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Nonlinear Displacement of the Electrothermal V-Shaped Actuator

Duc Phuc, T. and Hong Pham, P. and Trung Hoang, K. and Ngoc-Tam, B. (2024) Nonlinear Displacement of the Electrothermal V-Shaped Actuator. Shock and Vibration, 2024.

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Abstract

This article proposes a formula for calculating the nonlinear displacement of the electrothermal V-shaped actuator aims to determine more accurately its displacement. The nonlinear displacement model is established based on the axial deformation of V-beams with two fixed ends. Hence, the theoretical displacements of a particular V-shaped actuator (i.e. dimension as beam length of 750 μm; beam width of 6 μm; beam thickness of 30 μm; inclined angle of 2°) are compared with the simulation and experimental results. The evaluation shows that our calculation error compared with the simulation and experiment is less than 5 and 12.4, respectively. This confirmed the advantages of the proposed formula according to the nonlinear displacement model. This work provides a theoretical model for predicting more precisely the displacement of a V-shaped actuator. The advantage of this model is that it will significantly reduce the time in the design and trial manufacturing process. © 2024 Truong Duc Phuc et al.

Item Type: Article
Divisions: Offices > Office of International Cooperation
Identification Number: 10.1155/2024/7121490
Uncontrolled Keywords: Axial deformations; Beam length; Beam thickness; Beam widths; Calculation error; Displacement model; Fixed ends; Inclined Angle; Nonlinear displacement; Theoretical modeling, Actuators
URI: http://eprints.lqdtu.edu.vn/id/eprint/11250

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