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Journal of Modern Processes in Manufacturing and Production
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Rouhani Esfahani, A., Kolahdouzan, M., Moradi, M. (2013). Simulation of a Microgripper with Electrothermal Actuator Using COMSOL Software Based on the Finite Element Method. Journal of Modern Processes in Manufacturing and Production, 2(3), 47-54.
Amin Rouhani Esfahani; Mojtaba Kolahdouzan; Mehran Moradi. "Simulation of a Microgripper with Electrothermal Actuator Using COMSOL Software Based on the Finite Element Method". Journal of Modern Processes in Manufacturing and Production, 2, 3, 2013, 47-54.
Rouhani Esfahani, A., Kolahdouzan, M., Moradi, M. (2013). 'Simulation of a Microgripper with Electrothermal Actuator Using COMSOL Software Based on the Finite Element Method', Journal of Modern Processes in Manufacturing and Production, 2(3), pp. 47-54.
Rouhani Esfahani, A., Kolahdouzan, M., Moradi, M. Simulation of a Microgripper with Electrothermal Actuator Using COMSOL Software Based on the Finite Element Method. Journal of Modern Processes in Manufacturing and Production, 2013; 2(3): 47-54.

Simulation of a Microgripper with Electrothermal Actuator Using COMSOL Software Based on the Finite Element Method

Article 6, Volume 2, Issue 3, Summer 2013, Page 47-54  XML PDF (232 K)
Document Type: Research Paper
Authors
Amin Rouhani Esfahani 1; Mojtaba Kolahdouzan2; Mehran Moradi3
1M.Sc. Student, Department of Mechanical Engineering, Najafabad Branch, Islamic Azad University
2Assistant Professor, Department of Mechanical Engineering, Najafabad Branch, Islamic Azad University
3Assistant Professor, Department of Mechanical Engineering, Isfahan University of Technology
Abstract
Micro-electro-mechanical systems (MEMs) are Combination of electrical and mechanical components in Micron dimensions. In recent years, holding, actuating methods and handling of MEMs components such as microgripper, microsensors and etc. have been deeply studied. Microgrippers for handling, positioning and assembling of micro components are very useful so that for clamping need actuation created using electrostatic, electrothermal, and electromagnetic actuators. In this paper, a new design of an electrothermal microgripper with U-shape actuators for holding and carrying a wide range of parts at the same time, For voltages corresponding between 1 to 10 volts, have been fabricated. The microgripper is made of silicone with thickness of 25 microns, and pieces between 460 to 480 microns that can hold it. The behavior of the microgripper in Multi physics powerful finite element software (COMSOL) was evaluated and the displacements of arms hold and heat generations have been simulated.
Keywords
Microgripper; Electrothermal Actuator; Finite element simulation; MEMS
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