Lateral Vibration of a Micro Overhung Rotor-Disk Subjected to an Axial Load Based on the Modified Strain Gradient Theory

Author:

Rahi Abbas1

Affiliation:

1. Faculty of Mechanical and Energy Engineering, Shahid Beheshti University, A.C., Tehran, Iran

Abstract

This paper focuses on the size dependency of lateral vibration of a micro overhung rotor-disk system subjected to an axial load based on the modified strain gradient theory. The governing equations of motions as well as the boundary conditions are derived from Hamilton’s principle. The assumed modes approach is employed to transform the governing partial differential equations into a set of infinite ordinary differential equations. The first two natural frequencies and associated instability rotational speeds of the system are analytically determined. The effects of variation in the parameters, such as the rotational speed, material length scale parameters, axial load and rotor length, on the natural frequencies and instability speeds are discussed and presented. The results obtained reveal that each of the material length scale parameters has a significant impact on the vibration response characteristics of the system.

Publisher

World Scientific Pub Co Pte Lt

Subject

Applied Mathematics,Mechanical Engineering,Ocean Engineering,Aerospace Engineering,Building and Construction,Civil and Structural Engineering

Cited by 10 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Nonlinear Free Vibration Analysis in Micro-Rotating Systems;International Journal of Structural Stability and Dynamics;2024-02-01

2. Differential transformation method for free vibration analysis of an axially loaded overhung rotor;International Journal of Computational Materials Science and Engineering;2023-06-19

3. The strain gradient-based torsional vibration analysis of micro-rotors with nonlinear flexural-torsional coupling;Applied Mathematics and Computation;2023-03

4. Fault diagnosis in rotors using adaptive neuro-fuzzy inference systems;Proceedings of the Institution of Mechanical Engineers, Part C: Journal of Mechanical Engineering Science;2022-12-19

5. Wave Propagation Analysis of Functionally Graded Graphene-Reinforced Piezoelectric Sandwich Nanoplates via Nonlocal Strain Gradient Theory;International Journal of Structural Stability and Dynamics;2022-11-30

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