APPLIED LASER, Volume. 40, Issue 6, 984(2020)
High Temperature Fatigue Behavior of GH4169 Superalloy Prepared by Selective Laser Melting
[1] [1] ZHANG B, LIAO H, CODDET C.Microstructure evolution and density behavior of CP Ti parts elaborated by self-developed vacuum selective laser melting system[J].Applied Surface Science, 2013, 279: 310-316.
[2] [2] ZHANG Y, GU D D, SHEN L D, et al.Study on selective laser selective melting additive manufacturing process of inconel Ni-Based super alloy[J].Electro Machining & Mould, 2014(4): 38-43.
[3] [3] GU D D, MEINERS W, WISSENBACH K, et al.Laser additive manufacturing of metallic components: materials, processes and mechanisms[J].International Materials Reviews, 2012, 57(3): 133-164.
[4] [4] SHI Y S, LI R D, ZHANG W X, et al.Study on the Technique during selective laser melting of stanless steel powder[J].Electromachining&Mould, 2010(B04): 67-72.
[5] [5] SUN J, YANG Y, WANG D.Parametric optimization of selective laser melting for forming Ti6Al4V samples by Taguchi method[J].Optics & Laser Technology, 2013(49): 118-124.
[6] [6] KAMRAN M, NEIL H.Selective laser melting of Inconel 625 using pulse shaping[J].Rapid Prototyping Journal, 2010, 16(4): 248-257.
[7] [7] DU K P, ZHU Y T, SHEN J, et al. Effect of B on preparation and selective laser melting of GH4169 alloy powder[J].Thermal Spray Technology, 2017, 9(2): 28-34.
[8] [8] SONG K H, NAKATA K.Microstructural and mechanical properties of friction-stir-welded and post-heat-treated Inconel 718 alloy[J].Journal of Alloys and Compounds, 2010, 505(1): 144-150.
[9] [9] BURKE M G, MILLER M K.Precipitation in alloy 718: a combined Al3M and apfiminvestigation[J].Superalloys, 1991, 718(625): 337-350.
[10] [10] CHENG Y W, BAI P K, LIAO H H, et al.Influence of element Re on microstructure and creep behavior of GH4169 alloy by selective laser melting[J]. Hot Working Technology, 2016, 45(8): 111-114.
[11] [11] XU F Q, Huang F X.China aeronautical materials handbook[M].2nd edition.Beijing: Standard Press of China, 2002: 341-346.
[12] [12] YAO L L, ZHANG X C, L F, et al.High Tempratue Low Cycle Fatigue Properties of GH4169 Ni-based Superalloy[J].Materials for Mechanical Engineering, 2016, 40(4): 25-29.
[13] [13] YANG T H, WANG D Z, CHENG S P.Study on High temprature low-cycle fatigue behavior GH4033 nickel-based alloy[J].Heat Treatment of Metals, 2006, 31(7): 26-28.
Get Citation
Copy Citation Text
Zhang Guohui, Guo Shaoqing, Huang Shuai, Zhou Biao, Zhang Xuejun. High Temperature Fatigue Behavior of GH4169 Superalloy Prepared by Selective Laser Melting[J]. APPLIED LASER, 2020, 40(6): 984
Received: Aug. 8, 2019
Accepted: --
Published Online: Apr. 22, 2021
The Author Email: Guohui Zhang (guohui-zhang@foxmail.com)