Mostafaei Amir, Behnamian Yashar, Krimer Yuval L, Stevens Erica L, Luo Jing Li, Chmielus Markus
Department of Mechanical Engineering and Materials Science, University of Pittsburgh, Pittsburgh, PA 15261, USA.
Department of Chemical and Materials Engineering, University of Alberta, Edmonton, Alberta T6G 1H9, Canada.
Data Brief. 2016 Sep 30;9:556-562. doi: 10.1016/j.dib.2016.09.042. eCollection 2016 Dec.
Powder bed binder jet printing (BJP) is an additive manufacturing method in which powder is deposited layer-by-layer and selectively joined in each layer with binder. The data presented here relates to the characterization of the as-received feedstock powder, BJP processing parameters, sample preparation and sintering profile ("Effect of solutionizing and aging on the microstructure and mechanical properties of powder bed binder jet printed nickel-based superalloy 625" (A. Mostafaei, Y. Behnamian, Y.L. Krimer, E.L. Stevens, J.L. Luo, M. Chmielus, 2016) [1], "Powder bed binder jet printed alloy 625: densification, microstructure and mechanical properties" (A. Mostafaei, E. Stevens, E. Hughes, S. Biery, C. Hilla, M. Chmielus, 2016) [2]). The data presented here relates to the characterization of the as-received feedstock powder, BJP processing parameters, sample preparation and sintering profile. Effect of post heat treatments including solutionizing and aging on the microstructure and mechanical properties of powder bed binder jet printed nickel-based superalloy 625 were compared to that of sintered samples.
粉末床粘结剂喷射打印(BJP)是一种增材制造方法,其中粉末逐层沉积,并在每层中用粘结剂进行选择性连接。此处呈现的数据涉及所接收的原料粉末的表征、BJP工艺参数、样品制备和烧结曲线(《固溶处理和时效对粉末床粘结剂喷射打印镍基高温合金625微观结构和力学性能的影响》(A. Mostafaei、Y. Behnamian、Y.L. Krimer、E.L. Stevens、J.L. Luo、M. Chmielus,2016年)[1],《粉末床粘结剂喷射打印合金625:致密化、微观结构和力学性能》(A. Mostafaei、E. Stevens、E. Hughes、S. Biery、C. Hilla、M. Chmielus,2016年)[2])。此处呈现的数据涉及所接收的原料粉末的表征、BJP工艺参数、样品制备和烧结曲线。将包括固溶处理和时效在内的后热处理对粉末床粘结剂喷射打印镍基高温合金625微观结构和力学性能的影响与烧结样品的影响进行了比较。