Effect of Manufacturing Process of Master Alloy Powders on Homogeneity of Sintered Ti-5Al-1Fe by Blended Elemental Powder Metallurgy
To narrow down the candidates of the alloying element powders for Ti-5Al-1Fe products manufactured with BE/PM, two master alloy powders, atomized spherical 5Al-1Fe and crushed-andground polyhedron 5Al-1Fe-4Ti ternary powders, were investigated with emphasizing on homogeneity of alloying elements, Al...
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2020-01-01
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doaj-d1ac9febdbaf45e9bd45e6394a1d02da2021-08-11T12:57:52ZengEDP SciencesMATEC Web of Conferences2261-236X2020-01-013210301610.1051/matecconf/202032103016matecconf_ti2019_03016Effect of Manufacturing Process of Master Alloy Powders on Homogeneity of Sintered Ti-5Al-1Fe by Blended Elemental Powder MetallurgyHayakawa MasashiFujii HidekiHorikawa MatsuhideInoue YosukeMorita MasahiroTo narrow down the candidates of the alloying element powders for Ti-5Al-1Fe products manufactured with BE/PM, two master alloy powders, atomized spherical 5Al-1Fe and crushed-andground polyhedron 5Al-1Fe-4Ti ternary powders, were investigated with emphasizing on homogeneity of alloying elements, Al and Fe, in sintered Ti-5Al-1Fe. Intense Al segregation is recognized in the sintered specimen manufactured using 5Al-1Fe atomized powders, while strong segregation is not observed in the specimen manufactured using 5Al-1Fe-4Ti crushed-and-ground powders. Density of sintered specimen manufactured using 5Al-1Fe atomized powders is lower than that manufactured using 5Al-1Fe-4Ti crushed-and-ground powders. Al segregation and lower sintered density are probably caused by lower density of the powder substance, high flowability of spherical powders and phase constitutions some of which have low melting points. Those factors have to be taken into account to manufacture sintered titanium alloys with high homogeneity by BE/PM.https://www.matec-conferences.org/articles/matecconf/pdf/2020/17/matecconf_ti2019_03016.pdf |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Hayakawa Masashi Fujii Hideki Horikawa Matsuhide Inoue Yosuke Morita Masahiro |
spellingShingle |
Hayakawa Masashi Fujii Hideki Horikawa Matsuhide Inoue Yosuke Morita Masahiro Effect of Manufacturing Process of Master Alloy Powders on Homogeneity of Sintered Ti-5Al-1Fe by Blended Elemental Powder Metallurgy MATEC Web of Conferences |
author_facet |
Hayakawa Masashi Fujii Hideki Horikawa Matsuhide Inoue Yosuke Morita Masahiro |
author_sort |
Hayakawa Masashi |
title |
Effect of Manufacturing Process of Master Alloy Powders on Homogeneity of Sintered Ti-5Al-1Fe by Blended Elemental Powder Metallurgy |
title_short |
Effect of Manufacturing Process of Master Alloy Powders on Homogeneity of Sintered Ti-5Al-1Fe by Blended Elemental Powder Metallurgy |
title_full |
Effect of Manufacturing Process of Master Alloy Powders on Homogeneity of Sintered Ti-5Al-1Fe by Blended Elemental Powder Metallurgy |
title_fullStr |
Effect of Manufacturing Process of Master Alloy Powders on Homogeneity of Sintered Ti-5Al-1Fe by Blended Elemental Powder Metallurgy |
title_full_unstemmed |
Effect of Manufacturing Process of Master Alloy Powders on Homogeneity of Sintered Ti-5Al-1Fe by Blended Elemental Powder Metallurgy |
title_sort |
effect of manufacturing process of master alloy powders on homogeneity of sintered ti-5al-1fe by blended elemental powder metallurgy |
publisher |
EDP Sciences |
series |
MATEC Web of Conferences |
issn |
2261-236X |
publishDate |
2020-01-01 |
description |
To narrow down the candidates of the alloying element powders for Ti-5Al-1Fe products manufactured with BE/PM, two master alloy powders, atomized spherical 5Al-1Fe and crushed-andground polyhedron 5Al-1Fe-4Ti ternary powders, were investigated with emphasizing on homogeneity of alloying elements, Al and Fe, in sintered Ti-5Al-1Fe. Intense Al segregation is recognized in the sintered specimen manufactured using 5Al-1Fe atomized powders, while strong segregation is not observed in the specimen manufactured using 5Al-1Fe-4Ti crushed-and-ground powders. Density of sintered specimen manufactured using 5Al-1Fe atomized powders is lower than that manufactured using 5Al-1Fe-4Ti crushed-and-ground powders. Al segregation and lower sintered density are probably caused by lower density of the powder substance, high flowability of spherical powders and phase constitutions some of which have low melting points. Those factors have to be taken into account to manufacture sintered titanium alloys with high homogeneity by BE/PM. |
url |
https://www.matec-conferences.org/articles/matecconf/pdf/2020/17/matecconf_ti2019_03016.pdf |
work_keys_str_mv |
AT hayakawamasashi effectofmanufacturingprocessofmasteralloypowdersonhomogeneityofsinteredti5al1febyblendedelementalpowdermetallurgy AT fujiihideki effectofmanufacturingprocessofmasteralloypowdersonhomogeneityofsinteredti5al1febyblendedelementalpowdermetallurgy AT horikawamatsuhide effectofmanufacturingprocessofmasteralloypowdersonhomogeneityofsinteredti5al1febyblendedelementalpowdermetallurgy AT inoueyosuke effectofmanufacturingprocessofmasteralloypowdersonhomogeneityofsinteredti5al1febyblendedelementalpowdermetallurgy AT moritamasahiro effectofmanufacturingprocessofmasteralloypowdersonhomogeneityofsinteredti5al1febyblendedelementalpowdermetallurgy |
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