[1] B. Lustman, F. Kerz, The metallurgy of zirconium, National Nulear Energy Series, Division 7 (4), Litrary Licencing, LLC (2013).
[2] J.H. Schemel, ASTM Manual on Zirconium and Hafnium, ASTM Special Technical Publication, 639 (1978).
[3] A.M. Pereira, J.M. Ferreira, A. Loureiro, J.D.M Costa, P.J. Bartolo, Effect of process parameters on the strength of resistance spot welds in 6082- T6 aluminium alloy, Material and Design, 31 (2010).
[4] N. Kahraman, The influence of welding parameters on the joint strenght of resistance spot welded titanium sheets, Materials and Design, 28 (2007) 420-427.
[5] Y. Kaya, N. Kahraman, The Effect of Electrode Force, Welding Current and Welding Time on The Resistance Spot Weldability of Pure Titanium, Int. J. Adv. Manuf. Technol., 60 (2012) 127-134.
[6] A. Strasser, F. Garzarolli, P. Rudling, Welding of Zirconium Alloys, Advanced Nuclear Technology International (2007).
[7] G. Choudhuri, S. Chakraborty, D. Srivastava, G.K. Dey, Phase Field Modeling of Widmanstatten Plate Formation in Zr-2.5%Nb Material, Results in Physics, 3 (2013) 7-13.
[8] G.F. Slattery, H.K. Richardson, P. Thomson, Microstructure of Weld Region in Seam-Welded Zirconium-2.5%wt Nb Tubing, Metallography, 12 (1979) 57-71.
[9] K. Komuro, Welding of Zirconium Alloys, Welding International, 8(2) (2009) 141-148.
[10] F. Hayat, The effect of the welding current on heat input, nugget geometry, and the mechanical and fractural properties of resistance spot welding on Mg/Al dissimilar materials, Materials and Design, 32 (2011) 2476-2487.
[11] B. Bouyousfi, T. Sahraoui, S. Guessasma, K. Tahar Chaouch, Effect of Process Parameters on Physical Characteristics of Spot Weld Joints, Materials & Design, 28 (2007) 414-419.