|
|
|
| Effect of Heat Treatment on Hot Corrosion Behavior of Selective Laser Melted GH4099 Nickel-based Superalloy Beneath (75%Na2SO4 + 25%NaCl) Deposits in Air at 900 oC |
BAI Yingxiong1, WANG Yanli1( ), LI Xiangwei2, WU Zefeng2, ZHANG Shuyan2 |
1 School of Chemistry and Chemical Engineering, Guangxi University, Nanning 530004, China 2 Centre of Excellence for Advanced Materials, Dongguan 523808, China |
|
Cite this article:
BAI Yingxiong, WANG Yanli, LI Xiangwei, WU Zefeng, ZHANG Shuyan. Effect of Heat Treatment on Hot Corrosion Behavior of Selective Laser Melted GH4099 Nickel-based Superalloy Beneath (75%Na2SO4 + 25%NaCl) Deposits in Air at 900 oC. Journal of Chinese Society for Corrosion and protection, 2025, 45(6): 1709-1716.
|
|
|
Abstract Bulk GH4099 alloy was fabricated through a specific SLM process, then subjected to appropriate heat treatment. The hot corrosion behavior of the prepared bulk GH4099 alloys with and without heat treatment was comparatively assessed beneath a thin deposits of 75%Na2SO4 + 25%NaCl in air at 900 oC by means of electronic analytical balance, optical microscopy (OM), X-ray diffractometer (XRD), scanning electron microscopy (SEM), transmission electron microscopy (TEM), energy dispersive spectrometry (EDS) etc. The results reveal that the micron-sized cellular sub-grains and MC carbides are detected in the SLM alloy. After heat treatment, the grains grow and new phases precipitate. The corrosion kinetics analysis indicates that the bare and heat treated SLM alloys experience more or less the same weight loss in the initial stage, and in the later stage, the two SLM alloys all show obvious corrosion. The corrosion products are divided into four layers, and the hot corrosion process follows an acid dissolution mechanism. The heat-treated alloy has better hot corrosion resistance due to the formation of M23C6 and γ′ phases.
|
|
Received: 15 January 2025
32134.14.1005.4537.2025.028
|
|
|
| Fund: Guangdong Major Project of Basic and Applied Basic Research(2020B0301030001) |
Corresponding Authors:
WANG Yanli, E-mail: wyl187358@gxu.edu.cn
|
| [1] |
Li R Z, Cao Z K, Yu C L, et al. Study on microstructure and properties of GH4099 superalloy solution aging treatment [J]. Sichuan Metall., 2021, 43(3): 25
|
|
(李荣之, 曹征宽, 余朝龙 等. GH4099高温合金固溶时效组织与性能研究 [J]. 四川冶金, 2021, 43(3): 25)
|
| [2] |
Tan C L, Weng F, Sui S, et al. Progress and perspectives in laser additive manufacturing of key aeroengine materials [J]. Int. J. Mach. Tools Manuf., 2021, 170: 103804
|
| [3] |
Yang Y Q, Jiang R W, Han C J, et al. Frontiers in laser additive manufacturing technology [J]. Addit. Manuf. Front., 2024, 3: 200160
|
| [4] |
Khanna N, Zadafiya K, Patel T, et al. Review on machining of additively manufactured nickel and titanium alloys [J]. J. Mater. Res. Technol., 2021, 15: 3192
|
| [5] |
Zheng W P, Zhu Y M, Zhang Y, et al. Research on heat treatment of nickel-based superalloys by laser powder bed fusion: A review [J]. J. Alloy. Compd., 2025, 1010: 177522
|
| [6] |
Volpato G M, Tetzlaff U, Fredel M C. A comprehensive literature review on laser powder bed fusion of Inconel superalloys [J]. Addit. Manuf., 2022, 55: 102871
|
| [7] |
Zhang K Q, Chen C Y, Xu S Z, et al. On the microstructure evolution and strengthening mechanism of GH4099 Ni-based superalloy fabricated by laser powder bed fusion [J]. Mater. Today Commun., 2024, 40: 109734
|
| [8] |
Li F, Lu Q, She Y D. Forming process and microstructure and properties of selective laser melted GH4099 superalloy [J]. Trans. Mater. Heat Treat., 2021, 42(9): 98
|
|
(李 范, 卢 强, 佘亚东. 激光选区熔化GH4099高温合金成形工艺及组织性能 [J]. 材料热处理学报, 2021, 42(9): 98)
|
| [9] |
Zhang X Y, Wang S Y, Liu H, et al. Microstructure evolution and mechanical properties of additively manufactured Ni-based GH4099 superalloy via hot isostatic pressing and heat treatment [J]. Mater. Sci. Eng., 2024, 903A: 146696
|
| [10] |
Lu X F, Chen C, Zhang G H, et al. Thermo-mechanical simulation of annealing heat treatment of Ni-based GH4099 superalloy made by laser powder bed fusion [J]. Addit. Manuf., 2023, 73: 103703
|
| [11] |
Hu Y, Kang W J, Zhang H Y, et al. Hot corrosion behavior of IN738LC alloy formed by selective laser melting [J]. Corros. Sci., 2022, 198: 110154
|
| [12] |
Luo K Y, Li S H, Xu G, et al. Hot corrosion behaviors of directed energy deposited Inconel 718/Haynes 25 functionally graded material at 700 oC and 900 oC [J]. Corros. Sci., 2022, 197: 110040
|
| [13] |
Lv Y T, Liu Y J, Zhang Q, et al. Hot corrosion behavior of a novel TiC/GTD222 nickel-based composite prepared by selective laser melting [J]. Mater. Charact., 2023, 205: 113245
|
| [14] |
Chang K. Study on microstructure and mechanical properties of GH4099 superalloy by selective laser melting [D]. Dalian: Dalian University of Technology, 2022
|
|
(常 凯. 选区激光熔化GH4099高温合金显微组织与力学性能的研究 [D]. 大连: 大连理工大学, 2022)
|
| [15] |
Zhao Y N, Guo Q Y, Liu C X, et al. Effects of subsequent heat treatment on microstructure and high-temperature mechanical properties of laser 3D printed GH4099 alloy [J]. Acta Metall. Sin., 2025, 61: 165
|
|
(赵亚楠, 郭乾应, 刘晨曦 等. 后续热处理对激光3D打印GH4099合金微观组织和高温力学性能的影响 [J]. 金属学报, 2025, 61: 165)
|
| [16] |
Zhang X Y, Liang Y F, Yi F, et al. Anisotropy in microstructure and mechanical properties of additively manufactured Ni-based GH4099 alloy [J]. J. Mater. Res. Technol., 2023, 26: 6552
|
| [17] |
Chang K, Tan Y, Ma L, et al. A nickel-base superalloy with refined microstructures and excellent mechanical properties prepared by selective laser melting [J]. Mater. Lett., 2022, 324: 132700
|
| [18] |
Park J U, Jun S Y, Lee B H, et al. Alloy design of Ni-based superalloy with high γ′ volume fraction suitable for additive manufacturing and its deformation behavior [J]. Addit. Manuf., 2022, 52: 102680
|
| [19] |
Zhang J L, Fu G Y, Ning L K, et al. Hot corrosion behavior of a nickel based single crystal high temperature alloy subjected to different heat treatments [J]. J. Chin. Soc. Corros. Prot., 2024, 44: 1625
|
|
(张金龙, 付广艳, 宁礼奎 等. 两种热处理状态的镍基单晶高温合金在900 ℃下(Na2SO4 + NaCl)混合盐中热腐蚀行为研究 [J]. 中国腐蚀与防护学报, 2024, 44: 1625)
|
| [20] |
Shen J B, Cui Y, Liu L, et al. Cyclic hot corrosion behavior of DZ40M and K452 superalloys beneath molten deposit NaCl [J]. J. Chin. Soc. Corros. Prot., 2023, 43: 280
|
|
(申聚宝, 崔 宇, 刘 莉 等. DZ40M和K452高温合金在NaCl熔盐中的循环热腐蚀行为研究 [J]. 中国腐蚀与防护学报, 2023, 43: 280)
|
| No Suggested Reading articles found! |
|
|
Viewed |
|
|
|
Full text
|
|
|
|
|
Abstract
|
|
|
|
|
Cited |
|
|
|
|
| |
Shared |
|
|
|
|
| |
Discussed |
|
|
|
|