Microstructure and mechanical properties of dispersion strengthened tungsten by HIP treatment followed by thermal annealing

Improvement of brittle mechanical properties on plasma facing materials-tungsten (PFM-W) is required for development of advanced divertors. We have developed dispersion-strengthened (DS)-W-Ti alloys using a new process which is based on a combination of Mechanical Alloying (MA) and Hot Isostatic Pre...

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Main Authors: H. Noto, Y. Hishinuma, T. Muroga, H.Benoki
Format: Article
Language:English
Published: Elsevier 2020-09-01
Series:Results in Materials
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S2590048X20300583
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author H. Noto
Y. Hishinuma
T. Muroga
H.Benoki
author_facet H. Noto
Y. Hishinuma
T. Muroga
H.Benoki
author_sort H. Noto
collection DOAJ
description Improvement of brittle mechanical properties on plasma facing materials-tungsten (PFM-W) is required for development of advanced divertors. We have developed dispersion-strengthened (DS)-W-Ti alloys using a new process which is based on a combination of Mechanical Alloying (MA) and Hot Isostatic Pressing (HIP). In this paper, the microstructure after thermal annealing and the mechanical properties were investigated on the DS-W-Ti alloy.
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spelling doaj.art-28b68c1de88f48e49937c5751f5726022022-12-22T00:04:14ZengElsevierResults in Materials2590-048X2020-09-017100116Microstructure and mechanical properties of dispersion strengthened tungsten by HIP treatment followed by thermal annealingH. Noto0Y. Hishinuma1T. Muroga2 H.Benoki3National Institute for Fusion Science, 509-5292, Gifu, Japan; Corresponding author. National Institute for Fusion Science, Oroshi 322-6, Toki, 509-5292, Japan.National Institute for Fusion Science, 509-5292, Gifu, JapanNational Institute for Fusion Science, 509-5292, Gifu, JapanNippon Tungsten Co., Ltd., JapanImprovement of brittle mechanical properties on plasma facing materials-tungsten (PFM-W) is required for development of advanced divertors. We have developed dispersion-strengthened (DS)-W-Ti alloys using a new process which is based on a combination of Mechanical Alloying (MA) and Hot Isostatic Pressing (HIP). In this paper, the microstructure after thermal annealing and the mechanical properties were investigated on the DS-W-Ti alloy.http://www.sciencedirect.com/science/article/pii/S2590048X20300583TungstenMechanical alloyingHot isostatic pressing
spellingShingle H. Noto
Y. Hishinuma
T. Muroga
H.Benoki
Microstructure and mechanical properties of dispersion strengthened tungsten by HIP treatment followed by thermal annealing
Results in Materials
Tungsten
Mechanical alloying
Hot isostatic pressing
title Microstructure and mechanical properties of dispersion strengthened tungsten by HIP treatment followed by thermal annealing
title_full Microstructure and mechanical properties of dispersion strengthened tungsten by HIP treatment followed by thermal annealing
title_fullStr Microstructure and mechanical properties of dispersion strengthened tungsten by HIP treatment followed by thermal annealing
title_full_unstemmed Microstructure and mechanical properties of dispersion strengthened tungsten by HIP treatment followed by thermal annealing
title_short Microstructure and mechanical properties of dispersion strengthened tungsten by HIP treatment followed by thermal annealing
title_sort microstructure and mechanical properties of dispersion strengthened tungsten by hip treatment followed by thermal annealing
topic Tungsten
Mechanical alloying
Hot isostatic pressing
url http://www.sciencedirect.com/science/article/pii/S2590048X20300583
work_keys_str_mv AT hnoto microstructureandmechanicalpropertiesofdispersionstrengthenedtungstenbyhiptreatmentfollowedbythermalannealing
AT yhishinuma microstructureandmechanicalpropertiesofdispersionstrengthenedtungstenbyhiptreatmentfollowedbythermalannealing
AT tmuroga microstructureandmechanicalpropertiesofdispersionstrengthenedtungstenbyhiptreatmentfollowedbythermalannealing
AT hbenoki microstructureandmechanicalpropertiesofdispersionstrengthenedtungstenbyhiptreatmentfollowedbythermalannealing