos
Autores principales: Barylski, Adrian, Aniołek, Krzysztof, Dercz, Grzegorz, Kupka, Marian, Matuła, Izabela, Kaptacz, Sławomir
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7961976/
https://www.ncbi.nlm.nih.gov/pubmed/33806686
http://dx.doi.org/10.3390/ma14051218
_version_ 1783665376875249664
author Barylski, Adrian
Aniołek, Krzysztof
Dercz, Grzegorz
Kupka, Marian
Matuła, Izabela
Kaptacz, Sławomir
author_facet Barylski, Adrian
Aniołek, Krzysztof
Dercz, Grzegorz
Kupka, Marian
Matuła, Izabela
Kaptacz, Sławomir
author_sort Barylski, Adrian
collection PubMed
description The paper investigates changes in the structure, microhardness, and sclerometrical and tribological properties of a Mg-Y-Nd alloy under the influence of deep cryogenic treatment (DCT) in combination with heat treatment. The solution treatment was carried out at 545 °C for 8 h, aging was carried out at 250 °C for 24 h, and the deep cryogenic treatment applied at different treatment stages was performed at −196 °C. Tests showed a significant increase in the number of β-phase precipitates identified as Mg(46.1)Y(6.25)RE(3.45) in the alloy subjected to DCT after solution treatment followed by aging. In addition, an approximately 20% reduction of the grain size was observed. Changes in the structure in the precipitation process strengthened the alloy and resulted in an increase of its hardness. At the same time, sclerometric tests allowed the micromechanism of wear and the coefficient of resistance to abrasive wear to be determined. Tribological tests showed a three-fold reduction in the volumetric wear and a considerable reduction of the friction coefficient, with the main mechanism observed during friction being abrasive wear. The most favorable properties of the alloy were obtained after precipitation hardening combined with DCT, resulting in a large increase in resistance to abrasive wear. Additionally, the formation of deep scratches in the examined material was reduced. The introduction of sub-zero treatment reduces the precipitation hardening time, and the results obtained indicate that the service life of the Mg-Y-Nd alloy can be extended.
format Online
Article
Text
id pubmed-7961976
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-79619762021-03-17 The Sclerometrical, Mechanical, and Wear Behavior of Mg-Y-Nd Magnesium Alloy after Deep Cryogenic Treatment Combined with Heat Treatment Barylski, Adrian Aniołek, Krzysztof Dercz, Grzegorz Kupka, Marian Matuła, Izabela Kaptacz, Sławomir Materials (Basel) Article The paper investigates changes in the structure, microhardness, and sclerometrical and tribological properties of a Mg-Y-Nd alloy under the influence of deep cryogenic treatment (DCT) in combination with heat treatment. The solution treatment was carried out at 545 °C for 8 h, aging was carried out at 250 °C for 24 h, and the deep cryogenic treatment applied at different treatment stages was performed at −196 °C. Tests showed a significant increase in the number of β-phase precipitates identified as Mg(46.1)Y(6.25)RE(3.45) in the alloy subjected to DCT after solution treatment followed by aging. In addition, an approximately 20% reduction of the grain size was observed. Changes in the structure in the precipitation process strengthened the alloy and resulted in an increase of its hardness. At the same time, sclerometric tests allowed the micromechanism of wear and the coefficient of resistance to abrasive wear to be determined. Tribological tests showed a three-fold reduction in the volumetric wear and a considerable reduction of the friction coefficient, with the main mechanism observed during friction being abrasive wear. The most favorable properties of the alloy were obtained after precipitation hardening combined with DCT, resulting in a large increase in resistance to abrasive wear. Additionally, the formation of deep scratches in the examined material was reduced. The introduction of sub-zero treatment reduces the precipitation hardening time, and the results obtained indicate that the service life of the Mg-Y-Nd alloy can be extended. MDPI 2021-03-04 /pmc/articles/PMC7961976/ /pubmed/33806686 http://dx.doi.org/10.3390/ma14051218 Text en © 2021 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Barylski, Adrian
Aniołek, Krzysztof
Dercz, Grzegorz
Kupka, Marian
Matuła, Izabela
Kaptacz, Sławomir
The Sclerometrical, Mechanical, and Wear Behavior of Mg-Y-Nd Magnesium Alloy after Deep Cryogenic Treatment Combined with Heat Treatment
title The Sclerometrical, Mechanical, and Wear Behavior of Mg-Y-Nd Magnesium Alloy after Deep Cryogenic Treatment Combined with Heat Treatment
title_full The Sclerometrical, Mechanical, and Wear Behavior of Mg-Y-Nd Magnesium Alloy after Deep Cryogenic Treatment Combined with Heat Treatment
title_fullStr The Sclerometrical, Mechanical, and Wear Behavior of Mg-Y-Nd Magnesium Alloy after Deep Cryogenic Treatment Combined with Heat Treatment
title_full_unstemmed The Sclerometrical, Mechanical, and Wear Behavior of Mg-Y-Nd Magnesium Alloy after Deep Cryogenic Treatment Combined with Heat Treatment
title_short The Sclerometrical, Mechanical, and Wear Behavior of Mg-Y-Nd Magnesium Alloy after Deep Cryogenic Treatment Combined with Heat Treatment
title_sort sclerometrical, mechanical, and wear behavior of mg-y-nd magnesium alloy after deep cryogenic treatment combined with heat treatment
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7961976/
https://www.ncbi.nlm.nih.gov/pubmed/33806686
http://dx.doi.org/10.3390/ma14051218
work_keys_str_mv AT barylskiadrian thesclerometricalmechanicalandwearbehaviorofmgyndmagnesiumalloyafterdeepcryogenictreatmentcombinedwithheattreatment
AT aniołekkrzysztof thesclerometricalmechanicalandwearbehaviorofmgyndmagnesiumalloyafterdeepcryogenictreatmentcombinedwithheattreatment
AT derczgrzegorz thesclerometricalmechanicalandwearbehaviorofmgyndmagnesiumalloyafterdeepcryogenictreatmentcombinedwithheattreatment
AT kupkamarian thesclerometricalmechanicalandwearbehaviorofmgyndmagnesiumalloyafterdeepcryogenictreatmentcombinedwithheattreatment
AT matułaizabela thesclerometricalmechanicalandwearbehaviorofmgyndmagnesiumalloyafterdeepcryogenictreatmentcombinedwithheattreatment
AT kaptaczsławomir thesclerometricalmechanicalandwearbehaviorofmgyndmagnesiumalloyafterdeepcryogenictreatmentcombinedwithheattreatment
AT barylskiadrian sclerometricalmechanicalandwearbehaviorofmgyndmagnesiumalloyafterdeepcryogenictreatmentcombinedwithheattreatment
AT aniołekkrzysztof sclerometricalmechanicalandwearbehaviorofmgyndmagnesiumalloyafterdeepcryogenictreatmentcombinedwithheattreatment
AT derczgrzegorz sclerometricalmechanicalandwearbehaviorofmgyndmagnesiumalloyafterdeepcryogenictreatmentcombinedwithheattreatment
AT kupkamarian sclerometricalmechanicalandwearbehaviorofmgyndmagnesiumalloyafterdeepcryogenictreatmentcombinedwithheattreatment
AT matułaizabela sclerometricalmechanicalandwearbehaviorofmgyndmagnesiumalloyafterdeepcryogenictreatmentcombinedwithheattreatment
AT kaptaczsławomir sclerometricalmechanicalandwearbehaviorofmgyndmagnesiumalloyafterdeepcryogenictreatmentcombinedwithheattreatment