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Stability of the shallow axisymmetric parabolic-conic bimetallic shell by nonlinear theory - MaRDI portal

Stability of the shallow axisymmetric parabolic-conic bimetallic shell by nonlinear theory (Q410281)

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scientific article; zbMATH DE number 6021022
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Stability of the shallow axisymmetric parabolic-conic bimetallic shell by nonlinear theory
scientific article; zbMATH DE number 6021022

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    Stability of the shallow axisymmetric parabolic-conic bimetallic shell by nonlinear theory (English)
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    3 April 2012
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    Summary: We discuss the stress, deformation, and snap-through conditions of thin, axi-symmetric, shallow bimetallic shells of so-called parabolic-conic and plate-parabolic type shells loaded by thermal loading. According to the theory of the third order that takes into account the balance of forces on a deformed body, we present a model with a mathematical description of the system geometry, displacements, stress, and thermoelastic deformations. The equations are based on the large displacements theory. We numerically calculate the deformation curve and the snap-through temperature using the fourth-order Runge-Kutta method and a nonlinear shooting method. We show how the temperature of both snap-through depends on the point where one type of the rotational curve transforms into another.
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