1. Kablov, E.N., Gunyaev, G.M., Il’chenko, S.I., Krivonos, V.V., Rumyantsev, A.F., Kavun, T.N., Komarova, O.A., Ponomarev, A.N., Deev, I.S., and Aleksashin, V.M., Construction Carbon Plastics with Increased conductivity, Aviatsionnye Materialy i Tekhnologii, 2004, no. 2, pp. 25–36.
2. Raskutin, A.E., Russian Polymer Composite Materials of New Generation, Their Use and Implementation in Perspective Designs under Development, Aviatsionnye Materialy i Tekhnologii, 2017, no. S, pp. 349–367.
3. Donetskii, K.I., Khrulkov, A.V., Kogan, D.I., Belinis, P.G., and Luk’yanenko, Yu.V., Applying Volume-Reinforcing Preforms in Manufacturing PCM Products, Aviatsionnye Materialy i Tekhnologii, 2013, no. 1, pp. 35–39.
4. Khaliulin, V.I., Khilov, P.A., and Toroptsova, D.M., Prospects of Applying the Tailored Fiber Placement (TFP) Technology for Manufacture of Composite Aircraft Parts, Izv. Vuz. Av. Tekhnika, 2015, vol. 58, no. 4,pp. 127–132 [Russian Aeronautics (Engl. Transl.), vol. 58, no. 4, pp. 495–500].
5. Khaliulin, V.I., Batrakov, V.V., and Petrov, P.A., Problem Description and a Study of Reinforcement Components to Produce Composite Hybrid Structures, Izv. Vuz. Av. Tekhnika, 2022, vol. 65, no. 4, pp. 184–193 [Russian Aeronautics (Engl. Transl.), vol. 65, no. 4, pp. 843–854].