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Data on the densification during sintering of binder jet printed samples made from water- and gas-atomized alloy 625 powders

Mostafaei, Amir and Hughes, Eamonn T. and Hilla, Colleen and Stevens, Erica L. and Chmielus, Markus (2017) Data on the densification during sintering of binder jet printed samples made from water- and gas-atomized alloy 625 powders. Data in Brief, 10. pp. 116-121. ISSN 23523409

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Abstract

Binder jet printing (BJP) is a metal additive manufacturing method that manufactures parts with complex geometry by depositing powder layer-by-layer, selectively joining particles in each layer with a polymeric binder and finally curing the binder. After the printing process, the parts still in the powder bed must be sintered to achieve full densification (A. Mostafaei, Y. Behnamian, Y.L. Krimer, E.L. Stevens, J.L. Luo, M. Chmielus, 2016; A. Mostafaei, E. Stevens, E. Hughes, S. Biery, C. Hilla, M. Chmielus, 2016; A. Mostafaei, Y. Behnamian, Y.L. Krimer, E.L. Stevens, J.L. Luo, M. Chmielus, 2016) [1–3]. The collected data presents the characterization of the as-received gas- and water-atomized alloy 625 powders, BJP processing parameters and density of the sintered samples. The effect of sintering temperatures on the microstructure and the relative density of binder jet printed parts made from differently atomized nickel-based superalloy 625 powders are briefly compared in this paper. Detailed data can be found in the original published papers by authors in (A. Mostafaei, J. Toman, E.L. Stevens, E.T. Hughes, Y.L. Krimer, M. Chmielus, 2017) [4].


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Details

Item Type: Article
Status: Published
Creators/Authors:
CreatorsEmailPitt UsernameORCID
Mostafaei, Amir
Hughes, Eamonn T.
Hilla, Colleen
Stevens, Erica L.ericastevens@pitt.edu
Chmielus, Markuschmielus@pitt.edu
Date: 2017
Date Type: Publication
Journal or Publication Title: Data in Brief
Volume: 10
Publisher: Elsevier
Page Range: pp. 116-121
DOI or Unique Handle: 10.1016/j.dib.2016.11.078
Schools and Programs: Swanson School of Engineering > Mechanical Engineering and Materials Science
Refereed: Yes
ISSN: 23523409
Official URL: http://dx.doi.org/10.1016/j.dib.2016.11.078
Article Type: Research Article
Date Deposited: 08 Jun 2020 13:10
Last Modified: 08 Jun 2020 13:10
URI: http://d-scholarship.pitt.edu/id/eprint/39137

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