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Title

Free Vibration Analysis of Microtubules as Orthotropic Elastic Shells Using Stress and Strain Gradient Elasticity Theory

Free Vibration Analysis of Microtubules as Orthotropic Elastic Shells Using Stress and Strain Gradient Elasticity Theory
Year: 1395
COI: JR_JSMA-8-3_004
Language: EnglishView: 194
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Authors

F Mokhtari - Faculty of Engineering, Shahrekord University
Y Tadi Beni - Nanotechnology Research Center, Shahrekord University

Abstract:

In this paper, vibration of the protein microtubule, one of the most important intracellular elements serving as one of the common components among nanotechnology, biotechnology and mechanics, is investigated using stress and strain gradient elasticity theory and orthotropic elastic shells model. Microtubules in the cell are influenced by internal and external stimulation and play a part in conveying protein substances and taking medications to the intended targets. Therefore, in order to control the biological cell functions, it is important to know the vibrational behavior of microtubules. For this purpose, using the cylindrical shell model which fully corresponds to microtubule geometry, and by considering it as orthotropic which is closer to reality, based on gradient elasticity theory, frequency analysis of the protein microtubule is carried out by considering Love’s thin shell theory and Navier solution. Also, the effect of size parameter and other variables on the results are investigated.

Keywords:

Protein microtubule , Stress and strain gradient elasticity theory , Orthotropic elastic shells , Thin shell theory , Size effect

Paper COI Code

This Paper COI Code is JR_JSMA-8-3_004. Also You can use the following address to link to this article. This link is permanent and is used as an article registration confirmation in the Civilica reference:

https://civilica.com/doc/999423/

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Mokhtari, F and Tadi Beni, Y,1395,Free Vibration Analysis of Microtubules as Orthotropic Elastic Shells Using Stress and Strain Gradient Elasticity Theory,https://civilica.com/doc/999423

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