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The Influence of Technological Conditions of the Process of Cogging in Flat Dies on the Quality of Two-Phase Titanium Alloys

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EN
Abstrakty
EN
To create a rational technology of cogging process and to determinate the optimal values of the angles of tilt and single reduction the stress-strain state (SSS) of the blank during cogging in the flat dies was analyzed. By using the finite element method and program MSC.SuperForge quantitative data are obtained and the basic patterns of distribution of SSS, the temperature during the simulation of tilting in flat dies with different angles of tilting and the amount of reduction were established. Sustainable experimental-industrial technology of forging of two-phase titanium alloys was developed and tested.
Twórcy
autor
  • Czestochowa University of Technology, Faculty of Production Engineering and Materials Technology, Institute of Metal Forming and Safety Engineering, 19 Armii Krajowej Av., 42-200 Częstochowa, Poland
  • Czestochowa University of Technology, Faculty of Production Engineering and Materials Technology, Institute of Metal Forming and Safety Engineering, 19 Armii Krajowej Av., 42-200 Częstochowa, Poland
  • Kazakh National Research Technical State University named after K.I. Satpayev, Almaty, Kazakhstan
Bibliografia
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  • [4] A. Kawałek, H. Dyja, S. Mróz, M. Knapiński, Effect of plate asymmetric rolling parameters on the change of the tptal unit pressure of roll. Metalurgija Metalurgy 50, 3 163-166 (2011).
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  • [6] S. A. Mashekov, N.T. Biyakayeva A.S. Mashekova, Monografiya. Problemy kovki titanovykh splavov i ikh resheniya. Chast’ 1 i 2 Izdatel’stvo: LAP LAMBERT Academic Publishing 230, 251 (2013).
  • [7] G. Banaszek, S. Berski, H. Dyja, A. Kawałek, Theoretical modelling of metallurgical defect closing-up processes during forming a forging. Journal of Iron and Steel Research International 20, 9 111-116 (2013).
  • [8] Yu. M. Antoshchenkov, Raschet protsessov kovki. - M.: Mashinostroyeniye 240. 2001.
  • [9] S. A. Mashekov, N.T. Biyakayeva, A.Ye. Nurtazayev, Tekhnologiya kovki v instrumente s izmenyayushcheysya formoy. - Izdatel’stvo LAP Lambert Academic Publishing 664, 2012.
  • [10] YU .M.Antoshchenkov, Optimizatsiya tekhnologicheskikh parametrov kovki. - Kuznechno-shtampovochnoye proizvodstvo 12, 8-10 (2000).
  • [11] K. M.Ivanov, V. S.Shevchenko, E. Ye.Yurgenson, Metod konechnykh elementov v tekhnologicheskikh zadachakh OMD: Uchebnoye posobiye. S-Pb: Institut Mashinostroyeniya 217, 2000.
  • [12] V. A.Tyurin, Dopolnitel’nyye makrosdvigi pri plasticheskoy deformatsii slitkov, nepreryvnolitykh i prokatannykh zagotovok. - Metallurg 19, 33-35 (2000).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-a257cf4d-3b08-42c9-bf89-653607c4ce49
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