On the effect of viscoelasticity on behavior of gyroscopes
In the present study, the size- and time-dependent viscoelastic bending analysis of rotating spherical nanostructures made of functionally graded materials (FGMs) is performed. To simulate gyroscopic rotation, the structure is assumed to be rotated around two axes with constant angular accelerations...
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Published in | International journal of engineering science Vol. 149; p. 103236 |
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Main Authors | , , |
Format | Journal Article |
Language | English |
Published |
Oxford
Elsevier Ltd
01.04.2020
Elsevier BV |
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Abstract | In the present study, the size- and time-dependent viscoelastic bending analysis of rotating spherical nanostructures made of functionally graded materials (FGMs) is performed. To simulate gyroscopic rotation, the structure is assumed to be rotated around two axes with constant angular accelerations. The nonhomogeneous nanostructure with functionally variable thickness (FVT) is assumed as FGM/FVT structure. Geometrically, the inner side of the structure has a spherical shape and the outer side is considered as an ellipse or any other arbitrary function. The size-dependent governing equations and related boundary conditions are obtained by implementing Hamilton's principle based on Eringen's nonlocal elasticity and first-order shear deformation theories. The resulting equations are solved using the Semi-Analytical Polynomial Method (SAPM). The time-dependent deflection is obtained by applying the boundary and initial time conditions. The effects of a hygro-thermal environment and porosity are also considered for a comprehensive analysis. Since no research has been conducted so far on the nonlocal viscoelastic dynamic analysis of FGM/FVT gyroscopes, the classical results are compared with the previously published works and ABAQUS software as well as the effect of many parameters on the results including nonlocality, FGM properties of the structure, thickness changes, angular velocities and accelerations, hygro-thermal environment, porosity, and viscoelastic properties are thoroughly conducted. |
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AbstractList | In the present study, the size- and time-dependent viscoelastic bending analysis of rotating spherical nanostructures made of functionally graded materials (FGMs) is performed. To simulate gyroscopic rotation, the structure is assumed to be rotated around two axes with constant angular accelerations. The nonhomogeneous nanostructure with functionally variable thickness (FVT) is assumed as FGM/FVT structure. Geometrically, the inner side of the structure has a spherical shape and the outer side is considered as an ellipse or any other arbitrary function. The size-dependent governing equations and related boundary conditions are obtained by implementing Hamilton's principle based on Eringen's nonlocal elasticity and first-order shear deformation theories. The resulting equations are solved using the Semi-Analytical Polynomial Method (SAPM). The time-dependent deflection is obtained by applying the boundary and initial time conditions. The effects of a hygro-thermal environment and porosity are also considered for a comprehensive analysis. Since no research has been conducted so far on the nonlocal viscoelastic dynamic analysis of FGM/FVT gyroscopes, the classical results are compared with the previously published works and ABAQUS software as well as the effect of many parameters on the results including nonlocality, FGM properties of the structure, thickness changes, angular velocities and accelerations, hygro-thermal environment, porosity, and viscoelastic properties are thoroughly conducted. |
ArticleNumber | 103236 |
Author | Civalek, Ömer Akgöz, Bekir Dastjerdi, Shahriar |
Author_xml | – sequence: 1 givenname: Shahriar surname: Dastjerdi fullname: Dastjerdi, Shahriar organization: Department of Mechanical Engineering, Shahrood Branch, Islamic Azad University, Shahrood, Iran – sequence: 2 givenname: Bekir surname: Akgöz fullname: Akgöz, Bekir organization: Civil Engineering Department, Division of Mechanics, Akdeniz University, Antalya, Turkey – sequence: 3 givenname: Ömer surname: Civalek fullname: Civalek, Ömer email: civalek@yahoo.com organization: Research Center for Interneural Computing, China Medical University, Taichung Taiwan |
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SubjectTerms | Angular velocity Boundary conditions Computer simulation Deformation Finite element method Functionally gradient materials Gyroscopes Hamilton's principle Hygro-thermal environment Mathematical analysis Nanostructure Nanostructured materials Nonlocal elasticity Nonlocal elasticity theory Polynomials Porosity Rotating spheres Semi-Analytical Polynomial Method (SAPM) Shear deformation Spherical FGM/FVT gyroscope structure Thermal environments Time dependence Variable thickness Viscoelasticity |
Title | On the effect of viscoelasticity on behavior of gyroscopes |
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