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Enhancing Mechanical and Corrosion Properties of AISI 420 with Titanium-Nitride Reinforcement through High-Power-Density Selective Laser Melting Using Two-Stage Mixed TiN/AISI 420 Powder

This study investigates the effect of laser volume energy density (VED) on the properties of AISI 420 stainless steel and TiN/AISI 420 composite manufactured by selective laser melting (SLM). The composite contained 1 wt.% TiN and the average diameters of AISI 420 and TiN powders were 45 µm and 1 µm...

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Autores principales: Tran, Duc, Lin, Chih-Kuang, Tung, Pi-Cheng, Ho, Jeng-Rong, Jang, Jason Shian-Ching, Lin, Jing-Chie, Tsao, I-Yu, Le, Thanh-Long
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10254154/
https://www.ncbi.nlm.nih.gov/pubmed/37297333
http://dx.doi.org/10.3390/ma16114198
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author Tran, Duc
Lin, Chih-Kuang
Tung, Pi-Cheng
Ho, Jeng-Rong
Jang, Jason Shian-Ching
Lin, Jing-Chie
Tsao, I-Yu
Le, Thanh-Long
author_facet Tran, Duc
Lin, Chih-Kuang
Tung, Pi-Cheng
Ho, Jeng-Rong
Jang, Jason Shian-Ching
Lin, Jing-Chie
Tsao, I-Yu
Le, Thanh-Long
author_sort Tran, Duc
collection PubMed
description This study investigates the effect of laser volume energy density (VED) on the properties of AISI 420 stainless steel and TiN/AISI 420 composite manufactured by selective laser melting (SLM). The composite contained 1 wt.% TiN and the average diameters of AISI 420 and TiN powders were 45 µm and 1 µm, respectively. The powder for SLMing the TiN/AISI 420 composite was prepared using a novel two-stage mixing scheme. The morphology, mechanical, and corrosion properties of the specimens were analyzed, and their correlations with microstructures were investigated. The results showed that the surface roughness of both SLM samples decreases with increasing VED, while relative densities greater than 99% were achieved at VEDs higher than 160 J/mm(3). The SLM AISI 420 specimen fabricated at a VED of 205 J/mm(3) exhibited the highest density of 7.7 g/cm(3), tensile strength (UTS) of 1270 MPa, and elongation of 3.86%. The SLM TiN/AISI 420 specimen at a VED of 285 J/mm(3) had a density of 7.67 g/cm(3), UTS of 1482 MPa, and elongation of 2.72%. The microstructure of the SLM TiN/AISI 420 composite displayed a ring-like micro-grain structure consisting of retained austenite on the grain boundary and martensite in the grain. The TiN particles strengthened the mechanical properties of the composite by accumulating along the grain boundary. The mean hardnesses of the SLM AISI 420 and TiN/AISI 420 specimens were 635 and 735 HV, respectively, which exceeded previously reported results. The SLM TiN/AISI 420 composite exhibited excellent corrosion resistance in both 3.5 wt.% NaCl and 6 wt.% FeCl(3) solutions, with a resulting corrosion rate as low as 11 µm/year.
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spelling pubmed-102541542023-06-10 Enhancing Mechanical and Corrosion Properties of AISI 420 with Titanium-Nitride Reinforcement through High-Power-Density Selective Laser Melting Using Two-Stage Mixed TiN/AISI 420 Powder Tran, Duc Lin, Chih-Kuang Tung, Pi-Cheng Ho, Jeng-Rong Jang, Jason Shian-Ching Lin, Jing-Chie Tsao, I-Yu Le, Thanh-Long Materials (Basel) Article This study investigates the effect of laser volume energy density (VED) on the properties of AISI 420 stainless steel and TiN/AISI 420 composite manufactured by selective laser melting (SLM). The composite contained 1 wt.% TiN and the average diameters of AISI 420 and TiN powders were 45 µm and 1 µm, respectively. The powder for SLMing the TiN/AISI 420 composite was prepared using a novel two-stage mixing scheme. The morphology, mechanical, and corrosion properties of the specimens were analyzed, and their correlations with microstructures were investigated. The results showed that the surface roughness of both SLM samples decreases with increasing VED, while relative densities greater than 99% were achieved at VEDs higher than 160 J/mm(3). The SLM AISI 420 specimen fabricated at a VED of 205 J/mm(3) exhibited the highest density of 7.7 g/cm(3), tensile strength (UTS) of 1270 MPa, and elongation of 3.86%. The SLM TiN/AISI 420 specimen at a VED of 285 J/mm(3) had a density of 7.67 g/cm(3), UTS of 1482 MPa, and elongation of 2.72%. The microstructure of the SLM TiN/AISI 420 composite displayed a ring-like micro-grain structure consisting of retained austenite on the grain boundary and martensite in the grain. The TiN particles strengthened the mechanical properties of the composite by accumulating along the grain boundary. The mean hardnesses of the SLM AISI 420 and TiN/AISI 420 specimens were 635 and 735 HV, respectively, which exceeded previously reported results. The SLM TiN/AISI 420 composite exhibited excellent corrosion resistance in both 3.5 wt.% NaCl and 6 wt.% FeCl(3) solutions, with a resulting corrosion rate as low as 11 µm/year. MDPI 2023-06-05 /pmc/articles/PMC10254154/ /pubmed/37297333 http://dx.doi.org/10.3390/ma16114198 Text en © 2023 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
Tran, Duc
Lin, Chih-Kuang
Tung, Pi-Cheng
Ho, Jeng-Rong
Jang, Jason Shian-Ching
Lin, Jing-Chie
Tsao, I-Yu
Le, Thanh-Long
Enhancing Mechanical and Corrosion Properties of AISI 420 with Titanium-Nitride Reinforcement through High-Power-Density Selective Laser Melting Using Two-Stage Mixed TiN/AISI 420 Powder
title Enhancing Mechanical and Corrosion Properties of AISI 420 with Titanium-Nitride Reinforcement through High-Power-Density Selective Laser Melting Using Two-Stage Mixed TiN/AISI 420 Powder
title_full Enhancing Mechanical and Corrosion Properties of AISI 420 with Titanium-Nitride Reinforcement through High-Power-Density Selective Laser Melting Using Two-Stage Mixed TiN/AISI 420 Powder
title_fullStr Enhancing Mechanical and Corrosion Properties of AISI 420 with Titanium-Nitride Reinforcement through High-Power-Density Selective Laser Melting Using Two-Stage Mixed TiN/AISI 420 Powder
title_full_unstemmed Enhancing Mechanical and Corrosion Properties of AISI 420 with Titanium-Nitride Reinforcement through High-Power-Density Selective Laser Melting Using Two-Stage Mixed TiN/AISI 420 Powder
title_short Enhancing Mechanical and Corrosion Properties of AISI 420 with Titanium-Nitride Reinforcement through High-Power-Density Selective Laser Melting Using Two-Stage Mixed TiN/AISI 420 Powder
title_sort enhancing mechanical and corrosion properties of aisi 420 with titanium-nitride reinforcement through high-power-density selective laser melting using two-stage mixed tin/aisi 420 powder
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10254154/
https://www.ncbi.nlm.nih.gov/pubmed/37297333
http://dx.doi.org/10.3390/ma16114198
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