Obrabotka Metallov 2020 Vol. 22 No. 2

OBRABOTKAMETALLOV Vol. 22 No. 2 2020 14 TECHNOLOGY 3. Heo Y., Malakooti M.H., Sodano H.A. Self-healing polymers and composites for extreme environments. Journal of Materials Chemistry А , 2016, vol. 4, iss. 44, pp. 17403–17411. DOI: 10.1039/C6TA06213J. 4. Makarov V.F., Meshkas A.E., Shirinkin V.V. Issledovanie problem mekhanicheskoi obrabotki sovremennykh vysokoprochnykh kompozitsionnykh materialov, ispol’zuemykh dlya proizvodstva detalei aviatsionnoi i raketno- kosmicheskoi tekhniki [Research problems machining high strenght composite materials used for the production of details of aviation and space-rocket technicians]. Vestnik Permskogo natsional’nogo issledovatel’skogo politekhnicheskogo universiteta. Mashinostroenie, materialovedenie = Bulletin of Perm National Research Polytechnic University. Mechanical Engineering, Materials Science, 2015, vol. 17, no. 2, pp. 30–41. 5. Rahme P., Landon Y., Lachaud F., Piquet R., Lagarrigue P. Drilling of thick composite materials using a step gundrill. Composites Part A: Applied Science and Manufacturing , 2017, vol. 103, pp. 304–313. DOI: 10.1016/j. compositesa.2017.10.016. 6. Pihtili H., Canpolat N. Investigation of different reinforced composite materials for surface rough- ness and capacity of being drilled. Journal of Composite Materials , 2009, vol. 43, iss. 19, pp. 2071–2080. DOI: 10.1177/0021998309340934. 7. Zhernakov V.S., Pervushin Y.S., Solovyev P.V. Issledovanie uprugikh kharakteristik ugleplastika s 3D struk- turoi [The study of the elastic characteristics of carbon fi ber with a 3D structure]. Pis’ma o materialakh = Letters on Materials , 2019, vol. 9, iss. 2 (34), pp. 185–190. DOI: 10.22226/2410-3535-2019-2-185-190. 8. Santiuste C., Olmedo A., Soldani X., Miguélez H. Delamination prediction in orthogonal machining of carbon long fi ber-reinforced polymer composites. Journal of Reinforced Plastics and Composites , 2012, vol. 31, iss. 13, pp. 875–885. DOI: 10.1177/0731684412444654. 9. Chen W.C. Some experimental investigations in the drilling of carbon fi ber reinforced composite laminations. International Journal of Machine Tools and Manufacture, 1997, vol. 37, iss. 8, pp. 1097–1108. DOI: 10.1016/s0890- 6955(96)00095-8. 10. Karasov T.A., Khramovskikh V.V., Zhikharev V.S. Problemy rezaniya kompozitov s vysokoprochnymi na- polnitelyami [The problems of cutting composites with high-strength fi llers]. Mekhaniki XXI veku = 21st Century Mechanics , 2017, no. 16, pp. 93–97. 11. Deng D., Yu J., Yan X., Huang F., Luo X. Engineering method for the thermal mechanical erosion of C/C composite with the mesoscale ablation model. Polymers and Polymer Composites , 2014, vol. 22, iss. 2, pp. 181–186. DOI: 10.1177/096739111402200215. 12. Markov A.M., Makarova N.A., Gaist S.V. Iznos instrumenta pri frezerovanii stekloplastika [Tool wear at glass- fi ber material milling]. Naukoemkie tekhnologii v mashinostroenii = Science Intensive Technologies in Me- chanical Engineering , 2017, no. 4 (70), pp. 25–30. DOI: 10.12737/article_58ef809026b201.73125147. 13. Rychkov D.A., Yanyushkin A.S. Sposob povysheniya effektivnosti proizvodstva izdelii iz polimernykh kom- pozitov [Method for improving the ef fi ciency of products from polymer composites]. Obrabotka metallov (tekhnologi- ya, oborudovanie, instrumenty) = Metal Working and Material Science, 2016, no. 3, pp. 23–30. DOI: 10.17212/1994- 6309-2016-3-23-30. (In Russian). 14. Gaist S.V., Katayeva S.A., Markov A.M., Cherdantsev P.O., Lapenkov E.Yu. Eksperimental’noe issledovanie protsessa formirovaniya pokazatelei kachestva pri frezerovanii stekloplastika [Experimental investigation of quality metrics formation process during plastic milling] Vestnik Bryanskogo gosudarstvennogo tekhnicheskogo universiteta = Bulletin of Bryansk State Technical University , 2016, no. 3 (51), pp. 129–136. DOI: 10.12737/22052. 15. Rychkov D.A., Afanasenko P.V., Kirichenko O.P. Spetsi fi ka iznashivaniya rezhushchego instrumenta pri obrabotke polimernykh kompozitsionnykh materialov [The characteristics of the cutting tool wear under machining of polymeric composite materials]. Mekhaniki XXI veku = 21st Century Mechanics , 2018, no. 17, pp. 135–139. 16. Li Z.J., Hong M.S., Su H., Wei Y.L. Machining accuracy analysis for step multi-element varying-parameter vibration drilling of laminated composite materials. The International Journal of Advanced Manufacturing Technology , 2003, vol. 21, iss. 10–11, pp. 760–768. DOI: 10.1007/s00170-002-1391-2. 17. Markov A.M., Lebedev P.V. Zavisimost’ silovykh kharakteristik protsessa narezaniya vnutrennei rez’by v detalyakh iz vysokoprochnykh polimernykh kompozitsionnykh materialov [ Force characteristic dependence of the inside threading process in the components from high strength polymer composites]. Tekhnologiya mashinostroeniya – Engineering Technology, 2014, no. 12, pp. 22–25. 18. Kudryashov E.A., Kameneva T.E. Povyshenie rabotosposobnosti okhvatyvayushchei frezy s rezhushchimi elementami iz kompozita pri narezanii trapetseidal’noi rez’by s elementami razryva [Increase of ef fi ciency of the internally cutting mill with composite cutters when cutting trapezoidal thread with interrupted elements]. Obrabotka

RkJQdWJsaXNoZXIy MTk0ODM1