386
C. Mani et al.
10. Zong L, Shi G, Wang Y-Q et al (2017) Experimental and numerical investigation on fatigue
performance of non-load-carrying fillet welded joints. J Constr Steel Res 130:193–201. https://
doi.org/10.1016/j.jcsr.2016.12.010
11. ASM International, Stainless Steels for Design Engineers (#05231G)
12. Kalaimathi M, Venkatachalam G, Sivakumar M (2014) Experimental investigations on the
electrochemical machining characteristics of Monel 400 alloys and optimization of process
parameters. Jordan J Mech Indust Eng 8:143–151
13. Mishra D, Vignesh M, Raj BG et al (2014) Mechanical characterization of Monel 400 and 316
stainless steel weldments. Proc Eng 75:24–28. https://doi.org/10.1016/j.proeng.2013.11.005
14. Casagrande A, Cammarota G, Micele L (2011) Relationship between fatigue limit and Vickers
hardness in steels. Mater Sci Eng A 528:3468–3473. https://doi.org/10.1016/j.msea.2011.
01.040
15. Kianersi D, Mostafaei A, Amadeh AA (2014) Resistance spot welding joints of AISI
316L austenitic stainless steel sheets: phase transformations, mechanical properties and
microstructure characterizations. Mater Des 61:251–263. https://doi.org/10.1016/j.matdes.
2014.04.075
16. Guo H, Wan J, Liu Y, Hao J (2018) Experimental study on fatigue performance of high strength
steel welded joints. Thin-Walled Struct 131:45–54. https://doi.org/10.1016/j.tws.2018.06.023
17. European Committee for Standardization (2015) EN 1993-1-9 Eurocode3, design of steel
structures—part 1-9: fatigue. CEN, Brussels
18. Wang H, Wang G, Xuan F, Tu S (2013) Fracture mechanism of a dissimilar metal welded joint
in nuclear power plant. Eng Fail Anal 28:134–148. https://doi.org/10.1016/j.engfailanal.2012.
10.005
19. Santos JLD, Monteiro SN, Cândido VS et al (2017) Fracture modes of AISI type 302 stainless
steel under metastable plastic deformation. Mater Res 20:596–602. https://doi.org/10.1590/
1980-5373-mr-2017-0051
20. Malhotra D, Shahi AS (2020) Metallurgical, fatigue and pitting corrosion behavior of AISI
316 joints welded with Nb-based stabilized steel filler. Metall Mater Trans A 51:1647–1664.
https://doi.org/10.1007/s11661-019-05623-0
21. Dang N, Chen S, Liu L et al (2019) Analysis of hybrid fracture in α/β titanium alloy with lamellar
microstructure. Mater Sci Eng A 744:54–63. https://doi.org/10.1016/j.msea.2018.12.007
22. Bahgat Radwan A, Abdullah AM, Roven HJ et al (2015) Failure analysis of 316L air cooler
stainless steel tube in a natural gas production field. Int J Electrochem Sci 10:7606–7621
C. Mani et al.
10. Zong L, Shi G, Wang Y-Q et al (2017) Experimental and numerical investigation on fatigue
performance of non-load-carrying fillet welded joints. J Constr Steel Res 130:193–201. https://
doi.org/10.1016/j.jcsr.2016.12.010
11. ASM International, Stainless Steels for Design Engineers (#05231G)
12. Kalaimathi M, Venkatachalam G, Sivakumar M (2014) Experimental investigations on the
electrochemical machining characteristics of Monel 400 alloys and optimization of process
parameters. Jordan J Mech Indust Eng 8:143–151
13. Mishra D, Vignesh M, Raj BG et al (2014) Mechanical characterization of Monel 400 and 316
stainless steel weldments. Proc Eng 75:24–28. https://doi.org/10.1016/j.proeng.2013.11.005
14. Casagrande A, Cammarota G, Micele L (2011) Relationship between fatigue limit and Vickers
hardness in steels. Mater Sci Eng A 528:3468–3473. https://doi.org/10.1016/j.msea.2011.
01.040
15. Kianersi D, Mostafaei A, Amadeh AA (2014) Resistance spot welding joints of AISI
316L austenitic stainless steel sheets: phase transformations, mechanical properties and
microstructure characterizations. Mater Des 61:251–263. https://doi.org/10.1016/j.matdes.
2014.04.075
16. Guo H, Wan J, Liu Y, Hao J (2018) Experimental study on fatigue performance of high strength
steel welded joints. Thin-Walled Struct 131:45–54. https://doi.org/10.1016/j.tws.2018.06.023
17. European Committee for Standardization (2015) EN 1993-1-9 Eurocode3, design of steel
structures—part 1-9: fatigue. CEN, Brussels
18. Wang H, Wang G, Xuan F, Tu S (2013) Fracture mechanism of a dissimilar metal welded joint
in nuclear power plant. Eng Fail Anal 28:134–148. https://doi.org/10.1016/j.engfailanal.2012.
10.005
19. Santos JLD, Monteiro SN, Cândido VS et al (2017) Fracture modes of AISI type 302 stainless
steel under metastable plastic deformation. Mater Res 20:596–602. https://doi.org/10.1590/
1980-5373-mr-2017-0051
20. Malhotra D, Shahi AS (2020) Metallurgical, fatigue and pitting corrosion behavior of AISI
316 joints welded with Nb-based stabilized steel filler. Metall Mater Trans A 51:1647–1664.
https://doi.org/10.1007/s11661-019-05623-0
21. Dang N, Chen S, Liu L et al (2019) Analysis of hybrid fracture in α/β titanium alloy with lamellar
microstructure. Mater Sci Eng A 744:54–63. https://doi.org/10.1016/j.msea.2018.12.007
22. Bahgat Radwan A, Abdullah AM, Roven HJ et al (2015) Failure analysis of 316L air cooler
stainless steel tube in a natural gas production field. Int J Electrochem Sci 10:7606–7621
