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A Journal of Russian Academy of Sciences
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IssuesArchive of Issues2023-2pp.554-562

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G. Verma and P. Thakur, "Creep Modelling of Rotating Spherical Shell Made Up of Magnesium and Rubber," Mech. Solids. 58 (2), 554-562 (2023)
Year 2023 Volume 58 Number 2 Pages 554-562
DOI 10.3103/S0025654422601124
Title Creep Modelling of Rotating Spherical Shell Made Up of Magnesium and Rubber
Author(s) G. Verma (Department of Mathematics, Hans Raj Mahila Maha Vidyalaya, Jalandhar, Punjab, India, gkdon85@gmail.com)
P. Thakur (Department of Mathematics, ICFAI University, Baddi, Himachal Pradesh, India, pankaj_thakur15@yahoo.co.in)
Abstract The creep modelling in rotating spherical shell is analyzed numerically on the dependence of isotropic material (rubber) and transversely isotropic material (magnesium). The objective of the study has been the identification of asymptotic creep phenomenon in rotating body by generalization of strain components. This paper contains an asymptotic solution for the creep stress distribution in the spherical shell made up of magnesium and rubber. The governing equations to compute the creep effects are given, and the mathematical results obtained in the modelling of shell problem are presented.
Keywords creep, rotating, spherical shell, stress, transversely isotropic
Received 26 August 2022Revised 01 December 2022Accepted 02 December 2022
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