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

Data on the densification during sintering of binder jet printed samples made from water- and gas-atomized alloy 625 powders.
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DOI:
10.1016/j.dib.2016.11.078
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发表时间:
2017-02
期刊:
影响因子:
1.2
通讯作者:
Chmielus, Markus
Chmielus, Markus
中科院分区:
其他
文献类型:
--
作者:
Mostafaei, Amir;Hughes, Eamonn T;Hilla, Colleen;Stevens, Erica L;Chmielus, Markus

文献摘要

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粘合剂喷射打印(BJP)是一种金属增材制造方法,其通过逐层沉积粉末、选择性地将每层中的颗粒与聚合物粘合剂结合并最终固化粘合剂来制造具有复杂几何形状的部件。在打印过程之后,仍然在粉末床中的部件必须被烧结以实现完全致密化(A. Mostafaei,Y. Behnamian,Y.L. Krimer,E.L. Stevens,J.L.罗,M. Chmielus,2016; A. Mostafaei,E. Stevens,E.休斯,S。比耶里角希拉,M. Chmielus,2016; A. Mostafaei,Y. Behnamian,Y.L. Krimer,E.L. Stevens,J.L.罗,M. Chmielus,2016)。所收集的数据呈现了所接收的气体和水雾化的合金625粉末、BJP处理参数和烧结样品的密度的表征。本文简要比较了烧结温度对不同雾化镍基高温合金625粉末制成的粘合剂喷射打印零件的显微组织和相对密度的影响。详细的数据可以在作者发表的原始论文中找到(A。Mostafaei,J. Toman,E.L.史蒂文斯,ET。Hughes,Y.L. Krimer,M. Chmielus,2017)[4]。
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). 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].