IMPROVEMENT OF RELIABILITY OF THE GUIDE COUPLE OF RAPID FORGING PRESS

Authors

  • Н. Н. Ивахненко National University of Shipbuilding, Mykolayiv, Ukraine
  • И. Д. Шевченко National University of Shipbuilding, Mykolayiv,
  • Д. В. Рукавишников National University of Shipbuilding, Mykolayiv,
  • М. А. Плоскира National University of Shipbuilding, Mykolayiv,

DOI:

https://doi.org/10.20535/2305-9001.2014.71.35873

Keywords:

Forge, form a lubricating layer, reliability, load capacity

Abstract

The article describes the design of high-speed rail pair forge cold stamping and rationale of its application. Design provides for implementation of the oil grooves guide support in the form of the toroidal surface and mating with her profiled surface. Considered design of high-speed rail pair forge provides increased reliability during operation. For this purpose, a mathematical model allows to calculate the values of the basic characteristics of the bracket guide. On the basis of the developed mathematical model is made a series of calculations for different variants of the oil groove profiling guide couples. Calculations have shown increasing support damping capacity under dynamic loads, compared with traditional designs.

Author Biographies

Н. Н. Ивахненко, National University of Shipbuilding, Mykolayiv

к.т.н., доц.

И. Д. Шевченко, National University of Shipbuilding, Mykolayiv

к.т.н., доц.

References

1. Galahov M.A., Gusjatnikov P.B., Novikov A.P. Matematicheskie modeli kontaktnoj gidrodinamiki (Mathematical models of the contact fluid dynamics). Moscow: Nauka, 1985. 296 p.

2. Lojcjanskij L.G.Mehanikazhidkostiigaza (Fluid Mechanics). Moscow: Drofa, 2003. 840 p.

3. Shevchenko I.D.,Ivahnenko N.N., Rukavishnikov D.V. Matematicheskaja model' bezjekscentrisitetnoj gidrodinamicheskojo poryskol'zhenija pri razlichnyh formah smazochnogo sloja (Mathematical model of hydrodynamic sliding bearings in various forms of lubricating layer). Problemy obchisljuval'noї mehanіki і mіcnostіkonstrukcіj: zbіrnik naukovihprac'. Dnіpropetrovs'kij nacіonal'nij unіversitet. Dnіpropetrovs'k: Lіra, 2011. no. 16, pp. 275–285.

4. Rukavishnikov D.V., Shevchenko I.D. Metod rascheta harakteristik profilirovannojo poryskol'zhenija (The method of calculating the characteristics of the profiled sliding support). Vestnik NUK no 3, 2012. http://ev.nuos.edu.ua/ru/publication?publicationId=18330

5. Kaіrov O.S., Shevchenko І.D., Іvahnenko M.M., Rukavіshnіkov D.V., Trubієnko R.S., Shevchenko E. Ju., Vasil'kovs'kij S.O. Opora gіdrodinamіchna (Hydrodynamic bearing) Patent Ukraїni na korisnu model' no 71595. A. 25.07.2012.

6. Korovchinskij M.V. Teoreticheskie osnovy raboty podshipnikov skol'zhenija (the theoretical basis of the sliding bearings). Moscow: Mashgiz, 1959. 404 p.

7. Savin L.A., Fedorov D.I. «Programmnyj kompleks «Podshipniki skol'zhenija» (Software package “Sliding bearing), Svidetel'stvo Rossijskoj Federacii o registracii programmy dlja JeVM no 2008612375 A 16.05.2008.

8. WiesławGraboń. Computer Program for Simulation of Pressure Distribution in the Hydrodynamic Radial Bearing. WiesławGraboń, Jan Smykla. INFORMATION SCIENCE AND COMPUTING, BOOK 27: Artificial Intelligence Driven Solutions to Business and Engineering Problems, pp 176-186.

Published

2014-12-29

Issue

Section

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