Fabrication of AlCoCrFeNi High-Entropy Alloy Coating on an AISI 304 Substrate via a CoFe<sub>2</sub>Ni Intermediate Layer
Through laser metal deposition, attempts were made to coat AlCoCrFeNi, a high-entropy alloy (HEA), on an AISI 304 stainless steel substrate to integrate their properties. However, the direct coating of the AlCoCrFeNi HEA on the AISI 304 substrate was found to be unviable due to cracks at the interfa...
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doaj-aa2f0a16cf374098845eb987d9cf645e2020-11-24T22:53:41ZengMDPI AGEntropy1099-43002018-12-01211210.3390/e21010002e21010002Fabrication of AlCoCrFeNi High-Entropy Alloy Coating on an AISI 304 Substrate via a CoFe<sub>2</sub>Ni Intermediate LayerWenyuan Cui0Sreekar Karnati1Xinchang Zhang2Elizabeth Burns3Frank Liou4Department of Mechanical and Aerospace Engineering, Missouri University of Science and Technology, Rolla, MO 65409, USADepartment of Mechanical and Aerospace Engineering, Missouri University of Science and Technology, Rolla, MO 65409, USADepartment of Mechanical and Aerospace Engineering, Missouri University of Science and Technology, Rolla, MO 65409, USADepartment of Metallurgical Engineering, Missouri University of Science and Technology, Rolla, MO 65409, USADepartment of Mechanical and Aerospace Engineering, Missouri University of Science and Technology, Rolla, MO 65409, USAThrough laser metal deposition, attempts were made to coat AlCoCrFeNi, a high-entropy alloy (HEA), on an AISI 304 stainless steel substrate to integrate their properties. However, the direct coating of the AlCoCrFeNi HEA on the AISI 304 substrate was found to be unviable due to cracks at the interface between these two materials. The difference in compositional change was suspected to be the source of the cracks. Therefore, a new transition route was performed by coating an intermediate layer of CoFe<sub>2</sub>Ni on the AISI 304 substrate. Investigations into the microstructure, phase composition, elemental composition and Vickers hardness were carried out in this study. Consistent metallurgical bonding was observed along both of the interfaces. It was found that the AlCoCrFeNi alloy solidified into a dendritic microstructure. The X-ray diffraction pattern revealed a transition of the crystal structure of the AISI 304 substrate to the AlCoCrFeNi HEA. An intermediate step in hardness was observed between the AISI 304 substrate and the AlCoCrFeNi HEA. The AlCoCrFeNi alloy fabricated was found to have an average hardness of 418 HV, while the CoFe<sub>2</sub>Ni intermediate layer had an average hardness of 275 HV.https://www.mdpi.com/1099-4300/21/1/2high-entropy alloylaser metal depositionelemental powdergraded material |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Wenyuan Cui Sreekar Karnati Xinchang Zhang Elizabeth Burns Frank Liou |
spellingShingle |
Wenyuan Cui Sreekar Karnati Xinchang Zhang Elizabeth Burns Frank Liou Fabrication of AlCoCrFeNi High-Entropy Alloy Coating on an AISI 304 Substrate via a CoFe<sub>2</sub>Ni Intermediate Layer Entropy high-entropy alloy laser metal deposition elemental powder graded material |
author_facet |
Wenyuan Cui Sreekar Karnati Xinchang Zhang Elizabeth Burns Frank Liou |
author_sort |
Wenyuan Cui |
title |
Fabrication of AlCoCrFeNi High-Entropy Alloy Coating on an AISI 304 Substrate via a CoFe<sub>2</sub>Ni Intermediate Layer |
title_short |
Fabrication of AlCoCrFeNi High-Entropy Alloy Coating on an AISI 304 Substrate via a CoFe<sub>2</sub>Ni Intermediate Layer |
title_full |
Fabrication of AlCoCrFeNi High-Entropy Alloy Coating on an AISI 304 Substrate via a CoFe<sub>2</sub>Ni Intermediate Layer |
title_fullStr |
Fabrication of AlCoCrFeNi High-Entropy Alloy Coating on an AISI 304 Substrate via a CoFe<sub>2</sub>Ni Intermediate Layer |
title_full_unstemmed |
Fabrication of AlCoCrFeNi High-Entropy Alloy Coating on an AISI 304 Substrate via a CoFe<sub>2</sub>Ni Intermediate Layer |
title_sort |
fabrication of alcocrfeni high-entropy alloy coating on an aisi 304 substrate via a cofe<sub>2</sub>ni intermediate layer |
publisher |
MDPI AG |
series |
Entropy |
issn |
1099-4300 |
publishDate |
2018-12-01 |
description |
Through laser metal deposition, attempts were made to coat AlCoCrFeNi, a high-entropy alloy (HEA), on an AISI 304 stainless steel substrate to integrate their properties. However, the direct coating of the AlCoCrFeNi HEA on the AISI 304 substrate was found to be unviable due to cracks at the interface between these two materials. The difference in compositional change was suspected to be the source of the cracks. Therefore, a new transition route was performed by coating an intermediate layer of CoFe<sub>2</sub>Ni on the AISI 304 substrate. Investigations into the microstructure, phase composition, elemental composition and Vickers hardness were carried out in this study. Consistent metallurgical bonding was observed along both of the interfaces. It was found that the AlCoCrFeNi alloy solidified into a dendritic microstructure. The X-ray diffraction pattern revealed a transition of the crystal structure of the AISI 304 substrate to the AlCoCrFeNi HEA. An intermediate step in hardness was observed between the AISI 304 substrate and the AlCoCrFeNi HEA. The AlCoCrFeNi alloy fabricated was found to have an average hardness of 418 HV, while the CoFe<sub>2</sub>Ni intermediate layer had an average hardness of 275 HV. |
topic |
high-entropy alloy laser metal deposition elemental powder graded material |
url |
https://www.mdpi.com/1099-4300/21/1/2 |
work_keys_str_mv |
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