Mass Sensitivity of Nonuniform Microcantilever Beams

Author:

Sagar Singh Sajal1,Pal Prem2,Kumar Pandey Ashok3

Affiliation:

1. Mechanical and Aerospace Engineering, IIT Hyderabad, Kandi 502285, India

2. Department of Physics, IIT Hyderabad, Kandi 502285, India

3. Mechanical and Aerospace Engineering, IIT Hyderabad, Kandi 502285, India e-mail:

Abstract

Microelectromechanical systems (MEMS) based cantilever beams have been widely used in various sensing applications. Previous studies have aimed at increasing the sensitivity of biosensors by reducing the size of cantilever beams to nanoscale. However, the influence of nonuniform cantilever beams on mass sensitivity has rarely been investigated. In this paper, we discuss the mass sensitivity with respect to linear and nonlinear response of nonuniform cantilever beam with linear and quartic variation in width. To do the analysis, we use the nonlinear Euler–Bernoulli beam equation with harmonic forcing. Subsequently, we derive the mode shape corresponding to linear, undamped, free vibration case for different types of beams with a tip mass at the end. After applying the boundary conditions, we obtain the resonance frequencies corresponding to various magnitudes of tip mass for different kinds of beams. To do the nonlinear analysis, we use the Galerkin approximation and the method of multiple scales (MMS). Analysis of linear response indicates that the nondimensional mass sensitivity increases considerably by changing the planar geometry of the beam as compared to uniform beam. At the same time, sensitivity further increases when the nonuniform beam is actuated in higher modes. Similarly, the frequency shift of peak amplitude of nonlinear response for a given nondimensional tip mass increases exponentially and decreases quadratically with tapering parameter, α, for diverging and converging nonuniform beam with quartic variation in width, respectively. For the converging beam, we also found an interesting monotonically decreasing and increasing behavior of mass sensitivity with tapering parameter α giving an extremum point at α=0.5. Overall analysis indicates a potential application of the nonuniform beams with quartic converging width for biomass sensor.

Publisher

ASME International

Subject

General Engineering

Cited by 11 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. Frequency and damping analysis of hexagonal microcantilever beams;Sensors and Actuators A: Physical;2024-09

2. Free Transverse Vibration of General Power-Law NAFG Beams with Tip Masses;Journal of Vibration Engineering & Technologies;2022-04-30

3. Dynamic analysis of straight stepped microbeams;International Journal of Non-Linear Mechanics;2021-01

4. Nonlinear Free Vibration of Elastically Actuated Microtubes;Optimal Auxiliary Functions Method for Nonlinear Dynamical Systems;2021

5. An effective analytical approach to nonlinear free vibration of elastically actuated microtubes;Meccanica;2020-09-01

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