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Published in: Metallurgical and Materials Transactions A 11/2019

26-08-2019

Multi-Length Scale Characterization of Microstructure Evolution and Its Consequence on Mechanical Properties in Dissimilar Friction Stir Welding of Titanium to Aluminum

Authors: Amlan Kar, Satyam Suwas, Satish V. Kailas

Published in: Metallurgical and Materials Transactions A | Issue 11/2019

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Abstract

In dissimilar friction stir welding (FSW), the weld nugget is composed of two elements, which are mechanically mixed. This microstructure helps enhance the mechanical properties when they are homogeneously mixed, and the particles are sub-micron in size. Therefore, it is important to understand the mechanism of the particle formation and their distribution for engineering the mechanical properties of the weld. In the present investigation, dissimilar FSW between commercial purity Al and Ti has been carried out. The weld nugget consisted of distributed Ti particles in an Al matrix. The distribution of the Ti particles in the weld nugget was characterized using X-ray micro-computed tomography (XCT). Microstructural evolution in Ti and Al was examined using a scanning electron microscope (SEM) equipped with an energy dispersive spectrometer (EDS), X-ray diffraction and electron back-scattered diffraction (EBSD). Hardness and tensile tests were carried out to determine the integrity of the welds. The XCT result shows that the weld nugget contains Ti particles of variable size. The finer particles of Ti are distributed homogeneously in the weld nugget, unlike large particles. The deformation mechanisms and microstructural evolution of the Ti interface and Al matrix are investigated using EBSD. It is observed that the microstructure of both Ti and Al is substantially refined. However, for a given grain in Al, the boundary is of mixed character, namely low- and high-angle boundaries. Hardness data of the weld indicate large variation within the nugget region. The tensile test sample revealed that the failure of the sample occurs on the Al side of the weld. The fractograph indicates ductile and brittle modes of fracture with a bimodal distribution of dimples at the surface. Lack of twining and fine grains (40 to 5 µm) at the Ti interface indicates high-temperature deformation. Deformation of Ti at low temperature and high strain rate is caused by adiabatic shear banding (ASB). In these shear bands, a high level of grain refinement is observed and is a path for easy crack propagation. It is proposed that the ASB-controlled deformation of Ti leads to a recrystallized microstructure at the interface and fragmentation of Ti. These Ti particles undergo further fragmentation to form smaller particles. On the other hand, microstructural evolution in Al is gradual because of the high stacking fault energy, which leads to continuous dynamic recrystallization (CDRX) through the dynamic recovery (DRV) mechanism. The mechanical properties of the weld depend on the characteristics of particles in the Al matrix. Proper control of the fragmentation and distribution of Ti particles and interface property can lead to superior mechanical properties of the weld.

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Appendix
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Literature
1.
go back to reference B.J. Wilden and S. Herz: in: Proceedings of The 3rd International Brazing and Soldering Conference, April 24–26, 2006, Crown Plaza Riverwalk Hotel, San Antonio, TX, 2006, pp. 338–43. B.J. Wilden and S. Herz: in: Proceedings of The 3rd International Brazing and Soldering Conference, April 24–26, 2006, Crown Plaza Riverwalk Hotel, San Antonio, TX, 2006, pp. 338–43.
2.
go back to reference A. Fuji, Science and Technology of Welding and Joining, 2002, vol. 7, pp. 413-416.CrossRef A. Fuji, Science and Technology of Welding and Joining, 2002, vol. 7, pp. 413-416.CrossRef
3.
go back to reference A.F. Y.C. Kim, Science and Technology of Welding and Joining, 2002, vol. 7 pp. 149-154.CrossRef A.F. Y.C. Kim, Science and Technology of Welding and Joining, 2002, vol. 7 pp. 149-154.CrossRef
4.
go back to reference C.Q. Zhang, J.D. Robson, O. Ciuca, P.B. Prangnell, Materials Characterization, 2014, vol. 97 pp. 83-91.CrossRef C.Q. Zhang, J.D. Robson, O. Ciuca, P.B. Prangnell, Materials Characterization, 2014, vol. 97 pp. 83-91.CrossRef
5.
go back to reference T.S. Thomas Lienert, S. Babu, and V. Acoff: Welding Fundamentals and Processes, ASM International, Materials Park, OH, 2011. T.S. Thomas Lienert, S. Babu, and V. Acoff: Welding Fundamentals and Processes, ASM International, Materials Park, OH, 2011.
6.
go back to reference R. Jiangwei, L. Yajiang, F. Tao, Microstructure characteristics in the interface zone of Ti/Al diffusion bonding, Materials Letters, 2002, vol. 56, pp. 647-652.CrossRef R. Jiangwei, L. Yajiang, F. Tao, Microstructure characteristics in the interface zone of Ti/Al diffusion bonding, Materials Letters, 2002, vol. 56, pp. 647-652.CrossRef
7.
go back to reference W. Liu, L. Long, Y. Ma, L. Wu, Journal of Alloys and Compounds, 2015, vol. 643, pp.34-39.CrossRef W. Liu, L. Long, Y. Ma, L. Wu, Journal of Alloys and Compounds, 2015, vol. 643, pp.34-39.CrossRef
8.
go back to reference D.-f. Mo, T.-f. Song, Y.-j. Fang, X.-s. Jiang, C.Q. Luo, M.D. Simpson, Z.-p. Luo, Advances in Materials Science and Engineering, 2018, vol. 2018, pp. 15-16.CrossRef D.-f. Mo, T.-f. Song, Y.-j. Fang, X.-s. Jiang, C.Q. Luo, M.D. Simpson, Z.-p. Luo, Advances in Materials Science and Engineering, 2018, vol. 2018, pp. 15-16.CrossRef
9.
10.
go back to reference D. Bakavos, P.B. Prangnell, Materials Science and Engineering: A, 2010, vol. 527, pp. 6320-6334.CrossRef D. Bakavos, P.B. Prangnell, Materials Science and Engineering: A, 2010, vol. 527, pp. 6320-6334.CrossRef
11.
go back to reference A. Panteli, J.D. Robson, Y.-C. Chen, P.B. Prangnell, Metallurgical and Materials Transactions A, 2013, vol. 44, pp. 5773-5781.CrossRef A. Panteli, J.D. Robson, Y.-C. Chen, P.B. Prangnell, Metallurgical and Materials Transactions A, 2013, vol. 44, pp. 5773-5781.CrossRef
12.
go back to reference F. Balle, J. Magin, Materials Science Forum, 2014, vol. 794-796, pp. 345-350.CrossRef F. Balle, J. Magin, Materials Science Forum, 2014, vol. 794-796, pp. 345-350.CrossRef
13.
go back to reference N. Tsuji, Y. Saito, S.-H. Lee, Y. Minamino, Advanced Engineering Materials, 2003, vol. 5, pp. 338-344.CrossRef N. Tsuji, Y. Saito, S.-H. Lee, Y. Minamino, Advanced Engineering Materials, 2003, vol. 5, pp. 338-344.CrossRef
14.
go back to reference H. Yu, A.K. Tieu, C. Lu, A. Godbole, Metallurgical and Materials Transactions A, 2014, vol. 45, pp. 4038-4045.CrossRef H. Yu, A.K. Tieu, C. Lu, A. Godbole, Metallurgical and Materials Transactions A, 2014, vol. 45, pp. 4038-4045.CrossRef
15.
go back to reference A. Azushima, R. Kopp, A. Korhonen, D.Y. Yang, F. Micari, G.D. Lahoti, P. Groche, J. Yanagimoto, N. Tsuji, A. Rosochowski, and A. Yanagida: CIRP Annu. Manuf. Technol., 2008, vol. 57, pp. 716–35. A. Azushima, R. Kopp, A. Korhonen, D.Y. Yang, F. Micari, G.D. Lahoti, P. Groche, J. Yanagimoto, N. Tsuji, A. Rosochowski, and A. Yanagida: CIRP Annu. Manuf. Technol., 2008, vol. 57, pp. 716–35.
16.
go back to reference M. Kimura, S. Nakamura, M. Kusaka, K. Seo, A. Fuji, Science and Technology of Welding and Joining, 2005, vol. 10, pp. 666-672.CrossRef M. Kimura, S. Nakamura, M. Kusaka, K. Seo, A. Fuji, Science and Technology of Welding and Joining, 2005, vol. 10, pp. 666-672.CrossRef
17.
go back to reference L. Kumar, K.U. Yazar, S. Pramanik, Materials Science and Engineering: A, 2019, vol. 754, pp. 400-410.CrossRef L. Kumar, K.U. Yazar, S. Pramanik, Materials Science and Engineering: A, 2019, vol. 754, pp. 400-410.CrossRef
18.
go back to reference V. Buchibabu, G.M. Reddy, D. Kulkarni, A. De, Journal of Materials Engineering and Performance, 2016, vol. 25, pp. 1163-1171.CrossRef V. Buchibabu, G.M. Reddy, D. Kulkarni, A. De, Journal of Materials Engineering and Performance, 2016, vol. 25, pp. 1163-1171.CrossRef
19.
go back to reference B. Vicharapu, H. Liu, H. Fujii, K. Narasaki, N. Ma, and A. De: Modeling of residual stresses in stationary shoulder friction stir welding, in: The National Meeting of JWS, 2019, vol. 2019s, pp. 52–55. B. Vicharapu, H. Liu, H. Fujii, K. Narasaki, N. Ma, and A. De: Modeling of residual stresses in stationary shoulder friction stir welding, in: The National Meeting of JWS, 2019, vol. 2019s, pp. 52–55.
20.
go back to reference A. Kar, S.K. Choudhury, S. Suwas, S.V. Kailas, Materials Characterization, 2018, vol. 145, pp. 402-412.CrossRef A. Kar, S.K. Choudhury, S. Suwas, S.V. Kailas, Materials Characterization, 2018, vol. 145, pp. 402-412.CrossRef
21.
go back to reference A. Kar, S.V. Kailas, S. Suwas, Journal of Materials Engineering and Performance, 2018, vol. 27, pp. 6016–6026.CrossRef A. Kar, S.V. Kailas, S. Suwas, Journal of Materials Engineering and Performance, 2018, vol. 27, pp. 6016–6026.CrossRef
22.
go back to reference A. Kar, S. Suwas, S.V. Kailas, Materials Science and Engineering: A, 2018, vol. 733, pp. 199-210.CrossRef A. Kar, S. Suwas, S.V. Kailas, Materials Science and Engineering: A, 2018, vol. 733, pp. 199-210.CrossRef
23.
go back to reference R.S. Mishra and H. Sidhar: Chapter 5—friction stir welding of Al–Li Alloys, in: Friction Stir Welding of 2XXX Aluminum Alloys Including Al-Li Alloys, ed. R.S. Mishra and Sidhar, Butterworth-Heinemann, Oxford, 2017, pp. 79–95. R.S. Mishra and H. Sidhar: Chapter 5—friction stir welding of Al–Li Alloys, in: Friction Stir Welding of 2XXX Aluminum Alloys Including Al-Li Alloys, ed. R.S. Mishra and Sidhar, Butterworth-Heinemann, Oxford, 2017, pp. 79–95.
24.
go back to reference R.S. Mishra and H. Sidhar: Chapter 4—FSW of Al–Cu and Al–Cu–Mg Alloys, in: Friction Stir Welding of 2XXX Aluminum Alloys Including Al-Li Alloys, ed. R.S. Mishra and Sidhar, Butterworth-Heinemann, Elsevier Science, Oxford, 2016, pp. 79–95. R.S. Mishra and H. Sidhar: Chapter 4—FSW of Al–Cu and Al–Cu–Mg Alloys, in: Friction Stir Welding of 2XXX Aluminum Alloys Including Al-Li Alloys, ed. R.S. Mishra and Sidhar, Butterworth-Heinemann, Elsevier Science, Oxford, 2016, pp. 79–95.
25.
go back to reference N. Kumar, R.S. Mishra, and W. Yuan: Friction Stir Welding of Dissimilar Alloys and Materials, Elsevier Science, 2015, pp. 15–114. N. Kumar, R.S. Mishra, and W. Yuan: Friction Stir Welding of Dissimilar Alloys and Materials, Elsevier Science, 2015, pp. 15–114.
26.
go back to reference R.S. Mishra, Z.Y. Ma, Friction stir welding and processing, Materials Science and Engineering: R: Reports, 2015, vol. 50, pp. 1-78.CrossRef R.S. Mishra, Z.Y. Ma, Friction stir welding and processing, Materials Science and Engineering: R: Reports, 2015, vol. 50, pp. 1-78.CrossRef
27.
go back to reference J.-W. Choi, H. Liu, H. Fujii, Materials Science and Engineering: A, 2018, vol. 730, pp. 168-176.CrossRef J.-W. Choi, H. Liu, H. Fujii, Materials Science and Engineering: A, 2018, vol. 730, pp. 168-176.CrossRef
28.
29.
go back to reference A. Shyam, S. Suwas, S. Bhargava, Practical Metallography, 1997, vol. 34, pp. 264-277. A. Shyam, S. Suwas, S. Bhargava, Practical Metallography, 1997, vol. 34, pp. 264-277.
30.
go back to reference Y. Li, L. Murr, J. McClure, Scripta Materialia, 1999, vol. 40, pp. 1041-1046.CrossRef Y. Li, L. Murr, J. McClure, Scripta Materialia, 1999, vol. 40, pp. 1041-1046.CrossRef
31.
go back to reference Y. Li, L.E. Murr, J.C. McClure, Materials Science and Engineering: A, 1999, vol. 271, pp. 213-223.CrossRef Y. Li, L.E. Murr, J.C. McClure, Materials Science and Engineering: A, 1999, vol. 271, pp. 213-223.CrossRef
32.
go back to reference Z. Zhang, D.E. Eakins, F.P.E. Dunne, International Journal of Plasticity, 2016, vol. 79, pp. 196-216.CrossRef Z. Zhang, D.E. Eakins, F.P.E. Dunne, International Journal of Plasticity, 2016, vol. 79, pp. 196-216.CrossRef
33.
go back to reference U. Dressler, G. Biallas, and U. Alfaro Mercado: Mater. Sci. Eng. A, 2009, vol. 526, pp. 113–17. U. Dressler, G. Biallas, and U. Alfaro Mercado: Mater. Sci. Eng. A, 2009, vol. 526, pp. 113–17.
34.
go back to reference K.S. Suresh, N. Kumar, R. S. Mishra, S. Suwas, Materials Science Forum, 2013, vol. 753, pp. 247-250.CrossRef K.S. Suresh, N. Kumar, R. S. Mishra, S. Suwas, Materials Science Forum, 2013, vol. 753, pp. 247-250.CrossRef
35.
go back to reference N. Nadammal, S.V. Kailas, J. Szpunar, S. Suwas, JOM, 2015, vol. 67, pp. 1014-1021.CrossRef N. Nadammal, S.V. Kailas, J. Szpunar, S. Suwas, JOM, 2015, vol. 67, pp. 1014-1021.CrossRef
36.
go back to reference N. Nadammal, S.V. Kailas, J. Szpunar, S. Suwas, Materials Characterization, 2018, vol. 140, pp. 134-146.CrossRef N. Nadammal, S.V. Kailas, J. Szpunar, S. Suwas, Materials Characterization, 2018, vol. 140, pp. 134-146.CrossRef
37.
go back to reference H.C. Madhu, P. Ajay Kumar, C.S. Perugu, and S.V. Kailas: J. Mater. Eng. Perform., 2018, vol. 27, pp. 1318–26. H.C. Madhu, P. Ajay Kumar, C.S. Perugu, and S.V. Kailas: J. Mater. Eng. Perform., 2018, vol. 27, pp. 1318–26.
38.
go back to reference A. Kumar, D. Yadav, C.S. Perugu, S.V. Kailas, Materials & Design, 2017, vol. 113, pp. 99-108.CrossRef A. Kumar, D. Yadav, C.S. Perugu, S.V. Kailas, Materials & Design, 2017, vol. 113, pp. 99-108.CrossRef
39.
go back to reference A. Kar, S.V. Kailas, and S. Suwas: Trans. Indian Inst. Met., 2019, vol. 72 (6), 1533–36. A. Kar, S.V. Kailas, and S. Suwas: Trans. Indian Inst. Met., 2019, vol. 72 (6), 1533–36.
40.
go back to reference A. Kar, S. Suwas, S.V. Kailas, The International Journal of Advanced Manufacturing Technology, 2018, vol. 100, pp. 435–443 .CrossRef A. Kar, S. Suwas, S.V. Kailas, The International Journal of Advanced Manufacturing Technology, 2018, vol. 100, pp. 435–443 .CrossRef
41.
go back to reference Y. Wei, J. Li, J. Xiong, F. Huang, F. Zhang, S.H. Raza, Materials Characterization, 2012, vol. 71, pp. 1-5.CrossRef Y. Wei, J. Li, J. Xiong, F. Huang, F. Zhang, S.H. Raza, Materials Characterization, 2012, vol. 71, pp. 1-5.CrossRef
42.
go back to reference M. Sadeghi-Ghogheri, M. Kasiri-Asgarani, K. Amini, Kovove Mater, 2016, vol. 54, pp. 71-75. M. Sadeghi-Ghogheri, M. Kasiri-Asgarani, K. Amini, Kovove Mater, 2016, vol. 54, pp. 71-75.
43.
go back to reference K.-S. Bang, K.-J. Lee, H.-S. Bang, H.-S. Bang, MATERIALS TRANSACTIONS, 2011, vol. 52, pp. 974-978.CrossRef K.-S. Bang, K.-J. Lee, H.-S. Bang, H.-S. Bang, MATERIALS TRANSACTIONS, 2011, vol. 52, pp. 974-978.CrossRef
44.
go back to reference Z. Song, K. Nakata, A. Wu, J. Liao, L. Zhou, Materials & Design, 2014, vol. 57, pp. 269-278.CrossRef Z. Song, K. Nakata, A. Wu, J. Liao, L. Zhou, Materials & Design, 2014, vol. 57, pp. 269-278.CrossRef
45.
go back to reference M. Meisnar, J.M. Bennett, D. Andrews, S. Dodds, R. Freeman, R. Bellarosa, D. Adams, A.F. Norman, T. Rohr, T. Ghidini, Materials Characterization, 2019, vol. 147, pp. 286-294.CrossRef M. Meisnar, J.M. Bennett, D. Andrews, S. Dodds, R. Freeman, R. Bellarosa, D. Adams, A.F. Norman, T. Rohr, T. Ghidini, Materials Characterization, 2019, vol. 147, pp. 286-294.CrossRef
46.
go back to reference H. Zhao, M. Yu, Z. Jiang, L. Zhou, X. Song, Journal of Alloys and Compounds, 2019, vol. 789, pp. 139-149.CrossRef H. Zhao, M. Yu, Z. Jiang, L. Zhou, X. Song, Journal of Alloys and Compounds, 2019, vol. 789, pp. 139-149.CrossRef
47.
go back to reference C.L. Yuhua Chen, Geping Liu, The Open Materials Science Journal, 2011, vol. 5, pp. 256-261. C.L. Yuhua Chen, Geping Liu, The Open Materials Science Journal, 2011, vol. 5, pp. 256-261.
48.
go back to reference Y.-h. Chen, Q. Ni, L.-m. Ke, Transactions of Nonferrous Metals Society of China, 2012, vol. 22, pp. 299-304.CrossRef Y.-h. Chen, Q. Ni, L.-m. Ke, Transactions of Nonferrous Metals Society of China, 2012, vol. 22, pp. 299-304.CrossRef
49.
50.
go back to reference K. Kumar, S. V. Kailas, Science and Technology of Welding and Joining, 2010, vol. 15, pp. 305-311.CrossRef K. Kumar, S. V. Kailas, Science and Technology of Welding and Joining, 2010, vol. 15, pp. 305-311.CrossRef
51.
go back to reference A. Wu, Z. Song, K. Nakata, J. Liao, L. Zhou, Materials & Design, 2015, vol. 71, pp. 85-92.CrossRef A. Wu, Z. Song, K. Nakata, J. Liao, L. Zhou, Materials & Design, 2015, vol. 71, pp. 85-92.CrossRef
52.
go back to reference A. Slipenyuk, V. Kuprin, Y. Milman, V. Goncharuk, J. Eckert, Acta Materialia, 2006, vol. 54, pp. 157-166.CrossRef A. Slipenyuk, V. Kuprin, Y. Milman, V. Goncharuk, J. Eckert, Acta Materialia, 2006, vol. 54, pp. 157-166.CrossRef
53.
go back to reference A. Slipenyuk, V. Kuprin, Y. Milman, J.E. Spowart, D.B. Miracle, Materials Science and Engineering: A, 2004, vol. 381, pp. 165-170.CrossRef A. Slipenyuk, V. Kuprin, Y. Milman, J.E. Spowart, D.B. Miracle, Materials Science and Engineering: A, 2004, vol. 381, pp. 165-170.CrossRef
54.
go back to reference B. Derby, C. Lawrence, P. Mummery, Intrinsic and extrinsic fracture mechanisms in inorganic composite systems, TMS, Warrendale, USA, 1995, pp. 39. B. Derby, C. Lawrence, P. Mummery, Intrinsic and extrinsic fracture mechanisms in inorganic composite systems, TMS, Warrendale, USA, 1995, pp. 39.
55.
go back to reference A.P. Kumar, R. Raj, S.V. Kailas, Materials & Design, 2015, vol. 85, pp. 626-634.CrossRef A.P. Kumar, R. Raj, S.V. Kailas, Materials & Design, 2015, vol. 85, pp. 626-634.CrossRef
56.
go back to reference Y.B. Liu, S.C. Lim, L. Lu, M.O. Lai, Journal of Materials Science, 1994, vol. 29, pp. 1999-2007.CrossRef Y.B. Liu, S.C. Lim, L. Lu, M.O. Lai, Journal of Materials Science, 1994, vol. 29, pp. 1999-2007.CrossRef
57.
go back to reference V. Goyal, R. Ravi, S.R. Bakshi, P.R. Soni, Journal of Materials Engineering and Performance, 2019, vol. 28, pp. 117-122.CrossRef V. Goyal, R. Ravi, S.R. Bakshi, P.R. Soni, Journal of Materials Engineering and Performance, 2019, vol. 28, pp. 117-122.CrossRef
58.
go back to reference S.-L. Kuo, Y.-C. Chen, M.-D. Ger, W.-H. Hwu, Materials Chemistry and Physics, 2004, vol. 86, pp. 5-10.CrossRef S.-L. Kuo, Y.-C. Chen, M.-D. Ger, W.-H. Hwu, Materials Chemistry and Physics, 2004, vol. 86, pp. 5-10.CrossRef
59.
go back to reference R.S. Mishra and M.W. Mahoney: Friction Stir Welding and Processing, ASM International, 2007, pp. 10–212. R.S. Mishra and M.W. Mahoney: Friction Stir Welding and Processing, ASM International, 2007, pp. 10–212.
60.
go back to reference H. Schmidt, J. Hattel, Modelling and Simulation in Materials Science and Engineering, 2005, vol. 13, pp. 77.CrossRef H. Schmidt, J. Hattel, Modelling and Simulation in Materials Science and Engineering, 2005, vol. 13, pp. 77.CrossRef
61.
62.
go back to reference S. Dixit, S. Kashyap, S.V. Kailas, K. Chattopadhyay, Journal of Alloys and Compounds, 2018, vol. 767, pp. 1072-1082.CrossRef S. Dixit, S. Kashyap, S.V. Kailas, K. Chattopadhyay, Journal of Alloys and Compounds, 2018, vol. 767, pp. 1072-1082.CrossRef
63.
go back to reference S. Nemat-Nasser, W.G. Guo, J.Y. Cheng, Acta Materialia, 1999, vol. 47, pp. 3705-3720.CrossRef S. Nemat-Nasser, W.G. Guo, J.Y. Cheng, Acta Materialia, 1999, vol. 47, pp. 3705-3720.CrossRef
64.
go back to reference P.G. Partridge, Metallurgical Reviews, 1967, vol. 12, pp. 169-194. P.G. Partridge, Metallurgical Reviews, 1967, vol. 12, pp. 169-194.
65.
66.
go back to reference N.P. Gurao, R. Kapoor, S. Suwas, Acta Materialia, 2011, vol. 59, pp. 3431-3446.CrossRef N.P. Gurao, R. Kapoor, S. Suwas, Acta Materialia, 2011, vol. 59, pp. 3431-3446.CrossRef
67.
go back to reference E. Yu, I. Kim, D.H. Shin, J. Kim, Materials Transactions, 2008, vol. 49, pp. 38-40.CrossRef E. Yu, I. Kim, D.H. Shin, J. Kim, Materials Transactions, 2008, vol. 49, pp. 38-40.CrossRef
68.
go back to reference A.M. Garde, E. Aigeltinger, R.E. Reed-Hill, Metallurgical Transactions, 1973, vol. 4, pp. 2461-2468.CrossRef A.M. Garde, E. Aigeltinger, R.E. Reed-Hill, Metallurgical Transactions, 1973, vol. 4, pp. 2461-2468.CrossRef
69.
go back to reference J. Hodowany, G. Ravichandran, A.J. Rosakis, P. Rosakis, Experimental Mechanics, 2000, vol. 40, pp. 113-123.CrossRef J. Hodowany, G. Ravichandran, A.J. Rosakis, P. Rosakis, Experimental Mechanics, 2000, vol. 40, pp. 113-123.CrossRef
70.
go back to reference S.V. Kailas, Y.V.R.K. Prasad, S.K. Biswas, Metallurgical Transactions A, 1993, vol. 24, pp. 2513-2520.CrossRef S.V. Kailas, Y.V.R.K. Prasad, S.K. Biswas, Metallurgical Transactions A, 1993, vol. 24, pp. 2513-2520.CrossRef
71.
go back to reference Y.V.R.K. Prasad, T. Seshacharyulu, Materials Science and Engineering: A, 1998, vol. 243, pp. 82-88.CrossRef Y.V.R.K. Prasad, T. Seshacharyulu, Materials Science and Engineering: A, 1998, vol. 243, pp. 82-88.CrossRef
72.
go back to reference N. Ranc, L. Taravella, V. Pina, P. Herve, Mechanics of Materials, 2008, vol. 40, pp. 255-270.CrossRef N. Ranc, L. Taravella, V. Pina, P. Herve, Mechanics of Materials, 2008, vol. 40, pp. 255-270.CrossRef
73.
74.
go back to reference H.A. Grebe, H.-R. Pak, M.A. Meyers, Metallurgical Transactions A, 1985, vol. 16, pp. 761-775.CrossRef H.A. Grebe, H.-R. Pak, M.A. Meyers, Metallurgical Transactions A, 1985, vol. 16, pp. 761-775.CrossRef
75.
76.
go back to reference W.J. Kim, S.J. Yoo, J.B. Lee, Scripta Materialia, 2010, vol. 62, pp. 451-454.CrossRef W.J. Kim, S.J. Yoo, J.B. Lee, Scripta Materialia, 2010, vol. 62, pp. 451-454.CrossRef
77.
go back to reference S.K. Biswas, S.V. Kailas, Tribology International, 1997, vol. 30, pp. 369-375.CrossRef S.K. Biswas, S.V. Kailas, Tribology International, 1997, vol. 30, pp. 369-375.CrossRef
78.
go back to reference S.V. Kailas, Y.V.R.K. Prasad, S.K. Biswas, Metallurgical and Materials Transactions A, 1994, vol. 25, pp. 2173-2179.CrossRef S.V. Kailas, Y.V.R.K. Prasad, S.K. Biswas, Metallurgical and Materials Transactions A, 1994, vol. 25, pp. 2173-2179.CrossRef
79.
go back to reference E. Illeková, J.-C. Gachon, A. Rogachev, H. Grigoryan, J.C. Schuster, A. Nosyrev, P. Tsygankov, Thermochimica Acta, 2008, vol. 469, pp. 77-85.CrossRef E. Illeková, J.-C. Gachon, A. Rogachev, H. Grigoryan, J.C. Schuster, A. Nosyrev, P. Tsygankov, Thermochimica Acta, 2008, vol. 469, pp. 77-85.CrossRef
80.
go back to reference S. Suwas, G. Upadhyaya, Metals Materials and Processes, 1996, vol. 7, pp. 225-250. S. Suwas, G. Upadhyaya, Metals Materials and Processes, 1996, vol. 7, pp. 225-250.
81.
go back to reference D.V. Lazurenko, V.I. Mali, I.A. Bataev, A. Thoemmes, A.A. Bataev, A.I. Popelukh, A.G. Anisimov, N.S. Belousova, Metallurgical and Materials Transactions A, 2015, vol. 46, pp. 4326-4334.CrossRef D.V. Lazurenko, V.I. Mali, I.A. Bataev, A. Thoemmes, A.A. Bataev, A.I. Popelukh, A.G. Anisimov, N.S. Belousova, Metallurgical and Materials Transactions A, 2015, vol. 46, pp. 4326-4334.CrossRef
82.
go back to reference D. Yadav, R. Bauri, Materials Science and Engineering: A, 2012, vol. 539, pp. 85-92.CrossRef D. Yadav, R. Bauri, Materials Science and Engineering: A, 2012, vol. 539, pp. 85-92.CrossRef
83.
go back to reference K. Vijayaraju, E.S. Dwarakadasa, T.S. Panchapagesan, Journal of Materials Science Letters, 1986, vol. 5, pp. 1000-1002.CrossRef K. Vijayaraju, E.S. Dwarakadasa, T.S. Panchapagesan, Journal of Materials Science Letters, 1986, vol. 5, pp. 1000-1002.CrossRef
84.
go back to reference P. Xue, B.L. Xiao, Z.Y. Ma, Materials Science and Engineering: A, 2012, vol. 532, pp. 106-110.CrossRef P. Xue, B.L. Xiao, Z.Y. Ma, Materials Science and Engineering: A, 2012, vol. 532, pp. 106-110.CrossRef
85.
go back to reference B. Li, Z. Zhang, Y. Shen, W. Hu, L. Luo, Materials & Design, 2014, vol. 53, pp. 838-848.CrossRef B. Li, Z. Zhang, Y. Shen, W. Hu, L. Luo, Materials & Design, 2014, vol. 53, pp. 838-848.CrossRef
86.
87.
go back to reference M. Sujata, S. Bhargava, S. Sangal, ISIJ International, 1996, vol. 36, pp. 255-262.CrossRef M. Sujata, S. Bhargava, S. Sangal, ISIJ International, 1996, vol. 36, pp. 255-262.CrossRef
88.
go back to reference H. Bang, H. Bang, H. Song, S. Joo, Materials & Design, 2013, vol. 51, pp. 544-551.CrossRef H. Bang, H. Bang, H. Song, S. Joo, Materials & Design, 2013, vol. 51, pp. 544-551.CrossRef
Metadata
Title
Multi-Length Scale Characterization of Microstructure Evolution and Its Consequence on Mechanical Properties in Dissimilar Friction Stir Welding of Titanium to Aluminum
Authors
Amlan Kar
Satyam Suwas
Satish V. Kailas
Publication date
26-08-2019
Publisher
Springer US
Published in
Metallurgical and Materials Transactions A / Issue 11/2019
Print ISSN: 1073-5623
Electronic ISSN: 1543-1940
DOI
https://doi.org/10.1007/s11661-019-05409-4

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