Cargando…

Preparation of B(4)C(p)/Al Composites via Selective Laser Melting and Their Tribological Properties

B(4)C-particle-reinforced Al (B(4)C(p)/Al) composites are widely used in various areas, e.g., armors, electronic packaging and fuel storage, owing to their several outstanding properties including high specific rigidity, excellent wear resistance and light weight. Selective laser melting (SLM) is fa...

Descripción completa

Detalles Bibliográficos
Autores principales: Yang, Guodong, Zhang, Jialian, Xie, Houbo, Li, Faliang, Huang, Zhong, Yuan, Gaoqian, Zhang, Jingzhe, Jia, Quanli, Zhang, Haijun, Yeprem, Hasibe Aygul, Zhang, Shaowei
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9738589/
https://www.ncbi.nlm.nih.gov/pubmed/36499835
http://dx.doi.org/10.3390/ma15238340
_version_ 1784847583438438400
author Yang, Guodong
Zhang, Jialian
Xie, Houbo
Li, Faliang
Huang, Zhong
Yuan, Gaoqian
Zhang, Jingzhe
Jia, Quanli
Zhang, Haijun
Yeprem, Hasibe Aygul
Zhang, Shaowei
author_facet Yang, Guodong
Zhang, Jialian
Xie, Houbo
Li, Faliang
Huang, Zhong
Yuan, Gaoqian
Zhang, Jingzhe
Jia, Quanli
Zhang, Haijun
Yeprem, Hasibe Aygul
Zhang, Shaowei
author_sort Yang, Guodong
collection PubMed
description B(4)C-particle-reinforced Al (B(4)C(p)/Al) composites are widely used in various areas, e.g., armors, electronic packaging and fuel storage, owing to their several outstanding properties including high specific rigidity, excellent wear resistance and light weight. Selective laser melting (SLM) is favored in manufacturing complex components because of its high raw material utilization rate and high efficiency. In this work, a B(4)C(p)/Al composite was successfully synthesized by SLM, and the effects of one of the most important parameters, scanning speed (100–700 mm/s), on the phase composition, density, microhardness and tribological properties of the samples were investigated. The microhardness, relative density and dry-sliding wear resistance of as-prepared B(4)C(p)/Al composites were improved with the decrease in scanning speed, and the sample fabricated at a scanning speed of 100 mm/s exhibited a relative density as high as about 97.1%, and a maximum microhardness of ~180 HV(0.1) (approximately six times more than that of the SLM-formed pure Al sample, 31 HV(0.1)), a minimum wear rate of 4.2 × 10(−5) mm(3)·N(−1)·m(−1) and a corresponding friction coefficient of 0.41. In addition, abrasive wear, adhesive wear and oxidation wear were found to be behind the overall wear behavior of as-prepared B(4)C(p)/Al composites.
format Online
Article
Text
id pubmed-9738589
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-97385892022-12-11 Preparation of B(4)C(p)/Al Composites via Selective Laser Melting and Their Tribological Properties Yang, Guodong Zhang, Jialian Xie, Houbo Li, Faliang Huang, Zhong Yuan, Gaoqian Zhang, Jingzhe Jia, Quanli Zhang, Haijun Yeprem, Hasibe Aygul Zhang, Shaowei Materials (Basel) Article B(4)C-particle-reinforced Al (B(4)C(p)/Al) composites are widely used in various areas, e.g., armors, electronic packaging and fuel storage, owing to their several outstanding properties including high specific rigidity, excellent wear resistance and light weight. Selective laser melting (SLM) is favored in manufacturing complex components because of its high raw material utilization rate and high efficiency. In this work, a B(4)C(p)/Al composite was successfully synthesized by SLM, and the effects of one of the most important parameters, scanning speed (100–700 mm/s), on the phase composition, density, microhardness and tribological properties of the samples were investigated. The microhardness, relative density and dry-sliding wear resistance of as-prepared B(4)C(p)/Al composites were improved with the decrease in scanning speed, and the sample fabricated at a scanning speed of 100 mm/s exhibited a relative density as high as about 97.1%, and a maximum microhardness of ~180 HV(0.1) (approximately six times more than that of the SLM-formed pure Al sample, 31 HV(0.1)), a minimum wear rate of 4.2 × 10(−5) mm(3)·N(−1)·m(−1) and a corresponding friction coefficient of 0.41. In addition, abrasive wear, adhesive wear and oxidation wear were found to be behind the overall wear behavior of as-prepared B(4)C(p)/Al composites. MDPI 2022-11-23 /pmc/articles/PMC9738589/ /pubmed/36499835 http://dx.doi.org/10.3390/ma15238340 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/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 (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Yang, Guodong
Zhang, Jialian
Xie, Houbo
Li, Faliang
Huang, Zhong
Yuan, Gaoqian
Zhang, Jingzhe
Jia, Quanli
Zhang, Haijun
Yeprem, Hasibe Aygul
Zhang, Shaowei
Preparation of B(4)C(p)/Al Composites via Selective Laser Melting and Their Tribological Properties
title Preparation of B(4)C(p)/Al Composites via Selective Laser Melting and Their Tribological Properties
title_full Preparation of B(4)C(p)/Al Composites via Selective Laser Melting and Their Tribological Properties
title_fullStr Preparation of B(4)C(p)/Al Composites via Selective Laser Melting and Their Tribological Properties
title_full_unstemmed Preparation of B(4)C(p)/Al Composites via Selective Laser Melting and Their Tribological Properties
title_short Preparation of B(4)C(p)/Al Composites via Selective Laser Melting and Their Tribological Properties
title_sort preparation of b(4)c(p)/al composites via selective laser melting and their tribological properties
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9738589/
https://www.ncbi.nlm.nih.gov/pubmed/36499835
http://dx.doi.org/10.3390/ma15238340
work_keys_str_mv AT yangguodong preparationofb4cpalcompositesviaselectivelasermeltingandtheirtribologicalproperties
AT zhangjialian preparationofb4cpalcompositesviaselectivelasermeltingandtheirtribologicalproperties
AT xiehoubo preparationofb4cpalcompositesviaselectivelasermeltingandtheirtribologicalproperties
AT lifaliang preparationofb4cpalcompositesviaselectivelasermeltingandtheirtribologicalproperties
AT huangzhong preparationofb4cpalcompositesviaselectivelasermeltingandtheirtribologicalproperties
AT yuangaoqian preparationofb4cpalcompositesviaselectivelasermeltingandtheirtribologicalproperties
AT zhangjingzhe preparationofb4cpalcompositesviaselectivelasermeltingandtheirtribologicalproperties
AT jiaquanli preparationofb4cpalcompositesviaselectivelasermeltingandtheirtribologicalproperties
AT zhanghaijun preparationofb4cpalcompositesviaselectivelasermeltingandtheirtribologicalproperties
AT yepremhasibeaygul preparationofb4cpalcompositesviaselectivelasermeltingandtheirtribologicalproperties
AT zhangshaowei preparationofb4cpalcompositesviaselectivelasermeltingandtheirtribologicalproperties