A Modified U-Shaped Micro-Actuator with a Compliant Mechanism Applied to a Microgripper

In this paper, a modified U-shaped micro-actuator with a compliant mechanism is proposed. It was analyzed with a uniform and modified thin arm, as well as a similar variation in the corresponding flexure, in order to observe the impact of the compliant lumped mechanism. The use of these compliant me...

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Main Authors: Pedro Vargas-Chable, Margarita Tecpoyotl-Torres, Ramon Cabello-Ruiz, Jose Alfredo Rodriguez-Ramirez, Rafael Vargas-Bernal
Format: Article
Language:English
Published: MDPI AG 2019-03-01
Series:Actuators
Subjects:
Online Access:http://www.mdpi.com/2076-0825/8/1/28
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spelling doaj-fe0e6751f14340c0af7c0327ce228cfb2020-11-24T22:08:42ZengMDPI AGActuators2076-08252019-03-01812810.3390/act8010028act8010028A Modified U-Shaped Micro-Actuator with a Compliant Mechanism Applied to a MicrogripperPedro Vargas-Chable0Margarita Tecpoyotl-Torres1Ramon Cabello-Ruiz2Jose Alfredo Rodriguez-Ramirez3Rafael Vargas-Bernal4Instituto de Investigación en Ciencias Básicas y Aplicadas-Centro de Investigación en Ingenieria y Ciencias Aplicadas (IICBA-CIICAp), Universidad Autónoma del Estado de Morelos (UAEM), Cuernavaca 62209, Mor., MexicoInstituto de Investigación en Ciencias Básicas y Aplicadas-Centro de Investigación en Ingenieria y Ciencias Aplicadas (IICBA-CIICAp), Universidad Autónoma del Estado de Morelos (UAEM), Cuernavaca 62209, Mor., MexicoUniversidad Tecnológica Emiliano Zapata, Emiliano Zapata 62765, Mor., MexicoInstituto de Investigación en Ciencias Básicas y Aplicadas-Centro de Investigación en Ingenieria y Ciencias Aplicadas (IICBA-CIICAp), Universidad Autónoma del Estado de Morelos (UAEM), Cuernavaca 62209, Mor., MexicoDepartamento de Ingeniería en Materiales, Instituto Tecnológico Superior de Irapuato (ITESI). Carretera Irapuato- Silao Km 12.5, Col. El Copal. Irapuato 36821, Gto., MexicoIn this paper, a modified U-shaped micro-actuator with a compliant mechanism is proposed. It was analyzed with a uniform and modified thin arm, as well as a similar variation in the corresponding flexure, in order to observe the impact of the compliant lumped mechanism. The use of these compliant mechanisms implies an increment in the deformation and a reduction in the equivalent stress of 25% and 52.25%, respectively. This characterization was developed using the Finite Element Method (FEM) in ANSYS Workbench. The design, analysis and simulation were developed with Polysilicon. In this study, the following performance parameters were also analyzed: force and temperature distribution. This device is supplied with voltage from 0 V up to 3 V, at room temperature. The modified U-shaped actuator was applied in both arms of a microgripper, and to evaluate its electrothermal performance, a static structural analysis has been carried out in Ansys Workbench. The microgripper has an increment in deformation of 22.33%, an equivalent stress reduction of 50%, and a decrease in operation frequency of 10.8%. The force between its jaws is of 367 µN. This low level of force could be useful when sensitive particles are manipulated.http://www.mdpi.com/2076-0825/8/1/28Polysiliconelectrothermal actuationdimplesANSYS
collection DOAJ
language English
format Article
sources DOAJ
author Pedro Vargas-Chable
Margarita Tecpoyotl-Torres
Ramon Cabello-Ruiz
Jose Alfredo Rodriguez-Ramirez
Rafael Vargas-Bernal
spellingShingle Pedro Vargas-Chable
Margarita Tecpoyotl-Torres
Ramon Cabello-Ruiz
Jose Alfredo Rodriguez-Ramirez
Rafael Vargas-Bernal
A Modified U-Shaped Micro-Actuator with a Compliant Mechanism Applied to a Microgripper
Actuators
Polysilicon
electrothermal actuation
dimples
ANSYS
author_facet Pedro Vargas-Chable
Margarita Tecpoyotl-Torres
Ramon Cabello-Ruiz
Jose Alfredo Rodriguez-Ramirez
Rafael Vargas-Bernal
author_sort Pedro Vargas-Chable
title A Modified U-Shaped Micro-Actuator with a Compliant Mechanism Applied to a Microgripper
title_short A Modified U-Shaped Micro-Actuator with a Compliant Mechanism Applied to a Microgripper
title_full A Modified U-Shaped Micro-Actuator with a Compliant Mechanism Applied to a Microgripper
title_fullStr A Modified U-Shaped Micro-Actuator with a Compliant Mechanism Applied to a Microgripper
title_full_unstemmed A Modified U-Shaped Micro-Actuator with a Compliant Mechanism Applied to a Microgripper
title_sort modified u-shaped micro-actuator with a compliant mechanism applied to a microgripper
publisher MDPI AG
series Actuators
issn 2076-0825
publishDate 2019-03-01
description In this paper, a modified U-shaped micro-actuator with a compliant mechanism is proposed. It was analyzed with a uniform and modified thin arm, as well as a similar variation in the corresponding flexure, in order to observe the impact of the compliant lumped mechanism. The use of these compliant mechanisms implies an increment in the deformation and a reduction in the equivalent stress of 25% and 52.25%, respectively. This characterization was developed using the Finite Element Method (FEM) in ANSYS Workbench. The design, analysis and simulation were developed with Polysilicon. In this study, the following performance parameters were also analyzed: force and temperature distribution. This device is supplied with voltage from 0 V up to 3 V, at room temperature. The modified U-shaped actuator was applied in both arms of a microgripper, and to evaluate its electrothermal performance, a static structural analysis has been carried out in Ansys Workbench. The microgripper has an increment in deformation of 22.33%, an equivalent stress reduction of 50%, and a decrease in operation frequency of 10.8%. The force between its jaws is of 367 µN. This low level of force could be useful when sensitive particles are manipulated.
topic Polysilicon
electrothermal actuation
dimples
ANSYS
url http://www.mdpi.com/2076-0825/8/1/28
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