Growth of inter-metallic compound layers on CLAM steel by HDA and preparation of permeation barrier by oxidation

Hot-dip aluminizing (HDA) on China Low Activation Martensitic (CLAM) steel and followed by oxidation to obtain an Al2O3/FexAly layer covering was considered to be a promising method to resist the harsh environments in fusion reactors. In the present study, CLAM steel was coated in molten pure Al and...

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Main Authors: Chen, Jun, Li, Xianfen, Hua, Peng, Wang, Chunyan, Chen, Ke, Wu, Yucheng, Zhou, Wei
Other Authors: School of Mechanical and Aerospace Engineering
Format: Article
Language:English
Published: 2020
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Online Access:https://hdl.handle.net/10356/144865
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Institution: Nanyang Technological University
Language: English
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spelling sg-ntu-dr.10356-1448652020-12-01T02:11:44Z Growth of inter-metallic compound layers on CLAM steel by HDA and preparation of permeation barrier by oxidation Chen, Jun Li, Xianfen Hua, Peng Wang, Chunyan Chen, Ke Wu, Yucheng Zhou, Wei School of Mechanical and Aerospace Engineering Engineering::Materials CLAM Steel HDA Process Hot-dip aluminizing (HDA) on China Low Activation Martensitic (CLAM) steel and followed by oxidation to obtain an Al2O3/FexAly layer covering was considered to be a promising method to resist the harsh environments in fusion reactors. In the present study, CLAM steel was coated in molten pure Al and Al-0.3Ce (wt.%) melt. The growth behavior of the inter-metallic compound (IMC) layers after different immersion time and temperature was investigated and described. The IMC layer mainly consists of Fe2Al5 and FeAl3 after hot-dipping. And the addition of Ce in the molten pure Al could promote the growth of IMC layers, which provided the idea of obtaining a certain thickness of the IMC layer at a lower temperature. After two independent oxidation processes (normalized heat-treatment and 760 °C for 15 h) in air, the Fe2Al5 and FeAl3 of IMC layers had been transformed into ductile phases (FeAl2 and FeAl), and Al2O3 layers were detected on the coating surface. The oxidation of 760 °C for 15 h was considered to form a denser Al2O3 film. However, cracks and pores were observed in the IMC layer after oxidation due to the heat-treatment and cooling methods. 2020-12-01T02:11:44Z 2020-12-01T02:11:44Z 2017 Journal Article Chen, J., Li, X., Hua, P., Wang, C., Chen, K., Wu, Y., & Zhou, W. (2017). Growth of inter-metallic compound layers on CLAM steel by HDA and preparation of permeation barrier by oxidation. Fusion Engineering and Design, 125, 57-63. doi:10.1016/j.fusengdes.2017.10.029 0920-3796 https://hdl.handle.net/10356/144865 10.1016/j.fusengdes.2017.10.029 125 57 63 en Fusion Engineering and Design © 2017 Elsevier B.V. All rights reserved.
institution Nanyang Technological University
building NTU Library
continent Asia
country Singapore
Singapore
content_provider NTU Library
collection DR-NTU
language English
topic Engineering::Materials
CLAM Steel
HDA Process
spellingShingle Engineering::Materials
CLAM Steel
HDA Process
Chen, Jun
Li, Xianfen
Hua, Peng
Wang, Chunyan
Chen, Ke
Wu, Yucheng
Zhou, Wei
Growth of inter-metallic compound layers on CLAM steel by HDA and preparation of permeation barrier by oxidation
description Hot-dip aluminizing (HDA) on China Low Activation Martensitic (CLAM) steel and followed by oxidation to obtain an Al2O3/FexAly layer covering was considered to be a promising method to resist the harsh environments in fusion reactors. In the present study, CLAM steel was coated in molten pure Al and Al-0.3Ce (wt.%) melt. The growth behavior of the inter-metallic compound (IMC) layers after different immersion time and temperature was investigated and described. The IMC layer mainly consists of Fe2Al5 and FeAl3 after hot-dipping. And the addition of Ce in the molten pure Al could promote the growth of IMC layers, which provided the idea of obtaining a certain thickness of the IMC layer at a lower temperature. After two independent oxidation processes (normalized heat-treatment and 760 °C for 15 h) in air, the Fe2Al5 and FeAl3 of IMC layers had been transformed into ductile phases (FeAl2 and FeAl), and Al2O3 layers were detected on the coating surface. The oxidation of 760 °C for 15 h was considered to form a denser Al2O3 film. However, cracks and pores were observed in the IMC layer after oxidation due to the heat-treatment and cooling methods.
author2 School of Mechanical and Aerospace Engineering
author_facet School of Mechanical and Aerospace Engineering
Chen, Jun
Li, Xianfen
Hua, Peng
Wang, Chunyan
Chen, Ke
Wu, Yucheng
Zhou, Wei
format Article
author Chen, Jun
Li, Xianfen
Hua, Peng
Wang, Chunyan
Chen, Ke
Wu, Yucheng
Zhou, Wei
author_sort Chen, Jun
title Growth of inter-metallic compound layers on CLAM steel by HDA and preparation of permeation barrier by oxidation
title_short Growth of inter-metallic compound layers on CLAM steel by HDA and preparation of permeation barrier by oxidation
title_full Growth of inter-metallic compound layers on CLAM steel by HDA and preparation of permeation barrier by oxidation
title_fullStr Growth of inter-metallic compound layers on CLAM steel by HDA and preparation of permeation barrier by oxidation
title_full_unstemmed Growth of inter-metallic compound layers on CLAM steel by HDA and preparation of permeation barrier by oxidation
title_sort growth of inter-metallic compound layers on clam steel by hda and preparation of permeation barrier by oxidation
publishDate 2020
url https://hdl.handle.net/10356/144865
_version_ 1686109413217140736