Effect of stress relief and solubilization heat treatments on laser additive manufactured Inconel 625: microstructure and properties

被引:3
作者
Bon, Douglas [1 ]
Cavalcante, Thiago [1 ]
Thiesen, Anselmo [2 ]
Santos, Henrique [2 ]
Gutjahr, Jhonattan [2 ]
Cintho, Osvaldo [3 ]
Coelho, Reginaldo [1 ]
de Oliveira, Marcelo Falcao [1 ]
Ribamar, Giovani Goncalves [4 ]
Avila, Julian Arnaldo [5 ,6 ]
机构
[1] Univ Sao Paulo, Mat Engn Deparment, BR-13563120 Sao Carlos, SP, Brazil
[2] SENAI Innovat Inst Mfg Syst & Laser, BR-89218153 Joinville, SC, Brazil
[3] State Univ Ponta Grossa UEPG, BR-84030900 Ponta Grossa, PR, Brazil
[4] Univ Sao Paulo, Dept Met & Mat Engn, BR-05508010 Sao Paulo, SP, Brazil
[5] Univ Politecn Catalunya UPC, Dept Strength Mat & Struct Engn, Res Grp Struct & Mech Mat REMM, Barcelona 08028, Spain
[6] Sao Paulo State Univ UNESP, Sch Engn, BR-13876750 Sao Joao da Boa Vista, SP, Brazil
关键词
Inconel; 625; Laser-directed energy deposition; Additive manufacturing; Mechanical properties; Heat treatments; Stress relief; Solubilization; MECHANICAL-PROPERTIES; DELTA-PHASE; SOLIDIFICATION;
D O I
10.1007/s00170-024-12967-4
中图分类号
TP [自动化技术、计算机技术];
学科分类号
0812 ;
摘要
This work assesses the effect of the energy input and the stress relief and solubilization heat treatment on the microstructure and mechanical properties of an Inconel 625 alloy processed by laser additive manufacturing using directed energy deposition. Two processing conditions were used to deliver high productivity with a high energy input (HEI) and another with better geometrical precision using a lower energy input (LEI). The mechanical test samples were built vertically and horizontally aligned with the tensile test direction. The samples were submitted to residual stress relief (SR) and SR + solubilization (S) heat treatments (SR + S). Results showed increased elongation with solubilization heat treatment, while UTS and YS decreased with heat treatment combination, which was linked to the stronger texture developed in HEI condition. Samples built in the vertical direction presented lower YS. The fracture toughness of solubilization heat-treated samples showed higher values, while LEI gave just slightly higher values. Although the microstructural and mechanical features are similar between the HEI and LEI conditions, the first stands out because parts can be fabricated quickly without losing mechanical performance under quasi-static conditions, impact fracture tests, or the production of unwanted phases.
引用
收藏
页码:4919 / 4931
页数:13
相关论文
共 28 条
[21]   Comparison of microstructure features and mechanical properties for additive manufactured and wrought nickel alloys 625 [J].
Nguejio, J. ;
Szmytka, F. ;
Hallais, S. ;
Tanguy, A. ;
Nardone, S. ;
Martinez, M. Godino .
MATERIALS SCIENCE AND ENGINEERING A-STRUCTURAL MATERIALS PROPERTIES MICROSTRUCTURE AND PROCESSING, 2019, 764
[22]   Evaluation of fracture toughness and impact toughness of laser rapid manufactured Inconel-625 structures and their co-relation [J].
Puppala, Ganesh ;
Moitra, Aniruddha ;
Sathyanarayanan, S. ;
Kaul, Rakesh ;
Sasikala, G. ;
Prasad, Ram Chandra ;
Kukreja, Lalit M. .
MATERIALS & DESIGN, 2014, 59 :509-515
[23]   Effect of heat treatments on Inconel 625 fabricated by wire and arc additive manufacturing: an in situ synchrotron X-ray diffraction analysis [J].
Rodrigues, Tiago A. ;
Farias, Francisco Werley Cipriano ;
Avila, Julian A. ;
Maawad, Emad ;
Schell, Norbert ;
Santos, Telmo G. ;
Oliveira, J. P. .
SCIENCE AND TECHNOLOGY OF WELDING AND JOINING, 2023, 28 (07) :534-539
[24]   Microstructure and mechanical properties of Inconel 625 superalloy [J].
Shankar, V ;
Rao, KBS ;
Mannan, SL .
JOURNAL OF NUCLEAR MATERIALS, 2001, 288 (2-3) :222-232
[25]   The Influence of Annealing Temperature and Time on the Formation of δ-Phase in Additively-Manufactured Inconel 625 [J].
Stoudt, M. R. ;
Lass, E. A. ;
Ng, D. S. ;
Williams, M. E. ;
Zhang, F. ;
Campbell, C. E. ;
Lindwall, G. ;
Levine, L. E. .
METALLURGICAL AND MATERIALS TRANSACTIONS A-PHYSICAL METALLURGY AND MATERIALS SCIENCE, 2018, 49A (07) :3028-3037
[26]   Directed energy deposition (DED) additive manufacturing: Physical characteristics, defects, challenges and applications [J].
Svetlizky, David ;
Das, Mitun ;
Zheng, Baolong ;
Vyatskikh, Alexandra L. ;
Bose, Susmita ;
Bandyopadhyay, Amit ;
Schoenung, Julie M. ;
Lavernia, Enrique J. ;
Eliaz, Noam .
MATERIALS TODAY, 2021, 49 :271-295
[27]  
Thiesen A., 2021, Masters thesis
[28]  
vander Voort G.F., 2004, Microscopy and Microanalysis, V10, P690, DOI DOI 10.1017/S1431927604883442