New Decisions in Manufacturing Techniques of the Cemented Parts of Cars

Article Preview

Abstract:

The unused reserves of metal and manufacturing techniques of forgings and hardening of products promoting minimization and stabilization of deformation and a buckling of gear details are revealed. Need of rationing of size of a hardenability of steel, a regulation of speed of cooling of forgings after hot stamping and application of isothermal annealing as preliminary heat treatment is established. The rational scheme of laying and technology of low-temperature cementation of pinion gears providing the minimum change of the geometrical sizes of details in chemical and thermal processes is offered.

You might also be interested in these eBooks

Info:

Periodical:

Solid State Phenomena (Volume 284)

Pages:

1226-1229

Citation:

Online since:

October 2018

Export:

Price:

Permissions CCC:

Permissions PLS:

Сopyright:

© 2018 Trans Tech Publications Ltd. All Rights Reserved

Share:

Citation:

* - Corresponding Author

[1] V. D. Kalner, Quality control of heat treatment of steel semi-finished products and details, Moscow, Mechanical engineering, (1984).

Google Scholar

[2] V. M. Zinchenko, V. I. Gladkov, S. M. Kruglov, Deformation of details at fabrication, News of MSTU of MAMI,, 1(5) (2008) 175-178.

Google Scholar

[3] V. A. Bulgakov, Influence of initial structure on deformation and creace details after final heat treatment, Metallurgical science and heat treatment of metals, 9 (1977) 45-47.

Google Scholar

[4] V. I. Astashchenko, Yu. P. Smirnov, S. S. Soloveychik, A. I. Shveyov, T. V. Shveyova, I. M. Rodkin, Innovative solutions on drop of noise level of gear gearings, Technology of metals, 1 (2013) 48-51.

Google Scholar

[5] A.M. Dalsky, B. M. Bazrov, A. S. Vasilyev and oth., Technological heredity in machine-building production, Under the editorship of A. M. Dalsky, Moscow, MAI publishing house, (2003).

Google Scholar

[6] V. M. Zinchenko, Engineering of a surface of tooth gears by methods of chemical and thermal processing, Moscow, MSTU publishing house of N. E. Bauman, (2001).

Google Scholar

[7] V. I. Astashchenko, A. I. Shveyov. T. V. Shveyova, Quality control and heredity of a structure became at technological metalrepartition, Moscow, Academia, (2011).

Google Scholar

[8] N.N. Kachanov, Hardenability steel, Moscow, Metallurgy, (1978).

Google Scholar

[9] V.A. Astashchenko, V. G. Shibakov, Technological methods of management of structurization became by production of details of a mashin, Moscow, Academia, (2006).

Google Scholar

[10] V. M. Zinchenko, G. I. Yantsen, V. I. Astashchenko, Intensifications of process of cementation steel, Automotive industry, 7 (1986) 30-31.

Google Scholar

[11] V. I. Astashchenko, Yu. P. Smirnov, A. K. Tsukanov, Mode of gas cementation, Russian Federation Patent 1266226 C22C 8/22 (1984).

Google Scholar