Evaluation of modified ductile Ni-Resist alloy solidification with higher chromium and manganese

These days, batteries, applications requiring high temperatures, and corrosive environments are the main uses for nickel. The rise in electric and hybrid vehicles has increased the amount of nickel used as the primary component in alloys. Due to manufacturer interest, the price of nickel had reached...

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Main Authors: Muhammad Aminuddin, Rosnizan, Mohamed Reza Zalani, Mohamed Suffian, Khairul Ihsan, Yaakob, Fatin Syairah, Yusoff, Mohd Rashidi, Maarof
Format: Article
Language:English
Published: Semarak Ilmu Publishing 2025
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Online Access:http://umpir.ump.edu.my/id/eprint/44048/
http://umpir.ump.edu.my/id/eprint/44048/1/Evaluation%20of%20modified%20ductile%20Ni-Resist%20alloy%20solidification.pdf
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author Muhammad Aminuddin, Rosnizan
Mohamed Reza Zalani, Mohamed Suffian
Khairul Ihsan, Yaakob
Fatin Syairah, Yusoff
Mohd Rashidi, Maarof
author_facet Muhammad Aminuddin, Rosnizan
Mohamed Reza Zalani, Mohamed Suffian
Khairul Ihsan, Yaakob
Fatin Syairah, Yusoff
Mohd Rashidi, Maarof
author_sort Muhammad Aminuddin, Rosnizan
building UMP Institutional Repository
collection Online Access
description These days, batteries, applications requiring high temperatures, and corrosive environments are the main uses for nickel. The rise in electric and hybrid vehicles has increased the amount of nickel used as the primary component in alloys. Due to manufacturer interest, the price of nickel had reached its apex and was becoming erratic. One compound that is impacted is the Ni-Resist alloy. In this work, the nickel weight % of an alloy known as ductile Ni-resist alloy was reduced in order to reduce processing costs due to nickel price. This effort involved the modification of ductile Ni-resist alloy with a minimum 18 weight percent nickel content with up to 10 weight percent of chromium and manganese which were added during melting stage. The adjustment was looked into in an effort to lessen the cost of the alloying process by using less nickel in the alloying mixture. After that, the microstructure, solidification behavior, and property evaluation were looked at. The findings demonstrate that increased manganese and chromium content on modified ductile Ni-resist alloy affects base iron’s DAS and SDAS as well as graphite production. The dimension of DAS and SDAS was minimally altered by the addition of chromium and manganese weight percentage. Following solidification, a distinct kind of DAS and SDAS was seen on the modified ductile Ni-resist.
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spelling ump-440482025-03-11T07:53:47Z http://umpir.ump.edu.my/id/eprint/44048/ Evaluation of modified ductile Ni-Resist alloy solidification with higher chromium and manganese Muhammad Aminuddin, Rosnizan Mohamed Reza Zalani, Mohamed Suffian Khairul Ihsan, Yaakob Fatin Syairah, Yusoff Mohd Rashidi, Maarof TJ Mechanical engineering and machinery These days, batteries, applications requiring high temperatures, and corrosive environments are the main uses for nickel. The rise in electric and hybrid vehicles has increased the amount of nickel used as the primary component in alloys. Due to manufacturer interest, the price of nickel had reached its apex and was becoming erratic. One compound that is impacted is the Ni-Resist alloy. In this work, the nickel weight % of an alloy known as ductile Ni-resist alloy was reduced in order to reduce processing costs due to nickel price. This effort involved the modification of ductile Ni-resist alloy with a minimum 18 weight percent nickel content with up to 10 weight percent of chromium and manganese which were added during melting stage. The adjustment was looked into in an effort to lessen the cost of the alloying process by using less nickel in the alloying mixture. After that, the microstructure, solidification behavior, and property evaluation were looked at. The findings demonstrate that increased manganese and chromium content on modified ductile Ni-resist alloy affects base iron’s DAS and SDAS as well as graphite production. The dimension of DAS and SDAS was minimally altered by the addition of chromium and manganese weight percentage. Following solidification, a distinct kind of DAS and SDAS was seen on the modified ductile Ni-resist. Semarak Ilmu Publishing 2025-12-30 Article PeerReviewed pdf en cc_by_nc_4 http://umpir.ump.edu.my/id/eprint/44048/1/Evaluation%20of%20modified%20ductile%20Ni-Resist%20alloy%20solidification.pdf Muhammad Aminuddin, Rosnizan and Mohamed Reza Zalani, Mohamed Suffian and Khairul Ihsan, Yaakob and Fatin Syairah, Yusoff and Mohd Rashidi, Maarof (2025) Evaluation of modified ductile Ni-Resist alloy solidification with higher chromium and manganese. Journal of Advanced Research in Applied Mechanics, 130 (1). pp. 27-37. ISSN 2289-7895. (Published) https://doi.org/10.37934/aram.130.1.2737 10.37934/aram.130.1.2737
spellingShingle TJ Mechanical engineering and machinery
Muhammad Aminuddin, Rosnizan
Mohamed Reza Zalani, Mohamed Suffian
Khairul Ihsan, Yaakob
Fatin Syairah, Yusoff
Mohd Rashidi, Maarof
Evaluation of modified ductile Ni-Resist alloy solidification with higher chromium and manganese
title Evaluation of modified ductile Ni-Resist alloy solidification with higher chromium and manganese
title_full Evaluation of modified ductile Ni-Resist alloy solidification with higher chromium and manganese
title_fullStr Evaluation of modified ductile Ni-Resist alloy solidification with higher chromium and manganese
title_full_unstemmed Evaluation of modified ductile Ni-Resist alloy solidification with higher chromium and manganese
title_short Evaluation of modified ductile Ni-Resist alloy solidification with higher chromium and manganese
title_sort evaluation of modified ductile ni-resist alloy solidification with higher chromium and manganese
topic TJ Mechanical engineering and machinery
url http://umpir.ump.edu.my/id/eprint/44048/
http://umpir.ump.edu.my/id/eprint/44048/
http://umpir.ump.edu.my/id/eprint/44048/
http://umpir.ump.edu.my/id/eprint/44048/1/Evaluation%20of%20modified%20ductile%20Ni-Resist%20alloy%20solidification.pdf