Acta Metallurgica Sinica (English Letters) ›› 2025, Vol. 38 ›› Issue (2): 338-352.DOI: 10.1007/s40195-024-01787-w
Chenghao Liu1,2, Wenchao Dong1,3, Jian Sun1(), Shanping Lu1(
)
Received:
2024-07-07
Revised:
2024-08-22
Accepted:
2024-09-03
Online:
2025-02-10
Published:
2024-10-26
Contact:
Jian Sun, Chenghao Liu, Wenchao Dong, Jian Sun, Shanping Lu. Effect of Precipitation Behavior and Deformation Twinning Evolution on the Mechanical Properties of 16Cr-25.5Ni-4.2Mo Superaustenitic Stainless Steel Weld Metals[J]. Acta Metallurgica Sinica (English Letters), 2025, 38(2): 338-352.
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Materials | C | Cr | Ni | Mo | Mn | N | Fe |
---|---|---|---|---|---|---|---|
C1 | 0.082 | 16.0 | 25.2 | 4.26 | 1.43 | 0.086 | Bal. |
C2 | 0.075 | 15.9 | 25.5 | 4.38 | 1.48 | 0.085 | Bal. |
C3 | 0.047 | 15.8 | 25.6 | 4.40 | 1.51 | 0.092 | Bal. |
Base metal | 0.097 | 15.89 | 25.6 | 6.22 | 1.42 | 0.12 | Bal. |
Table 1 Chemical composition of weld metals and base metal (wt%)
Materials | C | Cr | Ni | Mo | Mn | N | Fe |
---|---|---|---|---|---|---|---|
C1 | 0.082 | 16.0 | 25.2 | 4.26 | 1.43 | 0.086 | Bal. |
C2 | 0.075 | 15.9 | 25.5 | 4.38 | 1.48 | 0.085 | Bal. |
C3 | 0.047 | 15.8 | 25.6 | 4.40 | 1.51 | 0.092 | Bal. |
Base metal | 0.097 | 15.89 | 25.6 | 6.22 | 1.42 | 0.12 | Bal. |
Fig. 1 Illustration of the sample preparation: a sampling locations, b the dimension of the tensile sample, c the dimension of the impact sample, d analysis diagram of both tensile and impact fractures
Fe | Ni | Cr | Mo | Mn | |
---|---|---|---|---|---|
C1 | 1.21 | 1.35 | 0.76 | 0.54 | 1.09 |
C2 | 1.21 | 1.33 | 0.77 | 0.57 | 1.07 |
C3 | 1.20 | 1.29 | 0.79 | 0.61 | 1.04 |
Table 2 K-factors of major elements under the L-γ condition
Fe | Ni | Cr | Mo | Mn | |
---|---|---|---|---|---|
C1 | 1.21 | 1.35 | 0.76 | 0.54 | 1.09 |
C2 | 1.21 | 1.33 | 0.77 | 0.57 | 1.07 |
C3 | 1.20 | 1.29 | 0.79 | 0.61 | 1.04 |
Fe | Ni | Cr | Mo | Mn | C | |
---|---|---|---|---|---|---|
IDR | 46.44 | 24.06 | 18.68 | 8.83 | 1.99 | - |
DCR | 53.11 | 25.55 | 15.98 | 3.81 | 1.55 | - |
Spot 1 | 29.91 | 14.23 | 18.56 | 24.59 | 1.50 | 11.20 |
Spot 2 | 29.80 | 12.93 | 18.33 | 24.90 | 1.29 | 12.74 |
Spot 3 | 30.90 | 14.51 | 19.70 | 21.20 | 1.48 | 12.21 |
Spot 4 | 41.37 | 17.87 | 22.81 | 13.68 | 2.02 | 2.25 |
Spot 5 | 41.85 | 20.65 | 21.87 | 12.04 | 2.05 | 1.54 |
Table 3 EDX results of the IDR, DCR and precipitated phase in Fig. 3 (wt%)
Fe | Ni | Cr | Mo | Mn | C | |
---|---|---|---|---|---|---|
IDR | 46.44 | 24.06 | 18.68 | 8.83 | 1.99 | - |
DCR | 53.11 | 25.55 | 15.98 | 3.81 | 1.55 | - |
Spot 1 | 29.91 | 14.23 | 18.56 | 24.59 | 1.50 | 11.20 |
Spot 2 | 29.80 | 12.93 | 18.33 | 24.90 | 1.29 | 12.74 |
Spot 3 | 30.90 | 14.51 | 19.70 | 21.20 | 1.48 | 12.21 |
Spot 4 | 41.37 | 17.87 | 22.81 | 13.68 | 2.02 | 2.25 |
Spot 5 | 41.85 | 20.65 | 21.87 | 12.04 | 2.05 | 1.54 |
Fe | Cr | Ni | Mo | |
---|---|---|---|---|
C1 | 0.90 ± 0.02 | 1.17 ± 0.02 | 0.97 ± 0.02 | 1.86 ± 0.15 |
C2 | 0.91 ± 0.02 | 1.14 ± 0.05 | 0.99 ± 0.02 | 1.69 ± 0.10 |
C3 | 0.94 ± 0.01 | 1.09 ± 0.02 | 1.01 ± 0.01 | 1.45 ± 0.04 |
Table 4 SR of major elements of C1-C3 weld metals
Fe | Cr | Ni | Mo | |
---|---|---|---|---|
C1 | 0.90 ± 0.02 | 1.17 ± 0.02 | 0.97 ± 0.02 | 1.86 ± 0.15 |
C2 | 0.91 ± 0.02 | 1.14 ± 0.05 | 0.99 ± 0.02 | 1.69 ± 0.10 |
C3 | 0.94 ± 0.01 | 1.09 ± 0.02 | 1.01 ± 0.01 | 1.45 ± 0.04 |
Fig. 4 TEM images of precipitated phases in the C1 weld metal: a STEM image, b STEM-EDS mappings of a, c BF image, d SAED pattern of M6C, e HRTEM and FFT images of M23C6
Fig. 15 EBSD characterization of the longitudinal section of impact fracture, and instrumented Charpy impact test: a-c and d-f the IPF, KAM, and load-displacement curves of C1 and C3, respectively
[1] | L. Ge, T. Lu, J. Shan, D. Liu, Ann. Nucl.Energy 135, 106967 (2020) |
[2] | F. Chen, X. Dong, Y. Tang, A. Huang, M. Zhang, Q. Kang, Z. Shu, Z.X. Xing, Processes 10, 704 (2022) |
[3] | G.V. Prasad Reddy, V. Karthik, S. Latha, C.N. Venkiteswaran, D. Ramachandran, S.K. Albert, Mater. Perform. Charact. 11, 2 (2022) |
[4] | T. Jayakumar, M.D. Mathew, K. Laha, Procedia Eng. 55, 259 (2013) |
[5] | W. Tian, D. Wu, Y. Li, S. Lu, Int. J. Press. Vessels Pip. 197, 104637 (2022) |
[6] | A. Kulkarni, D.K. Dwivedi, M. Vasudevan, J. Mater. Process. Technol. 274, 116280 (2019) |
[7] | A.K. Bhaduri, S. Venkadesan, P. Rodriguez, P.G. Mukunda, Int. J. Press. Vessels Pip. 58, 251 (1994) |
[8] | D.W. Rathod, S. Pandey, S. Aravindan, P.K. Singh, Acta Metall. Sin. -Engl. Lett. 30, 120 (2017) |
[9] | Y. You, R. Shiue, R. Shiue, C. Chen, J. Mater. Sci. Lett. 20, 1429 (2001) |
[10] | K. Karthick, S. Malarvizhi, V. Balasubramanian, A. Gourav Rao, Metallogr. Microstruct. Anal. 7, 209 (2018) |
[11] | D.W. Rathod, P.K. Singh, S. Pandey, S. Aravindan, Mater. Sci. Eng. A 666, 100 (2016) |
[12] | H. Ming, J. Wang, E. Han, Mater. Charact. 139, 186 (2018) |
[13] | Z. Fei, Z. Pan, D. Cuiuri, H. Li, W. Huang, Z. Peng, Int. J. Adv. Manuf. Technol. 108, 3207 (2020) |
[14] | T. Furukawa, S. Kato, E. Yoshida, J. Nucl. Mater. 392, 249 (2009) |
[15] | W. Tian, D. Wu, S. Lu, Acta Metall. Sin. -Engl. Lett. 35, 577 (2022) |
[16] | L. Brissonneau, J. Nucl. Mater. 423, 67 (2012) |
[17] | K. Devendranath Ramkumar, G. Chaitanya, J.L. Narasimha Varma, A. Choudhary, N. Arivazhagan, R. Oyyaravelu, J. Mater. Res. 30, 2369 (2015) |
[18] | K.D. Ramkumar, J.L.N. Varma, G. Chaitanya, S. Logesh, M. Krishnan, N. Arivazhagan, N.S. Shanmugam, Int. J. Adv. Manuf. Technol. 93, 129 (2017) |
[19] | S.W. Banovic, J.N. Dupont, A.R. Marder, Sci. Technol. Weld. Join. 7, 374 (2002) |
[20] | P. Malatyńska, J. Głownia, Metalurgija 52, 15 (2013) |
[21] | K. Li, Z. Zhang, L. Li, P. Zhang, J. Yang, Z. Zhang, Acta Metall. Sin. -Engl. Lett. 31, 873 (2018) |
[22] | M. GhasriKhouzani, J.R. McDermid, Mater. Sci. Eng. A 621, 118 (2015) |
[23] | X. Peng, D. Zhu, Z. Hu, M. Wang, L. Liu, H. Liu, J. Iron. Steel Res. Int. 21, 116 (2014) |
[24] | H. Mughrabi, Mater. Sci. Eng. A 387-389, 209 (2004) |
[25] | J. Dai, B. Tang, Y. Chu, K. Liu, G. Zheng, X. Chen, J. Li, P. Zhang, Mater. Sci. Eng. A 890, 145900 (2024) |
[26] | J. Talonen, H. Hänninen, Acta Mater. 55, 6108 (2007) |
[27] | K.M. Rahman, V.A. Vorontsov, D. Dye, Acta Mater. 89, 247 (2015) |
[28] | S. Huang, Q. Zhao, Y. Zhao, C. Lin, C. Wu, W. Jia, C. Mao, V. Ji, J. Mater. Sci. Technol. 79, 147 (2021) |
[29] | C. Lee, S. Roh, C. Lee, S. Hong, Mater. Chem. Phys. 207, 91 (2018) |
[30] | W. Xiong, S. Zhou, D. Zhang, Z. Huang, Z. Wang, H. Wu, L. Jiang, Mater. Sci. Technol. 37, 292 (2021) |
[31] | A.F. Padilha, P.R. Rios, ISIJ Int. 42, 325 (2002) |
[32] | I. Kalashnikov, O. Acselrad, A. Shalkevich, L.C. Pereira, J. Mater. Eng. Perform. 9, 597 (2000) |
[33] | J.E. Ayers, J. Cryst.Growth 135, 71 (1994) |
[34] | P. Gay, P.B. Hirsch, A. Kelly, Acta Metall. 1, 315 (1953) |
[35] | V.K. Aggarwal, S. Sengupta, A. Dey, A. Ghatak, B. Ghosh, S. Bysakh, A. Singha, D. Das, A.K. Raychaudhuri, Mater. Sci. Eng. B 302, 117242 (2024) |
[36] | A.S. Alomari, N. Kumar, M. Hawary, K.L. Murty, Metall. Mater. Trans. A 53, 3194 (2022) |
[37] | W. Tian, S. Wei, D. Wu, J. Sun, W. Dong, S. Lu, Mater. Sci. Eng. A 852, 143727 (2022) |
[38] | R. Sridhar, K.D. Ramkumar, N. Arivazhagan, Acta Metall. Sin. -Engl. Lett. 27, 1018 (2014) |
[39] | J. Ren, Q. Chen, J. Chen, Z. Liu, Mater. Sci. Eng. A 811, 141063 (2021) |
[40] | J. Moon, S. Park, J.H. Jang, T. Lee, C. Lee, H. Hong, H.N. Han, J. Lee, B.H. Lee, C. Lee, Acta Mater. 147, 226 (2018) |
[41] | N. Ohkubo, K. Miyakusu, Y. Uematsu, H. Kimura, ISIJ Int. 34, 764 (1994) |
[42] | G.I. Taylor, F.R.S, Proc. R. Soc. Lond. Ser. Contain. Pap.Math. Phys. Character 145, 362 (1934) |
[43] | J. Liu, Y. Jin, X. Fang, C. Chen, Q. Feng, X. Liu, Y. Chen, T. Suo, F. Zhao, T. Huang, H. Wang, X. Wang, Y. Fang, Y. Wei, L. Meng, J. Lu, W. Yang, Sci. Rep. 6, 35345 (2016) |
[44] | V. Shterner, I.B. Timokhina, H. Beladi, Mater. Sci. Eng. A 669, 437 (2016) |
[45] | S. Allain, J.P. Chateau, O. Bouaziz, S. Migot, N. Guelton, Mater. Sci. Eng. A 387-389, 158 (2004) |
[46] | U.F. Kocks, H. Mecking, Prog. Mater. Sci. 48, 171 (2003) |
[47] | K. Renard, P.J. Jacques, Mater. Sci. Eng. A 542, 8 (2012) |
[48] | O.A. Zambrano, J. Mater. Sci. 53, 14003 (2018) |
[49] | S. Li, C. Guo, L. Hao, Y. Kang, Y. An, Mater. Sci. Eng. A 759, 624 (2019) |
[50] | L. Lei, Y. Zhao, Q. Zhao, C. Wu, S. Huang, W. Jia, W. Zeng, Mater. Sci. Eng. A 801, 140411 (2021) |
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