Effects of sintering time and temperature to the characteristics of FeCrAl powder compacts formed at elevated temperature
Aluminum alloys; Argon; Bending strength; Chromium alloys; Iron alloys; Manufacture; Powders; Ternary alloys; Axial pressures; Cylindrical shapes; Elevated temperature; Experimental investigations; Powder compacts; Sintered samples; Sintering temperatures; Uniaxial die compaction; Sintering
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2023
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my.uniten.dspace-239212023-05-29T14:53:11Z Effects of sintering time and temperature to the characteristics of FeCrAl powder compacts formed at elevated temperature Rahman M.M. Rahman H.Y. Awang M.A.A. Sopyan I. 55328831100 7101793656 57200726568 23482484000 Aluminum alloys; Argon; Bending strength; Chromium alloys; Iron alloys; Manufacture; Powders; Ternary alloys; Axial pressures; Cylindrical shapes; Elevated temperature; Experimental investigations; Powder compacts; Sintered samples; Sintering temperatures; Uniaxial die compaction; Sintering This paper presents the outcomes of an experimental investigation on the effect of sintering schedule, i.e., holding time and temperature to the final properties of FeCrAl powder compacts prepared through uniaxial die compaction process at above room temperature. The feedstock was prepared by mechanically mixing iron powder ASC 100.29 with chromium (22 wt%) and aluminium (11 wt%) for 30 min at room temperature. A cylindrical shape die was filled with the powder mass and heated for one hour for uniform heating of the die assembly together with the powder mass. Once the temperature reached to the setup temperature, i.e., 150�C, the powder mass was formed by applying an axial pressure of 425 MPa simultaneously from upward and downward directions. The as-pressed green compacts were then cooled to room temperature and subsequently sintered in argon gas fired furnace at a rate of 5�C/min for three different holding times, i.e., 30, 60, and 90 min at three different sintering temperatures, i.e., 800, 900, and 1000�C. The sintered samples were characterized for their density, electrical resistivity, bending strength, and microstructure. The results revealed that the sample sintered at 1000�C for 90 min achieved the better characteristics. � Published under licence by IOP Publishing Ltd. Final 2023-05-29T06:53:11Z 2023-05-29T06:53:11Z 2018 Conference Paper 10.1088/1757-899X/290/1/012009 2-s2.0-85042334076 https://www.scopus.com/inward/record.uri?eid=2-s2.0-85042334076&doi=10.1088%2f1757-899X%2f290%2f1%2f012009&partnerID=40&md5=3b860c1d5009d220299b47ab92737b02 https://irepository.uniten.edu.my/handle/123456789/23921 290 1 12009 All Open Access, Bronze Institute of Physics Publishing Scopus |
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Aluminum alloys; Argon; Bending strength; Chromium alloys; Iron alloys; Manufacture; Powders; Ternary alloys; Axial pressures; Cylindrical shapes; Elevated temperature; Experimental investigations; Powder compacts; Sintered samples; Sintering temperatures; Uniaxial die compaction; Sintering |
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55328831100 |
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55328831100 Rahman M.M. Rahman H.Y. Awang M.A.A. Sopyan I. |
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Conference Paper |
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Rahman M.M. Rahman H.Y. Awang M.A.A. Sopyan I. |
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Rahman M.M. Rahman H.Y. Awang M.A.A. Sopyan I. Effects of sintering time and temperature to the characteristics of FeCrAl powder compacts formed at elevated temperature |
author_sort |
Rahman M.M. |
title |
Effects of sintering time and temperature to the characteristics of FeCrAl powder compacts formed at elevated temperature |
title_short |
Effects of sintering time and temperature to the characteristics of FeCrAl powder compacts formed at elevated temperature |
title_full |
Effects of sintering time and temperature to the characteristics of FeCrAl powder compacts formed at elevated temperature |
title_fullStr |
Effects of sintering time and temperature to the characteristics of FeCrAl powder compacts formed at elevated temperature |
title_full_unstemmed |
Effects of sintering time and temperature to the characteristics of FeCrAl powder compacts formed at elevated temperature |
title_sort |
effects of sintering time and temperature to the characteristics of fecral powder compacts formed at elevated temperature |
publisher |
Institute of Physics Publishing |
publishDate |
2023 |
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1806427412621164544 |
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13.222552 |