Microfractography of the Surfaces of Welded Joints of Austenitic and Ferritic Steels Obtained in Tensile Tests
Author:
Publisher
Springer Science and Business Media LLC
Subject
Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics,General Materials Science
Link
http://link.springer.com/content/pdf/10.1007/s11003-019-00237-8.pdf
Reference7 articles.
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2. K. Balamurugan, A. P. Abhilash, P. Sathiya, and S. A. Naveen, “Artificial neural network simulation and particle swarm optimization of friction welding parameters of 904L superaustenitic stainless steel,” Multidiscipline Model. in Mat. and Struct., 10. 2, 250–264 (2014).
3. P. Sathiya, M. Mishra, B. Shanmugarajan, “Effect of shielding gases on microstructure and mechanical properties of super austenitic stainless steel by hybrid welding,” Mat. Des., 33, 203–212 (2012).
4. R. Castro and J. J. Cadenet, “Metalurgia spawania stali odpornych na korozję i żarowytrzymałych,” WNT, Warsaw, 111–112, 22–25 (2016).
5. K. D. Ramkumar, A. Chandrasekhar, A. Srivastava, H. Preyas, S. Chandra, S. Dev, and N. Arivazhagan, “Effects of filler metals on the segregation, mechanical properties, and hot corrosion behavior of pulsed current gas tungsten arc welded super-austenitic stainless steel,” J. Manufact. Proc., 24, 46–61 (2016).
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