J. Mater. Sci. Technol. ›› 2023, Vol. 159: 170-183.DOI: 10.1016/j.jmst.2023.03.014
• Research Article • Previous Articles Next Articles
Supreeth Gaddama,b, Ravi Sankar Haridasa,b,c, Deepthi Tammanad, Charlie Sanabriad, Christopher J. Lammid, Diana Bermanb, Rajiv S. Mishraa,b,*
Received:
2022-11-29
Revised:
2023-03-05
Accepted:
2023-03-07
Published:
2023-10-01
Online:
2023-04-14
Contact:
*E-mail address: . Supreeth Gaddam, Ravi Sankar Haridas, Deepthi Tammana, Charlie Sanabria, Christopher J. Lammi, Diana Berman, Rajiv S. Mishra. Double-sided friction stir welding of Nitronic-40 stainless steel for application in tokamak devices[J]. J. Mater. Sci. Technol., 2023, 159: 170-183.
[1] N.J. Fisch, Phys. Rev. Lett. 41 (1978) 873-876. [2] A.J. Creely, M.J. Greenwald, S.B. Ballinger, D. Brunner, J. Canik, J. Doody, T. Fülöp, D.T. Garnier, R. Granetz, T.K. Gray, C. Holland, N.T. Howard, J.W. Hughes, J.H. Irby, V.A. Izzo, G.J. Kramer, A.Q. Kuang, B. Labombard, Y. Lin, B. Lipschultz, N.C. Logan, J.D. Lore, E.S. Marmar, K. Montes, R.T. Mumgaard, C. Paz-Soldan, C. Rea, M.L. Reinke, P. Rodriguez-Fernandez, K. Särkimäki, F. Sciortino, S.D. Scott, A. Snicker, P.B. Snyder, B.N. Sorbom, R. Sweeney, R.A .Tinguely, E.A . Tolman, M. Umansky, O.Vallhagen, J. Varje, D.G. Whyte, J.C. Wright, S.J. Wukitch, J. Zhu, J. Plasma Phys. 86 (2020) 1-25. [3] V. Barabash, A. Peacock, S. Fabritsiev, G. Kalinin, S. Zinkle, A. Rowcliffe, J.W. Rensman, A .A . Tavassoli, P. Marmy, P.J. Karditsas, F. Gillemot, M. Akiba, J. Nucl. Mater. 367-370 A (2007) 21-32. [4] D. Badrinarayan, UCLA J. Environ. Law Policy 29 (2011) 130-162. [5] W. Manheimer, Energy Environ. 27 (2016) 765-784. [6] S. Pradhan, Y. Saxena, A .V. Krivykh, I.A .E.A . Tech, Comm. Meet. Steady-State Oper. Magn. Fusion Dev. (1999) 482. [7] Z.S. Hartwig, R.F. Vieira, B.N. Sorbom, R.A. Badcock, M. Bajko, W.K. Beck, B. Castaldo, C.L. Craighill, M. Davies, J. Estrada, V. Fry, T. Golfinopoulos, A.E. Hubbard, J.H. Irby, S. Kuznetsov, C.J. Lammi, P.C. Michael, T. Mouratidis, R.A. Murray, A.T. Pfeiffer, S.Z. Pierson, A. Radovinsky, M.D. Rowell, E.E. Salazar, M. Segal, P.W. Stahle, M. Takayasu, T.L. Toland, L. Zhou, Supercond. Sci. Technol. 33 (2020) 11LT01. [8] Q. Li, Fusion Eng. Des.96-97 (2015) 338-342. [9] D.C. Larbalestier, H.W. King, Cryogen.(Guildf) 13 (1973) 160-168. [10] K. Han, R.E. Goddard, R. Niu, Y. Xin, V.J. Toplosky, Appl. Supercond. 31 (2021) 5-9. [11] R.P. Walsh, K.J. Radcliff, J. Lu, K. Han, I.O.P.Conf, Ser. Mater. Sci. Eng. 756 (2020) 012001. [12] F. Savary, R. Gallix, J. Knaster, N. Mitchell, K. Seo, IEEE Trans. Appl. Supercond. 22 (2012) 381-384. [13] N. Mitchell, A. Devred, P. Libeyre, B. Lim, F. Savary, IEEE Trans. Appl. Supercond. 22 (2012) 4200809. [14] V. Queral, E. Rincón, S. Cabrera, A. Lumsdaine, Nucl. Mater. Energy. 30 (2022) 101149. [15] A. Kumar, R.K. Soni, P. Ganesh, R. Kaul, V.K. Bhatnagar, J. Dwivedi, L.M. Kukreja, Mater. Des. 53 (2014) 86-92. [16] E.A. Pfeif, Colorado School of Mines, 2015. [17] I. Woo, Y. Kikuchi, ISIJ Int. 42 (2002) 1334-1343. [18] R.K. Dayal, N. Parvathavarthini, B. Raj, Int. Mater. Rev. 50 (2005) 129-155. [19] D. Arun, K. Devendranath Ramkumar, R. Vimala, J. Mater. Process.Technol. 271 (2019) 126-143. [20] K.H. Tseng, Int. J. Adv. Manuf. Technol. 89 (2017) 2355-2362. [21] G. Dak, C. Pandey, J. Manuf. Process. 58 (2020) 377-406. [22] C.D. Graham, B.E. Lorenz, J. Magn. Magn.Mater. 458 (2018) 15-18. [23] T. Wegrzyn, Weld. Int. 6 (1992) 690-694. [24] R. Saluja, K.M. Moeed, Int. J. Eng. Technol. Manag. Appl. Sci. 3 (2015) 23-36. [25] S.T.S. Teels, Materials For Cryogenic Service: Engineering Properties of Austenitic Stainless Steels, Nickel Dev, 1974. [26] H.B. Li, Z.H. Jiang, H. Feng, S.C. Zhang, L. Li, P.D. Han, R.D.K.Misra, J.Z. Li, Mater. Des. 84 (2015) 291-299. [27] S.H.C.Park, Y.S. Sato, H. Kokawa, K.Okamoto, S. Hirano, M. Inagaki, Mater. Sci. Forum. 539-543 (2007) 3757-3762. [28] C. Garcia, M.P. de Tiedra, Y.Blanco, O. Martin, F. Martin, Corros. Sci. 50 (2008) 2390-2397. [29] D.G. Mohan, C.S. Wu, Chin. J. Mech. Eng. 34 (2021) 137. [30] H. Li, S. Yang, S. Zhang, B. Zhang, Z. Jiang, H. Feng, P. Han, J. Li, Mater. Des. 118 (2017) 207-217. [31] ASTM E8/E8M, Annu. B. ASTM Stand 4 (2010) 1-27. [32] American National Standard Structural Welding, AWS D1.1/D1.1 M:2020, 2020, p. 634. [33] R.S. Mishra, Z.Y. Ma, Mater. Sci. Eng. R 50 (2005) 1-78. [34] A .S. Lima, A .M. Nascimento, H.F.G. Abreu, P. De Lima-Neto, J. Mater. Sci. 40 (2005) 139-144. [35] Y. Miyano, H. Fujii, Y. Sun, Y. Katada, S. Kuroda, O. Kamiya, Mater. Sci. Eng. A 528 (2011) 2917-2921. [36] K.K. Singh, S. Sangal, G.S. Murty, Mater. Sci. Technol. 18 (2002) 165-172. [37] H. Shaikh, T.V. Vinoy, H.S. Khatak, Mater. Sci. Technol. 14 (1998) 129-135. [38] S. Gaddam, R. Sankar, C. Sanabria, D. Tammana, D. Berman, R.S. Mishra, Mater. Des. 221 (2022) 110949. [39] B. Vijaya Ramnath, C. Elanchezhian, S. Rajesh, S. Jaya Prakash, B.M. Kumaar, K. Rajeshkannan, Mater. Today Proc. 5 (2018) 1832-1838. [40] M.J.R.Sandim, V. Mauro, S.S.M. Tavares, K.D. Zilnyk, H.R.Z. Sandim, J. Magn. Magn. Mater. 539 (2021) 168336. [41] S.K. Gupta, A.R. Raja, M. Vashista, M.Z.K. Yusufzai, Mater. Res. Express 6 (2019) 096110. [42] T. Masumura, Y. Seto, T. Tsuchiyama, K. Kimura, Mater. Trans. 61 (2020) 678-684. [43] Y.F. Shen, X.X. Li, X. Sun, Y.D. Wang, L. Zuo, Mater. Sci. Eng. A 552 (2012) 514-522. [44] R.D.K.Misra, P.K.C.Venkatsurya, M.C. Somani, L.P. Karjalainen, Metall. Mater. Trans. A-Phys. Metall. Mater. Sci. 43 (2012) 5286-5297. [45] R.D.K. Misra, Z. Zhang, Z. Jia, P.K.C. Venkatsurya, M.C. Somani, L.P. Karjalainen, Mater. Sci. Eng. A 548 (2012) 161-174. [46] A. Mandal, S. Morankar, M. Sen, S. Samanta, S.B. Singh, D. Chakrabarti, Metall. Mater. Trans. A-Phys.Metall. Mater. Sci. 51 (2020) 3886-3905 . |
[1] | Junjie Zhao, ChuanSong Wu, Lei Shi, Hao Su. Evolution of microstructures and intermetallic compounds at bonding interface in friction stir welding of dissimilar Al/Mg alloys with/without ultrasonic assistance [J]. J. Mater. Sci. Technol., 2023, 139(0): 31-46. |
[2] | Fengchao Liu, Pingsha Dong, Abdul Sayeed Khan, Yuning Zhang, Randy Cheng, Alan Taub, Zongyi Ma. 3D printing of fine-grained aluminum alloys through extrusion-based additive manufacturing: Microstructure and property characterization [J]. J. Mater. Sci. Technol., 2023, 139(0): 126-136. |
[3] | Mun Sik Jeong, Tak Min Park, Dong-Il Kim, Hidetoshi Fujii, Hye Ji Im, Pyuck-Pa Choi, Seung-Joon Lee, Jeongho Han. Improving toughness of medium-Mn steels after friction stir welding through grain morphology tuning [J]. J. Mater. Sci. Technol., 2022, 118(0): 243-254. |
[4] | C.L. Jia, L.H. Wu, P. Xue, H. Zhang, D.R. Ni, B.L. Xiao, Z.Y. Ma. Static spheroidization and its effect on superplasticity of fine lamellae in nugget of a friction stir welded Ti-6Al-4V joint [J]. J. Mater. Sci. Technol., 2022, 119(0): 1-10. |
[5] | Z.W. Wang, J.F. Zhang, G.M. Xie, L.H. Wu, H. Zhang, P. Xue, D.R. Ni, B.L. Xiao, Z.Y. Ma. Evolution mechanisms of microstructure and mechanical properties in a friction stir welded ultrahigh-strength quenching and partitioning steel [J]. J. Mater. Sci. Technol., 2022, 102(0): 213-223. |
[6] | Y. Tao, Z. Zhang, P. Xue, D.R. Ni, B.L. Xiao, Z.Y. Ma. Effect of post weld artificial aging and water cooling on microstructure and mechanical properties of friction stir welded 2198-T8 Al-Li joints [J]. J. Mater. Sci. Technol., 2022, 123(0): 92-112. |
[7] | C.L. Jia, L.H. Wu, P. Xue, D.R. Ni, B.L. Xiao, Z.Y. Ma. Effect of static annealing on superplastic behavior of a friction stir welded Ti-6Al-4V alloy joint and microstructural evolution during deformation [J]. J. Mater. Sci. Technol., 2022, 130(0): 112-123. |
[8] | P.L. Niu, W.Y. Li, D.L. Chen. Tensile and cyclic deformation response of friction-stir-welded dissimilar aluminum alloy joints: Strain localization effect [J]. J. Mater. Sci. Technol., 2021, 73(0): 91-100. |
[9] | Yanying Hu, Huijie Liu, Dongrui Li. Contribution of ultrasonic to microstructure and mechanical properties of tilt probe penetrating friction stir welded joint [J]. J. Mater. Sci. Technol., 2021, 85(0): 205-217. |
[10] | R.H. Duan, G.M. Xie, P. Xue, Z.Y. Ma, Z.A. Luo, C. Wang, R.D.K. Misra, G.D. Wang. Microstructural refinement mechanism and its effect on toughness in the nugget zone of high-strength pipeline steel by friction stir welding [J]. J. Mater. Sci. Technol., 2021, 93(0): 221-231. |
[11] | Wei Hu, Zhongwei Ma, Shude Ji, Qi Song, Mingfei Chen, Wenhui Jiang. Improving the mechanical property of dissimilar Al/Mg hybrid friction stir welding joint by PIO-ANN [J]. J. Mater. Sci. Technol., 2020, 53(0): 41-52. |
[12] | S.C. Han, L.H. Wu, C.Y. Jiang, N. Li, C.L. Jia, P. Xue, H. Zhang, H.B. Zhao, D.R. Ni, B.L. Xiao, Z.Y. Ma. Achieving a strong polypropylene/aluminum alloy friction spot joint via a surface laser processing pretreatment [J]. J. Mater. Sci. Technol., 2020, 50(0): 103-114. |
[13] | Weijie Ren, Dejia Liu, Qing Liu, Renlong Xin. Influence of texture distribution in magnesium welds on their non-uniform mechanical behavior: A CPFEM study [J]. J. Mater. Sci. Technol., 2020, 46(0): 168-176. |
[14] | Zhiqiang Zhang, Changshu He, Ying Li, Lei Yu, Su Zhao, Xiang Zhao. Effects of ultrasonic assisted friction stir welding on flow behavior, microstructure and mechanical properties of 7N01-T4 aluminum alloy joints [J]. J. Mater. Sci. Technol., 2020, 43(0): 1-13. |
[15] | Mariana X. Milagre, Uyime Donatus, Naga V. Mogili, Rejane Maria P. Silva, Bárbara Victória G. de Viveiros, Victor F. Pereira, Renato A. Antunes, Caruline S.C. Machado, João Victor S. Araujo, Isolda Costa. Galvanic and asymmetry effects on the local electrochemical behavior of the 2098-T351 alloy welded by friction stir welding [J]. J. Mater. Sci. Technol., 2020, 45(0): 162-175. |
Viewed | ||||||
Full text |
|
|||||
Abstract |
|
|||||