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Sintering of a nano-crystalline tungsten heavy alloy powder

Author:
Ahmad Ghaderi Hamidi
,
Hosein Arabi
,
جلیل وحدتی خاکی
,
Ahmad Ghaderi Hamidi
,
Hosein Arabi
,
Jalil Vahdati Khaki
Year
: 2019
Abstract: Abstract

A nano-crystalline Tungsten heavy alloy powder was obtained by mechanical

alloying of elemental powders in a jar mill with a high ball to powder ratio. The chemical

composition of the primary powder was 93W-4.9Ni-2.1Fe -wt. %-. The mechanically

alloyed powder had 22 nm sized tungsten crystallites distributed in an amorphous nickel

base phase. Mechanical alloying reduced particle size of powders and also yielded to

more uniform particles size distribution. Sintering behavior and microstructural

development of that powder were studied and compared with a conventionally mixed

powder. Mechanically stored energy and better distribution of primary elements in Nanocrystalline powder had decreased motivation energy of sintering and that powders

showed more densification at relatively lower sintering temperatures. Sintering at low

temperatures can depress grain growth during sintering and provide desirable properties.

A transient intermetallic phase was formed in the nano-crystalline powder during

sintering that has not been seen in conventionally mixed powders.
URI: https://libsearch.um.ac.ir:443/fum/handle/fum/3367025
Keyword(s): Keywords: Mechanical alloying,Nano-crystalline,Tungsten Heavy Alloy,Sintering
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    Sintering of a nano-crystalline tungsten heavy alloy powder

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contributor authorAhmad Ghaderi Hamidien
contributor authorHosein Arabien
contributor authorجلیل وحدتی خاکیen
contributor authorAhmad Ghaderi Hamidifa
contributor authorHosein Arabifa
contributor authorJalil Vahdati Khakifa
date accessioned2020-06-06T13:44:14Z
date available2020-06-06T13:44:14Z
date issued2019
identifier urihttps://libsearch.um.ac.ir:443/fum/handle/fum/3367025
description abstractAbstract

A nano-crystalline Tungsten heavy alloy powder was obtained by mechanical

alloying of elemental powders in a jar mill with a high ball to powder ratio. The chemical

composition of the primary powder was 93W-4.9Ni-2.1Fe -wt. %-. The mechanically

alloyed powder had 22 nm sized tungsten crystallites distributed in an amorphous nickel

base phase. Mechanical alloying reduced particle size of powders and also yielded to

more uniform particles size distribution. Sintering behavior and microstructural

development of that powder were studied and compared with a conventionally mixed

powder. Mechanically stored energy and better distribution of primary elements in Nanocrystalline powder had decreased motivation energy of sintering and that powders

showed more densification at relatively lower sintering temperatures. Sintering at low

temperatures can depress grain growth during sintering and provide desirable properties.

A transient intermetallic phase was formed in the nano-crystalline powder during

sintering that has not been seen in conventionally mixed powders.
en
languageEnglish
titleSintering of a nano-crystalline tungsten heavy alloy powderen
typeJournal Paper
contenttypeExternal Fulltext
subject keywordsKeywords: Mechanical alloyingen
subject keywordsNano-crystallineen
subject keywordsTungsten Heavy Alloyen
subject keywordsSinteringen
journal titleInternational Journal of Refractory Metals and Hard Materialsfa
pages204-209
journal volume80
journal issue1
identifier linkhttps://profdoc.um.ac.ir/paper-abstract-1073044.html
identifier articleid1073044
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