| | Mechanics of Solids A Journal of Russian Academy of Sciences | | Founded
in January 1966
Issued 6 times a year
Print ISSN 0025-6544 Online ISSN 1934-7936 |
Archive of Issues
Total articles in the database: | | 12854 |
In Russian (Èçâ. ÐÀÍ. ÌÒÒ): | | 8044
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In English (Mech. Solids): | | 4810 |
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<< Previous article | Volume 56, Issue 6 / 2021 | Next article >> |
Thakur P., Sethi M., Kumar N., Gupta K., and Bhardwaj R.K., "Analytical Solution of Hyperbolic Deformable Disk Having Variable Density," Mech. Solids. 56 (6), 1039-1046 (2021) |
Year |
2021 |
Volume |
56 |
Number |
6 |
Pages |
1039-1046 |
DOI |
10.3103/S0025654421060194 |
Title |
Analytical Solution of Hyperbolic Deformable Disk Having Variable Density |
Author(s) |
Thakur P. (Department of Mathematics, ICFAI University, Baddi, Himachal Pradesh, India, pankaj_thakur15@yahoo.co.in)
Sethi M. (Department of Mathematics, ICFAI University, Baddi, Himachal Pradesh, India)
Kumar N. (Department of Mathematics, ICFAI University, Baddi, Himachal Pradesh, India)
Gupta K. (Department of Physics, ICFAI University, Baddi, Himachal Pradesh, India)
Bhardwaj R.K. (Department of Physics, ICFAI University, Baddi, Himachal Pradesh, India) |
Abstract |
This paper deals with the study of stress distribution and angular speed for hyperbolic rotating disk made of isotropic materials having variable density parameter. The effects of angular speed and stresses in the hyperbolic disk with variable density have been discussed by using transition theory. With the effect of density parameter, the rotating disk requires higher values of angular speed for the initial/fully - plastic stages and the values of hoop stress are increased at the inner surface of hyperbolic disk made of isotropic (i.e. rubber/copper) materials. The hoop stress is maximum at the inner surface of the convergent disk made of copper material, but linear in the case of the disk made of rubber material. |
Keywords |
isotropic, stresses, angular speed, hyperbolic disk, density |
Received |
04 February 2021 | Revised |
08 July 2021 | Accepted |
08 July 2021 |
Link to Fulltext |
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