Preparation and Properties of Mo Coating on H13 Steel by Electro Spark Deposition Process

H13 steel is often damaged by wear, erosion, and thermal fatigue. It is one of the essential methods to improve the service life of H13 steel by preparing a coating on it. Due to the advantages of high melting point, good wear, and corrosion resistance of Mo, Mo coating was fabricated on H13 steel b...

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Main Authors: Wenquan Wang, Ming Du, Xinge Zhang, Chengqun Luan, Yingtao Tian
Format: Article
Language:English
Published: MDPI AG 2021-07-01
Series:Materials
Subjects:
Online Access:https://www.mdpi.com/1996-1944/14/13/3700
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spelling doaj-efb09e21cdce4302946e81ddf43f000b2021-07-15T15:41:04ZengMDPI AGMaterials1996-19442021-07-01143700370010.3390/ma14133700Preparation and Properties of Mo Coating on H13 Steel by Electro Spark Deposition ProcessWenquan Wang0Ming Du1Xinge Zhang2Chengqun Luan3Yingtao Tian4Key Laboratory of Automobile Materials, School of Materials Science and Engineering, Jilin University, Changchun 130025, ChinaKey Laboratory of Automobile Materials, School of Materials Science and Engineering, Jilin University, Changchun 130025, ChinaKey Laboratory of Automobile Materials, School of Materials Science and Engineering, Jilin University, Changchun 130025, ChinaKey Laboratory of Automobile Materials, School of Materials Science and Engineering, Jilin University, Changchun 130025, ChinaDepartment of Engineering, Lancaster University, Bailring, Lancaster LA1 4YW, UKH13 steel is often damaged by wear, erosion, and thermal fatigue. It is one of the essential methods to improve the service life of H13 steel by preparing a coating on it. Due to the advantages of high melting point, good wear, and corrosion resistance of Mo, Mo coating was fabricated on H13 steel by electro spark deposition (ESD) process in this study. The influences of the depositing parameters (deposition power, discharge frequency, and specific deposition time) on the roughness of the coating, thickness, and properties were investigated in detail. The optimized depositing parameters were obtained by comparing roughness, thickness, and crack performance of the coating. The results show that the cross-section of the coating mainly consisted of strengthening zone and transition zone. Metallurgical bonding was formed between the coating and substrate. The Mo coating mainly consisted of Fe<sub>9.7</sub>Mo<sub>0.3</sub>, Fe-Cr, FeMo, and Fe<sub>2</sub>Mo cemented carbide phases, and an amorphous phase. The Mo coating had better microhardness, wear, and corrosion resistance than substrate, which could significantly improve the service life of the H13 steel.https://www.mdpi.com/1996-1944/14/13/3700electro spark deposition (ESD)Mo coatingH13 steelmicrohardnesswear resistancecorrosion resistance
collection DOAJ
language English
format Article
sources DOAJ
author Wenquan Wang
Ming Du
Xinge Zhang
Chengqun Luan
Yingtao Tian
spellingShingle Wenquan Wang
Ming Du
Xinge Zhang
Chengqun Luan
Yingtao Tian
Preparation and Properties of Mo Coating on H13 Steel by Electro Spark Deposition Process
Materials
electro spark deposition (ESD)
Mo coating
H13 steel
microhardness
wear resistance
corrosion resistance
author_facet Wenquan Wang
Ming Du
Xinge Zhang
Chengqun Luan
Yingtao Tian
author_sort Wenquan Wang
title Preparation and Properties of Mo Coating on H13 Steel by Electro Spark Deposition Process
title_short Preparation and Properties of Mo Coating on H13 Steel by Electro Spark Deposition Process
title_full Preparation and Properties of Mo Coating on H13 Steel by Electro Spark Deposition Process
title_fullStr Preparation and Properties of Mo Coating on H13 Steel by Electro Spark Deposition Process
title_full_unstemmed Preparation and Properties of Mo Coating on H13 Steel by Electro Spark Deposition Process
title_sort preparation and properties of mo coating on h13 steel by electro spark deposition process
publisher MDPI AG
series Materials
issn 1996-1944
publishDate 2021-07-01
description H13 steel is often damaged by wear, erosion, and thermal fatigue. It is one of the essential methods to improve the service life of H13 steel by preparing a coating on it. Due to the advantages of high melting point, good wear, and corrosion resistance of Mo, Mo coating was fabricated on H13 steel by electro spark deposition (ESD) process in this study. The influences of the depositing parameters (deposition power, discharge frequency, and specific deposition time) on the roughness of the coating, thickness, and properties were investigated in detail. The optimized depositing parameters were obtained by comparing roughness, thickness, and crack performance of the coating. The results show that the cross-section of the coating mainly consisted of strengthening zone and transition zone. Metallurgical bonding was formed between the coating and substrate. The Mo coating mainly consisted of Fe<sub>9.7</sub>Mo<sub>0.3</sub>, Fe-Cr, FeMo, and Fe<sub>2</sub>Mo cemented carbide phases, and an amorphous phase. The Mo coating had better microhardness, wear, and corrosion resistance than substrate, which could significantly improve the service life of the H13 steel.
topic electro spark deposition (ESD)
Mo coating
H13 steel
microhardness
wear resistance
corrosion resistance
url https://www.mdpi.com/1996-1944/14/13/3700
work_keys_str_mv AT wenquanwang preparationandpropertiesofmocoatingonh13steelbyelectrosparkdepositionprocess
AT mingdu preparationandpropertiesofmocoatingonh13steelbyelectrosparkdepositionprocess
AT xingezhang preparationandpropertiesofmocoatingonh13steelbyelectrosparkdepositionprocess
AT chengqunluan preparationandpropertiesofmocoatingonh13steelbyelectrosparkdepositionprocess
AT yingtaotian preparationandpropertiesofmocoatingonh13steelbyelectrosparkdepositionprocess
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