Pressing Tubes with Conical-Stepped Needles Computer Simulating

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There are the results of computer simulating using DEFORM-2D specialized software and experimental researches during the pressing of aluminium alloys tubes with conical-stepped needles. On the basis of the experiment mathematical planning and dividing coordinate grid the influence of the taper angle and needle position to the pressing stress and the intensity of deformation relative to the die parallel land was established. The optimal parameters determining methods of conical-stepped needles geometry were proposed.

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204-210

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February 2016

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© 2016 Trans Tech Publications Ltd. All Rights Reserved

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[1] M. Z. Ermanyuk, L. S. Kogan, M. F. Golovinov, Aluminum alloys tubes pressing, Metallurgy, Moscow. (1976).

Google Scholar

[2] B. V. Kucheryaev, M. Z. Ermanyuk, Pressure calculation during the tubes pressing with conical-speed needle, Processing metals and alloys by pressure, Moscow, 269. (1965).

Google Scholar

[3] M. Bauzer, G. Zauer, K. Zigert, Pressing, Moscow. (2009).

Google Scholar

[4] V.G. Belov, N.I. Kosatkin. Optimization of the calibration steps bevel needle in the pressing of copper alloys. Magazine MGUPI. №3. (2012) pp.32-37.

Google Scholar

[5] V. R. Kargin, B. V. Kargin, Analysis of the structures of needles for the extrusion of pipes, Samars, Publishing: SSAU, Metdeform (2011) pp.111-115.

Google Scholar

[6] U. S. Starostin, M. F. Golovinov, M. Z. Ermanyuk. The flow of metal during the extrusion of pipes with conical-speed needle, Forging and Stamping Production (1979) pp.6-8.

Google Scholar

[7] H. Sarabkur, A. Heik, E. Tomsen. American Society of Mechanical Engineers, Forging and Stamping Production, series B (1970) pp.202-209.

Google Scholar

[8] I. L. Perlin, L. X. Raitbarg, Theory of metal pressing, Processing metals and alloys by pressure, Moscow, Metallurgy. (1975) p.568.

Google Scholar

[9] U.P. Adler, E. V. Markova, U. V. Granovskiy, The experiment planning in the search of optimal conditions, Moscow, Publishing: Nayka. (1971).

Google Scholar

[10] V. R. Kargin, A. P. Bykov, Y, A, Erisov, Modeling metal processing processes by pressure in the program DEFORM-2D, Samars, Publishing: MIR, (2011).

Google Scholar