Data on the influence of cold isostatic pre-compaction on mechanical properties of polycrystalline nickel sintered using Spark Plasma Sintering

Data regarding bulk polycrystalline nickel samples obtained by powder metallurgy using Spark Plasma Sintering (SPS) are presented, with a special emphasis on the influence of a cold isostatic pre-compaction on the resulting morphologies and subsequent mechanical properties. Three types of initial po...

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Main Authors: Guy-Daniel Dutel, Patrick Langlois, David Tingaud, Dominique Vrel, Guy Dirras
Format: Article
Language:English
Published: Elsevier 2017-04-01
Series:Data in Brief
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S2352340917300094
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author Guy-Daniel Dutel
Patrick Langlois
David Tingaud
Dominique Vrel
Guy Dirras
author_facet Guy-Daniel Dutel
Patrick Langlois
David Tingaud
Dominique Vrel
Guy Dirras
author_sort Guy-Daniel Dutel
collection DOAJ
description Data regarding bulk polycrystalline nickel samples obtained by powder metallurgy using Spark Plasma Sintering (SPS) are presented, with a special emphasis on the influence of a cold isostatic pre-compaction on the resulting morphologies and subsequent mechanical properties. Three types of initial powders are used, nanometric powders, micrometric powders and a mixture of the formers. For each type of powder, the SPS cycle has been optimized for the powders without pre-compaction and the same cycle has been used to also sinter pre-compacted powders.
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spelling doaj.art-5658bc39c52047149a7ab4a8a383e0182022-12-22T01:43:43ZengElsevierData in Brief2352-34092017-04-0111C616710.1016/j.dib.2017.01.009Data on the influence of cold isostatic pre-compaction on mechanical properties of polycrystalline nickel sintered using Spark Plasma SinteringGuy-Daniel DutelPatrick LangloisDavid TingaudDominique VrelGuy DirrasData regarding bulk polycrystalline nickel samples obtained by powder metallurgy using Spark Plasma Sintering (SPS) are presented, with a special emphasis on the influence of a cold isostatic pre-compaction on the resulting morphologies and subsequent mechanical properties. Three types of initial powders are used, nanometric powders, micrometric powders and a mixture of the formers. For each type of powder, the SPS cycle has been optimized for the powders without pre-compaction and the same cycle has been used to also sinter pre-compacted powders.http://www.sciencedirect.com/science/article/pii/S2352340917300094Spark Plasma SinteringCold isostatic compactionNickel powdersMicrostructure
spellingShingle Guy-Daniel Dutel
Patrick Langlois
David Tingaud
Dominique Vrel
Guy Dirras
Data on the influence of cold isostatic pre-compaction on mechanical properties of polycrystalline nickel sintered using Spark Plasma Sintering
Data in Brief
Spark Plasma Sintering
Cold isostatic compaction
Nickel powders
Microstructure
title Data on the influence of cold isostatic pre-compaction on mechanical properties of polycrystalline nickel sintered using Spark Plasma Sintering
title_full Data on the influence of cold isostatic pre-compaction on mechanical properties of polycrystalline nickel sintered using Spark Plasma Sintering
title_fullStr Data on the influence of cold isostatic pre-compaction on mechanical properties of polycrystalline nickel sintered using Spark Plasma Sintering
title_full_unstemmed Data on the influence of cold isostatic pre-compaction on mechanical properties of polycrystalline nickel sintered using Spark Plasma Sintering
title_short Data on the influence of cold isostatic pre-compaction on mechanical properties of polycrystalline nickel sintered using Spark Plasma Sintering
title_sort data on the influence of cold isostatic pre compaction on mechanical properties of polycrystalline nickel sintered using spark plasma sintering
topic Spark Plasma Sintering
Cold isostatic compaction
Nickel powders
Microstructure
url http://www.sciencedirect.com/science/article/pii/S2352340917300094
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