1. https://abiznews.net/novosti/snizhenie-vesa-avtomobiley-vzov-i-vozmozhnosti-dlya-proizvoditeley-lakokrasotchnh-pokrtiy/.
2. Kudryavtsev, S.M., Pachurin, G.V., Solov’ev, D.V., and Vlasov, V.A., Osnovy proektirovaniya, proizvodstva i materialy kuzova sovremennogo avtomobilya. Monografiya (Fundamentals of Design, Production and Materials of Modern Automobile Body: Monograph), Kudryavtsev, S.M., Ed., Nizhny Novgorod: Nizhegorodskii Gosudarstvennyi Tekhnicheskii Universitet im. R.E. Alekseeva, 2010.
3. Chibukhchyan, G.S., Stakyan, M.G., and Chibukhchyan, O.S., Improving the carrying capacity of structural elements of vehicles by the corrosive strength criterion, J. Mach. Manuf. Reliab., 2019, vol. 48, no. 6, pp. 551–556. https://doi.org/10.3103/S1052618819060037
4. Abramov, O.V., Khorbenko, I.G., and Shvegla, Sh., Ultrazvukovaya obrabotka materialov (Ultrasonic Material Processing), Moscow: Mashinostroenie, 1984.
5. Alekhin, V.P., Production of nano- and submicrocrystalline structures in steels using ultrasonic technology, Izv. Visshikh Uchebn. Zaved.,
Chern. Metall., 2012, vol. 55, no. 8, pp. 68–70. https://doi.org/10.17073/0368-0797-2012-8-68-70