Nano-indentation and indentation size effect on different phases in Lamellar structure high entropy alloy

In the present work, effects of phase constitution on the tribological properties of FeCoNi(Bx Al1-x)0.1Si0.1 high-entropy alloy (HEA), where x = 0, 0,4, 0.7 and 1.0 are denoted as B0, B0.4, B0.7 and B1.0, respectively, were investigated. The BBC/B2 micro-structure of FeCoNi(Al0.1Si0.1) was changed...

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Main Authors: Nordin, Norhuda Hidayah, Sulaiman, Mohd Hafis, Leong, Zhaoyuan
Format: Book Chapter
Language:English
Published: CRC PRESS 2021
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Online Access:http://irep.iium.edu.my/95241/1/95241_Nano-indentation%20and%20indentation%20size%20effect.pdf
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spelling my.iium.irep.952412021-12-29T14:27:43Z http://irep.iium.edu.my/95241/ Nano-indentation and indentation size effect on different phases in Lamellar structure high entropy alloy Nordin, Norhuda Hidayah Sulaiman, Mohd Hafis Leong, Zhaoyuan TH Building construction TH880 Sustainable buildings. Sustainable construction TJ Mechanical engineering and machinery In the present work, effects of phase constitution on the tribological properties of FeCoNi(Bx Al1-x)0.1Si0.1 high-entropy alloy (HEA), where x = 0, 0,4, 0.7 and 1.0 are denoted as B0, B0.4, B0.7 and B1.0, respectively, were investigated. The BBC/B2 micro-structure of FeCoNi(Al0.1Si0.1) was changed into a multi-phase system, consisting of FCC and BCC/B2, and Fe2B type intermetallic phases by substitution of boron as shown by X-ray diffraction (XRD). The micro-structures of as-cast alloys were observed to be a lamellar structure comprising nano-structured lamellae with alternating Fe2B and FCC phases. In this work, nano-indentation measurements along with the indents morphologies distinguished the hardness of different phases in the alloy by measuring the effect of the indentation size. Evidences from the results supported that the addition of boron into the single phase HEA with the formation of lamellar structure could provide a balance in strength-ductility in this alloy. CRC PRESS 2021-06-17 Book Chapter PeerReviewed application/pdf en http://irep.iium.edu.my/95241/1/95241_Nano-indentation%20and%20indentation%20size%20effect.pdf Nordin, Norhuda Hidayah and Sulaiman, Mohd Hafis and Leong, Zhaoyuan (2021) Nano-indentation and indentation size effect on different phases in Lamellar structure high entropy alloy. In: Green Tribology. CRC PRESS, pp. 177-186. ISBN 978-0-367-68860-8 https://www.taylorfrancis.com/chapters/edit/10.1201/9781003139386-7/nano-indentation-indentation-size-effect-different-phases-lamellar-structure-high-entropy-alloy-norhuda-hidayah-nordin-mohd-hafis-sulaiman-leong-zhaoyuan 10.1201/9781003139386
institution Universiti Islam Antarabangsa Malaysia
building IIUM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider International Islamic University Malaysia
content_source IIUM Repository (IREP)
url_provider http://irep.iium.edu.my/
language English
topic TH Building construction
TH880 Sustainable buildings. Sustainable construction
TJ Mechanical engineering and machinery
spellingShingle TH Building construction
TH880 Sustainable buildings. Sustainable construction
TJ Mechanical engineering and machinery
Nordin, Norhuda Hidayah
Sulaiman, Mohd Hafis
Leong, Zhaoyuan
Nano-indentation and indentation size effect on different phases in Lamellar structure high entropy alloy
description In the present work, effects of phase constitution on the tribological properties of FeCoNi(Bx Al1-x)0.1Si0.1 high-entropy alloy (HEA), where x = 0, 0,4, 0.7 and 1.0 are denoted as B0, B0.4, B0.7 and B1.0, respectively, were investigated. The BBC/B2 micro-structure of FeCoNi(Al0.1Si0.1) was changed into a multi-phase system, consisting of FCC and BCC/B2, and Fe2B type intermetallic phases by substitution of boron as shown by X-ray diffraction (XRD). The micro-structures of as-cast alloys were observed to be a lamellar structure comprising nano-structured lamellae with alternating Fe2B and FCC phases. In this work, nano-indentation measurements along with the indents morphologies distinguished the hardness of different phases in the alloy by measuring the effect of the indentation size. Evidences from the results supported that the addition of boron into the single phase HEA with the formation of lamellar structure could provide a balance in strength-ductility in this alloy.
format Book Chapter
author Nordin, Norhuda Hidayah
Sulaiman, Mohd Hafis
Leong, Zhaoyuan
author_facet Nordin, Norhuda Hidayah
Sulaiman, Mohd Hafis
Leong, Zhaoyuan
author_sort Nordin, Norhuda Hidayah
title Nano-indentation and indentation size effect on different phases in Lamellar structure high entropy alloy
title_short Nano-indentation and indentation size effect on different phases in Lamellar structure high entropy alloy
title_full Nano-indentation and indentation size effect on different phases in Lamellar structure high entropy alloy
title_fullStr Nano-indentation and indentation size effect on different phases in Lamellar structure high entropy alloy
title_full_unstemmed Nano-indentation and indentation size effect on different phases in Lamellar structure high entropy alloy
title_sort nano-indentation and indentation size effect on different phases in lamellar structure high entropy alloy
publisher CRC PRESS
publishDate 2021
url http://irep.iium.edu.my/95241/1/95241_Nano-indentation%20and%20indentation%20size%20effect.pdf
http://irep.iium.edu.my/95241/
https://www.taylorfrancis.com/chapters/edit/10.1201/9781003139386-7/nano-indentation-indentation-size-effect-different-phases-lamellar-structure-high-entropy-alloy-norhuda-hidayah-nordin-mohd-hafis-sulaiman-leong-zhaoyuan
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score 13.160551