References
- Hu D, Chen M, Wang L, Cheng H: Dynamic tensile behaviour and deformational mechanism of C5191 phosphor bronze under high strain rates deformation. Materials Science and Engineering: A, 2016, 649, 68–73.
- Sanga B, Wattal R, Nagesh D S: Weld joint characterization in ultrasonic welding of phosphor bronze sheets. Engineering Science and Technology, an International Journal, 2022, 30, 101040.
- Velu M, Bhat S: Experimental investigations of fracture and fatigue crack growth of copper–steel joints arc welded using nickel-base filler. Materials & Design, 2015, 67, 244–260.
- Makeshkumar M, Surender S R, Arunprakash S, Madesh R, Sasi Kumar M, Sudharsan K: Microstructural and mechanical properties evaluation of dissimilar aluminum alloy and bronze joints using friction stir welding. Materials Today: Proceedings, 2021, 47, 5239–5244.
- Chaudhary V, Bharti A, Azam S M, Kumar, N, Saxena K K: A re-investigation: Effect of TIG welding parameters on microstructure, mechanical, corrosion properties of welded joints. Materials Today: Proceedings, 2021, 45, 4575–4580.
- Mohan D G, Tomków J, Gopi S: Induction Assisted Hybrid Friction Stir Welding of Dissimilar Materials AA5052 Aluminium Alloy and X12Cr13Stainless Steel. Advances in Materials Science, 2021, 21(3), 17–30.
- Zoeram A S, Anijdan S H M, Jafarian H R, Bhattacharjee T: Welding parameters analysis and microstructural evolution of dissimilar joints in Al/Bronze processed by friction stir welding and their effect on engineering tensile behavior. Materials Science and Engineering: A, 2017, 687, 288–297.
- Mohan D G, Wu C: A Review on Friction Stir Welding of Steels.Chinese Journal of Mechanical Engineering, 2021, 34(1), 137.
- Rabiezadeh A, Salafzon A, Mostafavi N: Dissimilar welding of AA5083/AA7039 by self-reacting friction stir welding. Journal of Adhesion Science and Technology, 2023, 1–22, in Press.
- A M, SS KV, A P K: On the friction stir welding of alloy AA2014 under n-MQL cooling condition. Journal of Adhesion Science and Technology, 2023, 37(13), 2025–2045.
- Sasikumar A, Gopi S, Mohan D G: Prediction of Filler Added Friction Stir Welding Parameters for Improving Corrosion Resistance of Dissimilar Aluminium Alloys 5052 and 6082 Joints. Advances in Materials Science, 2022, 22(3), 79–95.
- Yin, Cao L, Wang N: Mechanical properties and residual stresses of 5083 to AM60B dissimilar friction stir welding with different process parameters. Journal of Adhesion Science and Technology, 2019, 33(23), 2615–2629.
- Anbalagan K, Ramasubramanian S, David C, Manivannan S, Kannan AR, Mohan DG: Importance of shielding and mechanical characterization of GTAW on Ti-6AL-4V alloy sheet. Welding International, 2023, 37(6), 324–333.
- Chen X H, Ma YF, Cheng Y J, Wang Z D, Yang M, Jiang W W, Cao Y D: Strengthening and toughening strategies of weld metal for in-situ nanoparticle reinforced tin bronze alloy. Science and Technology of Welding and Joining, 2021, 26(4), 309–315.
- N V Babu: Fatigue strength of welded joints in complexly alloyed aluminium bronzes. Welding International, 1989, 3(5), 386–388.
- Cheng Z, Liu H, Huang J, Ye Z, Yang J, Chen S: MIG-TIG double-sided arc welding of copper-stainless steel using different filler metals. Journal of Manufacturing Processes, 2020, 55, 208–219.
- Velu M, Bhat S: Metallurgical and mechanical examinations of steel–copper joints arc welded using bronze and nickel-base superalloy filler materials. Materials & Design, 2013, 47, 793–809.
- Poggie R A, Wert J J, Harris L A: The effects of surface oxidation and segregation on the adhesional wear behavior of aluminum—bronze alloys. Journal of Adhesion Science and Technology, 1994, 8(1), 11–28.
- Saraiva A S, Figueiredo E, Águas H, Silva R J C: Characterisation of Archaeological High-tin Bronze Corrosion Structures. Studies in Conservation, 2022, 67(4), 222–236.
- C S Radhika, N Kumar, Sivasailam B: A review on welding techniques: properties, characterisations and engineering applications. Advances in Materials and Processing Technologies, 2023, 1(1), 1–56.
- Nakata K: Friction stir welding of copper and copper alloys. Welding International, 2005, 19(12), 929–933.
- Çam G: Friction stir welded structural materials: beyond Al-alloys. International Materials Reviews, 2011, 56(1), 1–48.
- Mohan D G, Gopi S: Induction assisted friction stir welding: a review. Australian Journal of Mechanical Engineering, 2020, 18(1), 119–123.
- Shokri V, Sadeghi A, Sadeghi M H: Effect of friction stir welding parameters on microstructure and mechanical properties of DSS–Cu joints. Materials Science and Engineering A, 2017, 693, 111–120.
- Squillace A, De Fenzo A, Giorleo G, Bellucci F: A comparison between FSW and TIG welding techniques: Modifications of microstructure and pitting corrosion resistance in AA 2024-T3 butt joints. Journal of Materials Processing Technology, 2004, 152(1), 97–105.
- Liu HJ, Shen J J, Zhou L, Zhao Y Q, Liu C, Kuang L Y: Microstructural characterisation and mechanical properties of friction stir welded joints of aluminium alloy to copper. Science and Technology of Welding and Joining, 2011, 16(1), 92–98.
- Pan Y, Zhang D, Liu H, Zhang Z, Li H, Zhuang L, Zhang J: Reducing welding hot cracking of high-strength novel Al–Mg–Zn–Cu alloys based on the prediction of the T-shaped device. Science and Technology of Welding and Joining, 2020, 25(6), 483–489.
- Srinivasa Rao M, Tangudu S S, Perumalla S, Uppda B R, Yandra C, Kambhampati K: Effect of TIG and FSW welding processes on mechanical properties of Al-4.2Mg-0.6Mn-0.4Sc-0.1Zr alloy. Strojnicky Casopis, 2021, 71(2), 299–304.
- Mallipudi S R, Shankar TS, Srikar P, Rao U B, Chandrasekhar Y, Karthikeyan K: Effect of TIG and FSW Welding Processes on Mechanical Properties of Al-4.2Mg-0.6Mn-0.4Sc-0.1Zr Alloy. Strojnícky Časopis - Journal of Mechanical Engineering, 2021, 71(2), 299–304.
- Sejč P, Bucany M, Zifcak P: Properties of FSW and MIG Welded Joints of AlSiMgAluminum Alloy, Strojnicky timetable – Journal of Mechanical Engineering, 2020, 70 (2)pp141 – 152.
- Vinith B, Dharshan S AD, Aravind S, Singh B K: Friction stir welding evolution, hybrid technologies and shoulder shape. International Journal on Interactive Design and Manufacturing (IJIDeM), 2023, 17(4), 1443–1458.
- Khan F N, Junaid M, Hassan A A, Baig M N: Effect of pulsation in TIG welding on the microstructure, residual stresses, tensile and impact properties of Ti-5Al-2.5Sn alloy. Proceedings of the Institution of Mechanical Engineers, Part E: Journal of Process Mechanical Engineering, 2021, 235(2), 361–370.
- Das P P, Chakraborty S: Optimization of friction stir welding processes using hybrid-taguchi methods: a comparative analysis. International Journal on Interactive Design and Manufacturing (IJIDeM), 2023, 17(3), 1021–1038.
- Sunny K T, Korra N N, Vasudevan M, Arivazhagan B: Parameter optimization and experimental validation of A-TIG welding of super austenitic stainless steel AISI 904L using response surface methodology. Proceedings of the Institution of Mechanical Engineers, Part E: Journal of Process Mechanical Engineering, 2022, 236(6), 2608–2617.
- Payak V, Paulraj J, Roy B S, Bhargava M, Das P: A review on recent development in aluminium-copper friction stir welding. Proceedings of the Institution of Mechanical Engineers, Part E: Journal of Process Mechanical Engineering, 2023, 1(3), 09544089231158201.
- Sharma A K, Goyal D, Pabla B S, Saxena K K, Prakash C, Buddhi D: Optimization of friction stir welding parameters for micro alloying of AA6082 alloy. International Journal on Interactive Design and Manufacturing (IJIDeM), 2022, 2960(1).
- Khan N Z, Siddiquee A N, Khan ZA, Badruddin I A, Kamangar S, Maqbool A: Improvement in joint efficiency with high productivity and narrow weld formation in friction stir welding. Proceedings of the Institution of Mechanical Engineers, Part E: Journal of Process Mechanical Engineering, 2022, 236(2), 383–393.
- Bist A, Saini J S, Sharma V: Comparison of tool wear during friction stir welding of Al alloy and Al-SiC metal matrix composite. Proceedings of the Institution of Mechanical Engineers, Part E: Journal of Process Mechanical Engineering, 2021, 235(5), 1522–1533.
- Buffa G, Fratini L: Friction stir welding of steels: process design through continuum based FEM model. Science and Technology of Welding and Joining, 2009, 14(3),239–246.
- Sonar T, Ivanov M, Trofimov E, Tingaev A, Suleymanova I: A critical review on solid-state welding of high entropy alloys– processing, microstructural characteristics and mechanical properties of joints. DefenceTechnology, 2023, 168(1), 114–165.
- Wang Q, Zhou X, Wang B, Liu M, Li C, Tan Z, Wu T: Accelerated role of exogenous riboflavin in selective Desulfovibrio desulfuricans corrosion of pipeline welded joints. Bioelectrochemistry, 2023, 153, 108469.
- Dou W, Jia R, Jin P, Liu J, Chen S, Gu T. Investigation of the mechanism and characteristics of copper corrosion by sulfate reducing bacteria. Corrosion Science, 2018, 144:237e48.
- C Razil, A Aangaj: Prediction of relationship between angular velocity to the pitch line velocity (ω/v) on tensile strength of friction stir welded AA2014-T6 Aluminium alloy joints: Angular velocity to pitch line velocity ratio on FSW joints. Forces in Mechanics, 2021, 4, 100036.
- Liu Peng, Li Yajiang, Wang Juan, Geng Haoran: Microstructure characteristics in TIG welded joint of Mg /Al dissimilar materials. Materials Letters, 61, 2007, pp. 1288-1291.
- AC Somasekharan, LE Murr: Characterization of complex, solid-state flow and mixing in the friction-stir welding (FSW) of aluminum alloy 6061–T6 to magnesium alloy AZ91D using color metallography. Journal of Materials Science, 41, 2006, pp. 5365-5370.
- Naga sathwik sridhara S, Chandra siddhardha Allada S, Sharmi Sai, P V Banala, S Subbiah, Marichamy S: Tensile strength performance and optimization of Al 7068 using TIG welding process. Materials Today: Proceedings, 2021, 45, 20(17).
- Yelamasetti B, Adithya G S, Ramadevi R S, Sonia P, Saxena K K, Kumar P N, Eldin S M, Al- kafaji FH K: Metallurgical, mechanical and corrosion behaviour of pulsed and constant current TIG dissimilar welds of AISI 430 and Inconel 718. Journal of Materials Research and Technology, 2023, 24, 6652–6664.
- Tamadon A, Pons D J, Clucas D: Analogue Modelling of Flow Patterns in Bobbin Friction Stir Welding by the Dark-Field/Bright-Field Illumination Method. Advances in Materials Science, 2020, 20(1), 56-70.
- B Yelamasetti, TV Vardhan, GV Ramana: Study of metallurgical changes and mechanical properties of dissimilar weldments developed by interpulse current TIG welding technique. Proceedings of the Institution of Mechanical Engineers - Part C: Journal of Mechanical Engineering Science, 2021, 235 (16), pp. 2985-2997.
- Xuan Y, Yang J, Liu H, Deng J, Wang Y: Microstructure and mechanical properties of Invar36 alloy joints using keyhole TIG welding. Science and Technology of Welding and Joining, 2020, 25(8), 712–718.
- Kumar S A, Sathiya P: Experimental Investigation of the A-TIG Welding Process of Incoloy 800H. Materials and Manufacturing Processes, 2015, 30(9), 1154–1159.
- Dhondt, Matthieu, Aubert, Isabelle, Saintier, Nicolas, Olive, Jean-Marc: Intergranular stress corrosion cracking of friction stir welded nugget on a 2050-T8 aluminum alloy. Advances in Materials Science, 2011, 11(3), 43-50.
- Kusano K, Watanabe H: Recent trends in development of high-efficiency TIG welding; high-deposition TIG welding and ultranarrow-gap TIG welding. Welding International, 2002, 16(12), 986–991.
- Górka J, Przybyła M, Szmul M, Chudzio A, Ładak D: Orbital TIG Welding of Titanium Tubes with Perforated Bottom Made of Titanium-Clad Steel. Advances in Materials Science, 2019, 19(3), 55–64.
- Sridhar SP, Arun Kumar S, Sathiya P: A Study on the Effect of Different Activating Flux on A-TIG Welding Process of Incoloy 800H, Advances in Materials Science, 2022, 16(3), 26-37.
- Dudzik K, Jurczak W: Influence of Friction Stir Welding on Corrosion Properties of Aw-7020M Alloy in Sea Water. Advances in Materials Science, 2015, 15(1), 7-13.
- Zhou D, Xia Y, Gao Z, Bai L, Hu W: Effect of loading conditions on corrosion fatigue process of FSW AA6061-T6 joint in 3.5% NaCl studied by electrochemical noise. Journal of Materials Research and Technology, 2023, 24, 9808 9823.
- Qiu Y, Yang X, Xu J, Li J, Xiang S, Chen Z, Sanders R E: Enhanced mechanical property and corrosion resistance of alloy 5182 FSW joints by Sc and Zr alloying. Materials Characterization, 2022, 194, 112412.
- Raturi M, Bhattacharya A: Electrochemical corrosion of AA6061-AA7075 double sided FSW joints prepared with and without secondary heating. CIRP Journal of Manufacturing Science and Technology, 2022, 38, 590–612.
- Rajendran C, Srinivasan K, Balasubramanian V, Balaji H, Selvaraj P: Feasibility study of FSW, LBW and TIG joining process to fabricate light combat aircraft structure. International Journal of Lightweight Materials and Manufacture, 2021, 4(4), 480–490.
- Emmanuel Sam Franklin D, Vijay SJ, Mohanasundaram S, Nelson R, Hiran Gabriel D J: Investigations on GTAW and FSW of Al6061-ZrB2-Fly ash hybrid metal matrix composites. Materials Today: Proceedings, 2021, 47, 6902–6907.
- Mehdi H, Mishra R S: Effect of friction stir processing on mechanical properties and heat transfer of TIG welded joint of AA6061 and AA7075. Defence Technology, 2021, 17(3), 715–727.
- Kotari S, Punna E, Gangadhar Reddy S M, Venukumar S: Mechanical and micro structural behaviour of flux coated GTAW and FSW joined AA6061 aluminium alloy. Materials Today: Proceedings, 2020, 27, 1660–1667.
- Mehdi H, Mishra RS: Investigation of mechanical properties and heat transfer of welded joint of AA6061 and AA7075 using TIG+FSP welding approach. Journal of Advanced Joining Processes, 2020, 1, 100003.
- Walter V, Weidenmann K A, Schulze V: A Comparison of FSW, BHLW and TIG Joints for Al-Si-Mg Alloy (EN AW-6082 T6). Procedia CIRP, 2014, 18, 120–125.
- Simoncini M, Ciccarelli D, Forcellese A, Pieralisi M: Micro- and Macro- Mechanical Properties of Pinless Friction Stir Welded Joints in AA5754 Aluminium Thin Sheets. Procedia CIRP, 2014, 18, 9–14.