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Erschienen in: Metallurgical and Materials Transactions A 6/2022

16.04.2022 | Topical Collection: 2021 Metallurgical Processes Workshop for Young Scholars

Computational Design of Novel Ni Superalloys with Low Crack Susceptibility for Additive Manufacturing

verfasst von: Hao Yu, Jingjing Liang, Zhongnan Bi, Jinguo Li, Wei Xu

Erschienen in: Metallurgical and Materials Transactions A | Ausgabe 6/2022

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Abstract

Additive manufacturing (AM) has enabled the fabrication of innovative, geometrically complex components of metallic materials with minimal material waste. However, the application of AM in processing Ni superalloys remains challenging because of the high crack susceptibility. To address this problem, a computationally design method was applied to design novel Ni superalloys with low crack proneness as well as decent service performance. Different types of crack formation mechanisms during AM processing, i.e., the hot tear cracks and strain-age cracks, have been considered, while a series of corresponding criteria to quantitively describe the crack susceptibility were parallelly analyzed. To select the most proper criteria as optimization index in alloy design regime, a series of prototype alloys with wide range of alloying elements were printed, with their crack behaviors being quantitively captured. The freezing range criterion and strain-age crack criterion were then determined as the optimization index in the design routine. A genetic algorithm was applied to probe the compositional search domain, while a Pareto front linking the hot tear crack criterion and strain-age crack criterion was constructed by combining results of two separate optimization routes. Novel Ni compositions with optimized crack resistance as well as decent microstructural features were thereby identified. The new solutions are predicted to possess fairly better crack formation resistance compared to existing Ni superalloys. Moreover, the newly designed alloys manage to computationally outperform the existing printable alloys in all aspects of temperature capability, creep properties and oxidation resistance.

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Literatur
1.
Zurück zum Zitat T. DebRoy, H.L. Wei, J.S. Zuback, T. Mukherjee, J.W. Elmer, J.O. Milewski, A.M. Beese, A. Wilson-Heid, A. De, and W. Zhang: Prog. Mater. Sci., 2018, vol. 92, pp. 112–224.CrossRef T. DebRoy, H.L. Wei, J.S. Zuback, T. Mukherjee, J.W. Elmer, J.O. Milewski, A.M. Beese, A. Wilson-Heid, A. De, and W. Zhang: Prog. Mater. Sci., 2018, vol. 92, pp. 112–224.CrossRef
2.
Zurück zum Zitat L.E. Murr, S.M. Gaytan, D.A. Ramirez, E. Martinez, J. Hernandez, K.N. Amato, P.W. Shindo, F.R. Medina, and R.B. Wicker: J. Mater. Sci. Technol., 2012, vol. 28, pp. 1–14.CrossRef L.E. Murr, S.M. Gaytan, D.A. Ramirez, E. Martinez, J. Hernandez, K.N. Amato, P.W. Shindo, F.R. Medina, and R.B. Wicker: J. Mater. Sci. Technol., 2012, vol. 28, pp. 1–14.CrossRef
3.
Zurück zum Zitat R. Martukanitz, P. Michaleris, T. Palmer, T. DebRoy, Z.-K. Liu, and R. Otis: Addit. Manuf., 2014, vol. 1–4, pp. 52–63. R. Martukanitz, P. Michaleris, T. Palmer, T. DebRoy, Z.-K. Liu, and R. Otis: Addit. Manuf., 2014, vol. 1–4, pp. 52–63.
4.
Zurück zum Zitat Gu. Dongdong, X. Shi, R. Poprawe, D.L. Bourell, R. Setchi, and J. Zhu: Science., 2021, vol. 372, p. 1487.CrossRef Gu. Dongdong, X. Shi, R. Poprawe, D.L. Bourell, R. Setchi, and J. Zhu: Science., 2021, vol. 372, p. 1487.CrossRef
5.
Zurück zum Zitat C. Panwisawas, Y.T. Tang, and R.C. Reed: Nat. Commun., 2020, vol. 11, p. 2327.CrossRef C. Panwisawas, Y.T. Tang, and R.C. Reed: Nat. Commun., 2020, vol. 11, p. 2327.CrossRef
6.
Zurück zum Zitat R.C. Reed: The Superalloys: Fundamentals and Applications, Cambridge University Press, Cambridge, 2008. R.C. Reed: The Superalloys: Fundamentals and Applications, Cambridge University Press, Cambridge, 2008.
7.
Zurück zum Zitat S.S. Babu, N. Raghavan, J. Raplee, S.J. Foster, C. Frederick, M. Haines, R. Dinwiddie, M.K. Kirka, A. Plotkowski, Y. Lee, and R.R. Dehoff: Metall. Mater. Trans. A., 2018, vol. 49A, pp. 3764–80.CrossRef S.S. Babu, N. Raghavan, J. Raplee, S.J. Foster, C. Frederick, M. Haines, R. Dinwiddie, M.K. Kirka, A. Plotkowski, Y. Lee, and R.R. Dehoff: Metall. Mater. Trans. A., 2018, vol. 49A, pp. 3764–80.CrossRef
8.
Zurück zum Zitat T. Vilaro, C. Colin, J.D. Bartout, L. Nazé, and M. Sennour: Mater. Sci. Eng. A., 2012, vol. 534, pp. 446–51.CrossRef T. Vilaro, C. Colin, J.D. Bartout, L. Nazé, and M. Sennour: Mater. Sci. Eng. A., 2012, vol. 534, pp. 446–51.CrossRef
9.
Zurück zum Zitat M.M. Attallah, R. Jennings, X. Wang, and L.N. Carter: MRS Bull., 2016, vol. 41, pp. 758–64.CrossRef M.M. Attallah, R. Jennings, X. Wang, and L.N. Carter: MRS Bull., 2016, vol. 41, pp. 758–64.CrossRef
10.
Zurück zum Zitat P. Fernandez-Zelaia, M.M. Kirka, A.M. Rossy, Y. Lee, and S.N. Dryepondt: Acta Mater., 2021, vol. 216, p. 117133.CrossRef P. Fernandez-Zelaia, M.M. Kirka, A.M. Rossy, Y. Lee, and S.N. Dryepondt: Acta Mater., 2021, vol. 216, p. 117133.CrossRef
11.
Zurück zum Zitat I. Lopez-Galilea, B. Ruttert, J. He, T. Hammerschmidt, R. Drautz, B. Gault, and W. Theisen: Addit. Manuf., 2019, vol. 30, p. 100874. I. Lopez-Galilea, B. Ruttert, J. He, T. Hammerschmidt, R. Drautz, B. Gault, and W. Theisen: Addit. Manuf., 2019, vol. 30, p. 100874.
12.
Zurück zum Zitat H.E. Sabzi, S. Maeng, X. Liang, M. Simonelli, N.T. Aboulkhair, and P.E.J. Rivera-Díaz-del-Castillo: Addit. Manuf., 2020, vol. 34, p. 101360. H.E. Sabzi, S. Maeng, X. Liang, M. Simonelli, N.T. Aboulkhair, and P.E.J. Rivera-Díaz-del-Castillo: Addit. Manuf., 2020, vol. 34, p. 101360.
13.
Zurück zum Zitat E. Chauvet, P. Kontis, E.A. Jägle, B. Gault, D. Raabe, C. Tassin, J.-J. Blandin, R. Dendievel, B. Vayre, S. Abed, and G. Martin: Acta Mater., 2018, vol. 142, pp. 82–94.CrossRef E. Chauvet, P. Kontis, E.A. Jägle, B. Gault, D. Raabe, C. Tassin, J.-J. Blandin, R. Dendievel, B. Vayre, S. Abed, and G. Martin: Acta Mater., 2018, vol. 142, pp. 82–94.CrossRef
14.
Zurück zum Zitat N. Lu, Z. Lei, K. Hu, X. Yu, P. Li, J. Bi, S. Wu, and Y. Chen: Addit. Manuf., 2020, vol. 34, p. 101228. N. Lu, Z. Lei, K. Hu, X. Yu, P. Li, J. Bi, S. Wu, and Y. Chen: Addit. Manuf., 2020, vol. 34, p. 101228.
15.
Zurück zum Zitat Y.T. Tang, C. Panwisawas, J.N. Ghoussoub, Y. Gong, J.W.G. Clark, A.A.N. Németh, D.G. McCartney, and R.C. Reed: Acta Mater., 2021, vol. 202, pp. 417–36.CrossRef Y.T. Tang, C. Panwisawas, J.N. Ghoussoub, Y. Gong, J.W.G. Clark, A.A.N. Németh, D.G. McCartney, and R.C. Reed: Acta Mater., 2021, vol. 202, pp. 417–36.CrossRef
16.
Zurück zum Zitat S.P. Murray, K.M. Pusch, A.T. Polonsky, C.J. Torbet, G.G.E. Seward, N. Zhou, S.A.J. Forsik, P. Nandwana, M.M. Kirka, R.R. Dehoff, W.E. Slye, and T.M. Pollock: Nat. Commun., 2020, vol. 11, p. 4975.CrossRef S.P. Murray, K.M. Pusch, A.T. Polonsky, C.J. Torbet, G.G.E. Seward, N. Zhou, S.A.J. Forsik, P. Nandwana, M.M. Kirka, R.R. Dehoff, W.E. Slye, and T.M. Pollock: Nat. Commun., 2020, vol. 11, p. 4975.CrossRef
17.
Zurück zum Zitat M. Sakaguchi and M. Okazaki: Mater. Sci. Eng. A., 2018, vol. 710, pp. 121–28.CrossRef M. Sakaguchi and M. Okazaki: Mater. Sci. Eng. A., 2018, vol. 710, pp. 121–28.CrossRef
18.
Zurück zum Zitat D. Bürger, A.B. Parsa, M. Ramsperger, C. Körner, and G. Eggeler: Mater. Sci. Eng. A., 2019, vol. 762, p. 138098.CrossRef D. Bürger, A.B. Parsa, M. Ramsperger, C. Körner, and G. Eggeler: Mater. Sci. Eng. A., 2019, vol. 762, p. 138098.CrossRef
19.
Zurück zum Zitat Z. Zhou, L. Huang, Y. Shang, Y. Li, L. Jiang, and Q. Lei: Mater. Des., 2018, vol. 160, pp. 1238–49.CrossRef Z. Zhou, L. Huang, Y. Shang, Y. Li, L. Jiang, and Q. Lei: Mater. Des., 2018, vol. 160, pp. 1238–49.CrossRef
20.
Zurück zum Zitat F. Hanning, and J. Andersson: In 7th International Swedish Production Symposium, SPS16, Lund, Sweden, October 25–27, 2016 (Swedish Production Academy: Lund, 2016), pp 1–7. F. Hanning, and J. Andersson: In 7th International Swedish Production Symposium, SPS16, Lund, Sweden, October 25–27, 2016 (Swedish Production Academy: Lund, 2016), pp 1–7.
22.
Zurück zum Zitat Lu. Qi, Xu. Wei, and S. van der Zwaag: Acta Mater., 2014, vol. 77, pp. 310–23.CrossRef Lu. Qi, Xu. Wei, and S. van der Zwaag: Acta Mater., 2014, vol. 77, pp. 310–23.CrossRef
23.
Zurück zum Zitat Lu. Qi, Xu. Wei, and S. van der Zwaag: Philos Mag., 2013, vol. 93, pp. 3391–3412.CrossRef Lu. Qi, Xu. Wei, and S. van der Zwaag: Philos Mag., 2013, vol. 93, pp. 3391–3412.CrossRef
24.
Zurück zum Zitat Xu. Wei: et al. Philos Mag., 2008, vol. 88, pp. 1825–33. Xu. Wei: et al. Philos Mag., 2008, vol. 88, pp. 1825–33.
25.
Zurück zum Zitat A.R.E. Singer and P.H. Jennings: J. Inst. Met., 1946, vol. 72, pp. 197–211. A.R.E. Singer and P.H. Jennings: J. Inst. Met., 1946, vol. 72, pp. 197–211.
26.
Zurück zum Zitat J.N. DuPont, J.C. Lippold, and S.D. Kiser: Welding Metallurgy and Weldability of Nickel-Base Alloys, Wiley, Hoboken, 2009.CrossRef J.N. DuPont, J.C. Lippold, and S.D. Kiser: Welding Metallurgy and Weldability of Nickel-Base Alloys, Wiley, Hoboken, 2009.CrossRef
27.
Zurück zum Zitat T.W. Clyne and G.J. Davis: Br. Foundryman., 1981, vol. 74, pp. 65–73. T.W. Clyne and G.J. Davis: Br. Foundryman., 1981, vol. 74, pp. 65–73.
28.
Zurück zum Zitat L.N. Carter, M.M. Attallah, and R.C. Reed: Superalloys., 2012, vol. 2012, pp. 577–86.CrossRef L.N. Carter, M.M. Attallah, and R.C. Reed: Superalloys., 2012, vol. 2012, pp. 577–86.CrossRef
29.
Zurück zum Zitat S. Singh and J. Andersson: Sci. Technol. Weld. Joi., 2018, vol. 23, pp. 568–74.CrossRef S. Singh and J. Andersson: Sci. Technol. Weld. Joi., 2018, vol. 23, pp. 568–74.CrossRef
30.
Zurück zum Zitat P. Wei: School of Mechanical Engineering and Automation, Northeastern University, China, 2019. P. Wei: School of Mechanical Engineering and Automation, Northeastern University, China, 2019.
31.
Zurück zum Zitat B. Wahlmann, D. Leidel, M. Markl, and C. Körner: Curr. Comput.-Aided Drug Des., 2021, vol. 11, p. 902. B. Wahlmann, D. Leidel, M. Markl, and C. Körner: Curr. Comput.-Aided Drug Des., 2021, vol. 11, p. 902.
32.
Zurück zum Zitat Lu. Qi, Xu. Wei, and S. van der Zwaag: Metall. Mater. Trans. A., 2014, vol. 45, pp. 6067–74.CrossRef Lu. Qi, Xu. Wei, and S. van der Zwaag: Metall. Mater. Trans. A., 2014, vol. 45, pp. 6067–74.CrossRef
33.
Zurück zum Zitat Z. Zhu, H. Basoalto, N. Warnken, and R.C. Reed: Acta Mater., 2012, vol. 60, pp. 4888–4900.CrossRef Z. Zhu, H. Basoalto, N. Warnken, and R.C. Reed: Acta Mater., 2012, vol. 60, pp. 4888–4900.CrossRef
34.
Zurück zum Zitat A. Sato, Y.L. Chiu, and R.C. Reed: Acta Mater., 2011, vol. 59, pp. 225–40.CrossRef A. Sato, Y.L. Chiu, and R.C. Reed: Acta Mater., 2011, vol. 59, pp. 225–40.CrossRef
35.
Zurück zum Zitat N. Birks, G.H. Meier, and F.S. Pettit: JOM., 1994, vol. 46, pp. 42–46.CrossRef N. Birks, G.H. Meier, and F.S. Pettit: JOM., 1994, vol. 46, pp. 42–46.CrossRef
36.
Zurück zum Zitat R.C. Reed, Z. Zhu, A. Sato, and D.J. Crudden: Mater. Sci. Eng. A., 2016, vol. 2016, pp. 261–78.CrossRef R.C. Reed, Z. Zhu, A. Sato, and D.J. Crudden: Mater. Sci. Eng. A., 2016, vol. 2016, pp. 261–78.CrossRef
Metadaten
Titel
Computational Design of Novel Ni Superalloys with Low Crack Susceptibility for Additive Manufacturing
verfasst von
Hao Yu
Jingjing Liang
Zhongnan Bi
Jinguo Li
Wei Xu
Publikationsdatum
16.04.2022
Verlag
Springer US
Erschienen in
Metallurgical and Materials Transactions A / Ausgabe 6/2022
Print ISSN: 1073-5623
Elektronische ISSN: 1543-1940
DOI
https://doi.org/10.1007/s11661-022-06653-x

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