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Journal of Engineering and Applied Sciences

ISSN: Online 1818-7803
ISSN: Print 1816-949x
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Non-Linear Dynamics of Flexible Curvilinear Bernoulli-Euler Nano-Beams in a Stationary Temperature Field

J. Awrejcewicz, I. Kutepov, S.P. Pavlov, I.V. Papkova and A.V. Krysko
Page: 2079-2084 | Received 21 Sep 2022, Published online: 21 Sep 2022

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Abstract

In this study the mathematical model of non-linear dynamics of flexible curvilinear beams in a stationary temperature field is proposed. On a basis of the variation principles the PDEs governing nonlinear dynamics of curvilinear nano-beams are derived. The proposed mathematical model does not include any requirements for the temperature distribution along the beam thickness and it is defined via solution to the 2D Laplace equation for the corresponding boundary conditions. The governing PDEs are reduced to ODEs employing the finite difference method of a second order and then the counterpart Cauchy problem has been solved using the 4th order Runge-Kutta method. The convergence of reduction from PDEs to ODEs is validated by the Runge principle. In particular, it has been shown that the solutions obtained taking into account the material nano-structural features are more stable in comparison to the case where the micro-effects are neglected.


How to cite this article:

J. Awrejcewicz, I. Kutepov, S.P. Pavlov, I.V. Papkova and A.V. Krysko. Non-Linear Dynamics of Flexible Curvilinear Bernoulli-Euler Nano-Beams in a Stationary Temperature Field.
DOI: https://doi.org/10.36478/jeasci.2016.2079.2084
URL: https://www.makhillpublications.co/view-article/1816-949x/jeasci.2016.2079.2084