Obrabotka Metallov. 2016 no. 1(70)

ОБРАБОТКА МЕТАЛЛОВ № 1 (70) 2016 29 ТЕХНОЛОГИЯ 4. Shmanev V.A., Shulepov A.P., Meshcheryakov A.V. Struinaya gidroabrazivnaya obrabotka detalei GTD [Hydro-abrasive jet machining of GTE parts]. Moscow, Mashinostroenie Publ., 1995. 144 p. ISBN 5-217-01779-1 5. Serikova E.V. Gidroabrazivnyi metod rezki materialov [Waterjet cutting method of materials]. Stroitel’nye i dorozhnye mashiny – Construction and road building machinery , 2006, no. 2, pp. 27–29. 6. Chieu K.F. Issledovanie effektivnosti tekhnologii uzkostruinoi plazmennoi rezki metallov . Avtoref. diss. kand. tekhn. nauk [Research of efficiency of technology narrow jet plasma cutting. Author’s abstract of PhD eng. sci. diss.]. St. Petersburg, 2008. 26 p. 7. Kirkpatrick I. High definition plasma – an alternative to laser technology. Aircraft Engineering and Aerospace Technology , 1998, vol. 70, iss. 3, pp. 215–217. doi: http://dx.doi.org/10.1108/00022669810370349 8. Rakhimianov Kh.M., Loktionov A.A. [Analysis of errors in forming trickle plasma cutting metal materials]. Sbornik trudov vserossiiskoi nauchno-prakticheskoi konferentsii “Sovremennye problemy v tekhnologii mashinostroeniya”, posvyashchennoi 100-letiyu so dnya rozhdeniya professora Mukhanova I.I. [Proceedings of the International Scientific and Practical Conference “Modern Problems in Mechanical Engineering Technology”, dedicated to the 100 th anniversary of the birth of professor Mukhanov I.I.]. Novosibirsk, 2009, pp. 151–153. (In Russian) 9. Rakhimyanov Kh.M., Loktionov A.A. [Impact of technology trickle plasma cutting on the formation of the surface roughness of the cut]. Sbornik nauchnykh trudov 7 mezhdunarodnoi nauchno-tekhnicheskoi konferentsii “Sovremennye problemy mashinostroeniya” [Proceedings of the 7 th International Scientific-Technical Conference “Modern Problems of Engineering”]. Tomsk, 11–13 November 2013, pp. 349–353. (In Russian) 10. Rakhimyanov A.Kh. Vybor tekhnologicheskikh skhem i optimizatsiya rezhimov tonkostruinoi plazmennoi rezki konstruktsionnykh stalei [Selection of technological schemes and high-precision plasma cutting mode optimization for structural steels]. Obrabotka metallov (tekhnologiya, oborudovanie, instrumenty) – Metal Working and Material Science , 2014, no. 2 (63), pp. 46–55. 11. Rakhimianov Kh.M., Rakhimianov K.Kh., RakhimianovA.Kh., Shopf S.V., Zakharov V.V. [Study workability of the steel 12X18H10T trickle method for plasma cutting]. Trudy 4 mezhdunarodnoi nauchno-prakticheskoi konferentsii “Innovatsii v mashinostroenii” [Proceedings of the 4 th International Scientific and Practical Conference “Innovations in Machine building”]. Novosibirsk, 2–4 October 2013, pp. 38–44. (In Russian) 12. Rakhimyanov A.Kh. [High-precision plasma cutting of copper alloys]. Materialy VI mezhdunarodnoi nauchno-tekhnicheskoi konferentsii “Innovatsii v mashinostroenii – osnova tekhnicheskogo razvitiya Rossii” [Proceedings of the VI International Scientific and Technical Conference “Innovations in mechanical engineering based on technological development of Russia–2014”], Barnaul, 23–26 September 2014, pt. 2, pp. 66–70. (In Russian) 13. RakhimyanovA.Kh., Krasil’nikovB.A. [Technological features of plasma cutting aluminumalloys]. Materialy VI mezhdunarodnoi nauchno-tekhnicheskoi konferentsii “Innovatsii v mashinostroenii – osnova tekhnicheskogo razvitiya Rossii” [Proceedings of the VI International Scientific and Technical Conference “Innovations inMechanical Engineering Based on Technological Development of Russia–2014”], Barnaul, 23–26 September 2014, pt. 2, pp. 71–77. (In Russian) 14. Rakhimyanov A.Kh., Rakhimyanov Kh.M., Krasil ’ nicov B.A. Tekhnologicheskie osobennosti raskroya bimetallicheskogo soedineniya “stal’ St3 + stal’ 12X18H10T” pri tonkostruinoi plazmennoi rezke [Technological features of the bimetallic joints “steel Ст3 + steel 12Х18Н10Т” layout by high-precision plasma cutting]. Obrabotka metallov (tekhnologiya, oborudovanie, instrumenty) – Metal Working and Material Science , 2014, no. 3 (64), pp. 51–67. 15. Rakhmyanov Kh., RakhmyanovA., ZhuravlevA. Advantages of high-precision plasma cutting for processing bimetallic compositions. Applied Mechanics and Materials , 2015, vol. 698, pp. 294–298. doi: 10.4028/www. scientific.net/AMM.698.294 16. Rakhimyanov Kh., Rakhimyanov A., Heifetz M. High-precision plasma cutting of the steel – aluminum bimetallic composition. Applied Mechanics and Materials , 2015, vol. 788, pp. 41–45. doi: 10.4028/www.scientific. net/AMM.788.41 17. ISO 9013:2002. Thermal cutting. Classification of thermal cuts. Geometrical product specification and quality tolerances . Moscow, Standartinform Publ., 2002. 25 p. (In Russian) 18. Deribas A.A. Fizika uprochneniya i svarki vzryvom [Physics of hardening and explosion welding]. 2 nd ed. Novosibirsk, Nauka Publ., 1980. 221 p. 19. Zakharenko I.D. Svarka metallov vzryvom [Metal welding explosion]. Minsk, Navuka i tekhnika Publ., 1990. 205 p. 20. GOST 380–2005. Stal ’ uglerodistaya obyknovennogo kachestva. Marki [State Standard 380–2005. Common quality carbon steel. Grades]. Moscow, Standartinform Publ., 2007. 8 p.

RkJQdWJsaXNoZXIy MTk0ODM1