1. Pazilova, U.A., Il’in, A.V., Kruglova, A.A., Motovilina, G.D., and Khlusova, E.I., Influence of the temperature and strain rate on the structure and fracture mode of high-strength steels upon the simulation of the thermal cycle of welding and post-welding tempering, Phys. Met. Metallogr., 2015, vol. 116, no. 6, pp. 606–614.
2. Liessem, A. and Erdeien-Peppler, M., A critical view on the significance of HAZ toughness testing, Proc. IPC 2004 Int. Pipeline Conf., Calgary, Alberta, Canada, October 4–8, 2004, New York, NY: Am. Soc. Mech. Eng., 2004.
3. Leontiev, P.A., Ivanova, A.S., and Simonov, Yu.N., Study of phase transformations and the structure of mild steels with different carbon contents with continuous cooling, Vestn. Perm. Nats. Issled. Politekh. Univ., Mashinostr., Materialoved., 2013, vol. 15, no. 4, pp. 33–39.
4. Ardentov, V.V., Malyshevskii, V.A., Pravdina, N.N., Rybin, V.V., and Semicheva, T.G., The structure and properties of the heat-affected zone of high-strength structural steel, Fiz. Khim. Obrab. Mater., 1985, no. 5, pp. 119–124.
5. Kostin, V.A., Grigorenko, V.D., Poznyakov, V.D., Zhdanov, S.L., Solomiichuk, T.G., Zuber, T.A., and Maksimenko, A.A., The influence of the thermal welding cycle on the structure and properties of microalloyed structural steels, Avtom. Svarka, 2012, no. 12, pp. 10–16.