Undiluted recycling of aluminum scrap alloy using Hume-Rothery’s rule

A new concept of an undiluted recycling of aluminum alloy containing high-Fe impurity has been proposed and discussed herein. The primary objective of this concept is to avoid the conventional addition of virgin aluminum, to the aluminum scrap for lowering the concentration of Fe impurity. Results h...

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Main Authors: Prasada Rao, A. K., W. Q., Ain, M. K., Faisal, B. I., Mazni
Format: Article
Language:English
Published: Springer New York LLC 2018
Subjects:
Online Access:http://umpir.ump.edu.my/id/eprint/23223/
http://umpir.ump.edu.my/id/eprint/23223/
http://umpir.ump.edu.my/id/eprint/23223/
http://umpir.ump.edu.my/id/eprint/23223/1/Undiluted%20Recycling%20of%20Aluminum%20Scrap%20Alloy%20Using%20Hume-Rothery%E2%80%99s%20Rule.pdf
id ump-23223
recordtype eprints
spelling ump-232232019-02-15T04:35:27Z http://umpir.ump.edu.my/id/eprint/23223/ Undiluted recycling of aluminum scrap alloy using Hume-Rothery’s rule Prasada Rao, A. K. W. Q., Ain M. K., Faisal B. I., Mazni TS Manufactures A new concept of an undiluted recycling of aluminum alloy containing high-Fe impurity has been proposed and discussed herein. The primary objective of this concept is to avoid the conventional addition of virgin aluminum, to the aluminum scrap for lowering the concentration of Fe impurity. Results have shown that the Al5FeSi (β-phase) can be suppressed with minor alloying additions of some elements as per Hume-Rothery’s criteria for solid solubility. The proposed concept has been validated by Stirling’s approximation method. Springer New York LLC 2018 Article PeerReviewed pdf en http://umpir.ump.edu.my/id/eprint/23223/1/Undiluted%20Recycling%20of%20Aluminum%20Scrap%20Alloy%20Using%20Hume-Rothery%E2%80%99s%20Rule.pdf Prasada Rao, A. K. and W. Q., Ain and M. K., Faisal and B. I., Mazni (2018) Undiluted recycling of aluminum scrap alloy using Hume-Rothery’s rule. Metallography, Microstructure, and Analysis, 7 (2). pp. 239-244. ISSN 2192-9262 (Print); 2192-9270 (Online) https://link.springer.com/article/10.1007%2Fs13632-018-0431-8 https://doi.org/10.1007/s13632-018-0431-8
repository_type Digital Repository
institution_category Local University
institution Universiti Malaysia Pahang
building UMP Institutional Repository
collection Online Access
language English
topic TS Manufactures
spellingShingle TS Manufactures
Prasada Rao, A. K.
W. Q., Ain
M. K., Faisal
B. I., Mazni
Undiluted recycling of aluminum scrap alloy using Hume-Rothery’s rule
description A new concept of an undiluted recycling of aluminum alloy containing high-Fe impurity has been proposed and discussed herein. The primary objective of this concept is to avoid the conventional addition of virgin aluminum, to the aluminum scrap for lowering the concentration of Fe impurity. Results have shown that the Al5FeSi (β-phase) can be suppressed with minor alloying additions of some elements as per Hume-Rothery’s criteria for solid solubility. The proposed concept has been validated by Stirling’s approximation method.
format Article
author Prasada Rao, A. K.
W. Q., Ain
M. K., Faisal
B. I., Mazni
author_facet Prasada Rao, A. K.
W. Q., Ain
M. K., Faisal
B. I., Mazni
author_sort Prasada Rao, A. K.
title Undiluted recycling of aluminum scrap alloy using Hume-Rothery’s rule
title_short Undiluted recycling of aluminum scrap alloy using Hume-Rothery’s rule
title_full Undiluted recycling of aluminum scrap alloy using Hume-Rothery’s rule
title_fullStr Undiluted recycling of aluminum scrap alloy using Hume-Rothery’s rule
title_full_unstemmed Undiluted recycling of aluminum scrap alloy using Hume-Rothery’s rule
title_sort undiluted recycling of aluminum scrap alloy using hume-rothery’s rule
publisher Springer New York LLC
publishDate 2018
url http://umpir.ump.edu.my/id/eprint/23223/
http://umpir.ump.edu.my/id/eprint/23223/
http://umpir.ump.edu.my/id/eprint/23223/
http://umpir.ump.edu.my/id/eprint/23223/1/Undiluted%20Recycling%20of%20Aluminum%20Scrap%20Alloy%20Using%20Hume-Rothery%E2%80%99s%20Rule.pdf
first_indexed 2023-09-18T22:34:41Z
last_indexed 2023-09-18T22:34:41Z
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