Actual Problems in Machine Building 2016 No. 3

Актуальные проблемы в машиностроении. 2016. №3 Инновационные технологии в машиностроении ____________________________________________________________________ 171 материалы 10-ой Всероссийской научно-практической конференции. – Новосибирск, 2012. – С. 68–71. 5. Numerical simulation and experimental verification of electrode life for different coolants and its flow in plasma cutting torch / M. Senthil Kumar, B. Dhanasekar, G. Ranga Janardhana, K.S. Jayakumar // International Journal of Intelligent Information Processing. – 2012. – Vol. 3, N 2. – P. 77–85. 6. Ranga Janardhana G., Senthil Kumar M., Dhanasekar B . Experimental analysis of different coolants used in plasma cutting operation for the improved electrode life // Applied Mechanics and Materials. – 2015. – Vol. 719–720. – P. 46–49. 7. Локтионов А.А . Оценка качества реза листовых материалов при тонкоструйной плазменной резке // Обработка металлов (технология, оборудование, инструменты). – 2013. – № 4 (61). – С. 86–91. 8. Моделирование процесса тонкоструйной плазменной резки для обеспечения точности формообразования криволинейных контуров / Х.М. Рахимянов, А.И. Журавлев, А.А. Локтионов, А.Х. Рахимянов // Научный вестник НГТУ. – 2009. – № 4. – С. 123–134. 9. Loktionov A.A., Gaar N.P . Influence of technological parameters of high-precision plasma cutting on the position of the anode spot on the cut edge // Applied Mechanics and Materials. – 2015. – Vol. 788. – P. 46–51. 10. Narimanyan A . Unilateral conditions modelling the cut front during plasma cutting: FEM solution // Applied mathematical modelling. – 2009. – Vol. 33, N 1. – P. 176–197. 11. Dashkovskiy S., Narimanyan A . Thermal plasma cutting. Pt. 1. Modified mathematical model // Mathematical Modelling and Analysis. – 2007. – Vol. 12, N 4. –P. 441–458. 12. Локтионов А.А., Рахимянов Х.М . Анализ погрешностей формообразования при тонкоструйной плазменной резке металлических материалов // Современные проблемы в технологии машиностроения: сборник трудов всероссийской научно-практической конференции. – Новосибирск, 2009. – С. 151–153. 13. Rakhmyanov K.M., Rakhmyanov A.K., Zhuravlev A.I . Advantages of high-precision plasma cutting for processing bimetallic compositions // Applied Mechanics and Materials. – 2014. – Vol. 698. – P. 294–298. 14. Optimization of process parameters in plasma arc cutting of EN 31 steel based on MRR and multiple roughness characteristics using grey relational analysis / Milan Kumar Das, Kaushik Kumar, Tapan Kr. Barman, Prasanta Sahoo // Procedia Materials Science. – 2014. – Vol. 5. – P. 1550–1559. 15. Çelik Y.H . Investigating the effects of cutting parameters on materials cut in CNC plasma // Materials and Manufacturing Processes. – 2013. – Vol. 28, N 10. – P. 1053–1060. 16. Salonitis K., Vatousianos S . Experimental investigation of the plasma arc cutting process // Procedia CIRP. – 2012. – Vol. 3. – P. 287–292. 17. Handbuch zum Thema Plasmaschneiden. – Grödig: Werkstatt Ausrüstung Leitner Josef, 2002. – 66 p. 18. Kusumoto K., Chen Q.G., Xue W . Monitoring of plasma arc cutting process by cutting sound // Science and Technology of Welding and Joining. – 2006. – Vol. 11, N 6. – P. 701–706. 19. Xue W ., Kusumoto K., Nezu K . Relationship between plasma arc cutting acoustic and cut quality // Science and Technology of Welding and Joining. – 2005. – Vol. 10, N 1. – P. 44–49. 20. Xue W ., Kusumoto K., Nezu K . Measurement and analysis of plasma arc cutting acoustic signal // Materials Science Forum. – 2004. – Vol. 449–452. – P. 313–316. 21. Instruction manual of the plasma cutting machine HiFocus 130 + PGE-HM for the CNC- controlled cutting with Plasma Torch PerCut 160/170. – URL: http://www.kjellberg.de , 2007.

RkJQdWJsaXNoZXIy MTk0ODM1