XYZ Micropositioning System Based on Compliance Mechanisms Fabricated by Additive Manufacturing

This article presents the design and implementation of a micropositioning system actuated by three piezoelectric stacks to control its displacements on XYZ axes. The use of conventional piezoelectric buzzers allows us to reduce fabrication costs. The working or mobile platform is the base for object...

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Main Authors: Andres Ferrara-Bello, Pedro Vargas-Chable, Gerardo Vera-Dimas, Rafael Vargas-Bernal, Margarita Tecpoyotl-Torres
Format: Article
Language:English
Published: MDPI AG 2021-03-01
Series:Actuators
Subjects:
ABS
PLA
Online Access:https://www.mdpi.com/2076-0825/10/4/68
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spelling doaj-97920fbba0c848c3921fff7d16af849b2021-03-28T23:02:24ZengMDPI AGActuators2076-08252021-03-0110686810.3390/act10040068XYZ Micropositioning System Based on Compliance Mechanisms Fabricated by Additive ManufacturingAndres Ferrara-Bello0Pedro Vargas-Chable1Gerardo Vera-Dimas2Rafael Vargas-Bernal3Margarita Tecpoyotl-Torres4Posgrado en Ingeniería y Ciencias Aplicadas, Centro de Investigación en Ingeniería y Ciencias Aplicadas (IICBA-CIICAp), Universidad Autónoma del Estado de Morelos (UAEM), P. C. 62209, Cuernavaca, Mor., MexicoFacultad de Ciencias Químicas e Ingenierías (FCQeI), Universidad Autónoma del Estado de Morelos (UAEM), P. C. 62209, Cuernavaca, Mor., MexicoFacultad de Ciencias Químicas e Ingenierías (FCQeI), Universidad Autónoma del Estado de Morelos (UAEM), P. C. 62209, Cuernavaca, Mor., MexicoDepartamento de Ingeniería en Materiales, Instituto Tecnológico Superior de Irapuato (ITESI), P. C. 36821, Irapuato, Gto., MexicoCentro de Investigación en Ingeniería y Ciencias Aplicadas (IICBA-CIICAp), Universidad Autónoma del Estado de Morelos (UAEM), P. C. 62209, Cuernavaca, Mor., MexicoThis article presents the design and implementation of a micropositioning system actuated by three piezoelectric stacks to control its displacements on XYZ axes. The use of conventional piezoelectric buzzers allows us to reduce fabrication costs. The working or mobile platform is the base for objects that will be manipulated, for example, in automated assembling. The micropositioner can be integrated into a microgripper to generate a complete manipulation system. For micropositioner fabrication, at first, Polylactic Acid (PLA) was chosen as the structural material, but after simulation and some experimental tests performed with a micropositioner made of Acrylonitrile Butadiene Styrene (ABS), it showed larger displacement (approx. 20%) due to its lower stiffness. A third test was performed with a positioner made with Polyethylene Terephthalate Glycol (PETG), obtaining an intermediate performance. The originality of this work resides in the geometrical arrangement based on thermoplastic polymer compliance mechanisms, as well as in the use of additive manufacturing to fabricate it. An experimental setup was developed to carry out experimental tests. ANSYS™ was used for simulation.https://www.mdpi.com/2076-0825/10/4/68ABSPLAPETGMEMSmicromanipulationpiezoelectric actuation
collection DOAJ
language English
format Article
sources DOAJ
author Andres Ferrara-Bello
Pedro Vargas-Chable
Gerardo Vera-Dimas
Rafael Vargas-Bernal
Margarita Tecpoyotl-Torres
spellingShingle Andres Ferrara-Bello
Pedro Vargas-Chable
Gerardo Vera-Dimas
Rafael Vargas-Bernal
Margarita Tecpoyotl-Torres
XYZ Micropositioning System Based on Compliance Mechanisms Fabricated by Additive Manufacturing
Actuators
ABS
PLA
PETG
MEMS
micromanipulation
piezoelectric actuation
author_facet Andres Ferrara-Bello
Pedro Vargas-Chable
Gerardo Vera-Dimas
Rafael Vargas-Bernal
Margarita Tecpoyotl-Torres
author_sort Andres Ferrara-Bello
title XYZ Micropositioning System Based on Compliance Mechanisms Fabricated by Additive Manufacturing
title_short XYZ Micropositioning System Based on Compliance Mechanisms Fabricated by Additive Manufacturing
title_full XYZ Micropositioning System Based on Compliance Mechanisms Fabricated by Additive Manufacturing
title_fullStr XYZ Micropositioning System Based on Compliance Mechanisms Fabricated by Additive Manufacturing
title_full_unstemmed XYZ Micropositioning System Based on Compliance Mechanisms Fabricated by Additive Manufacturing
title_sort xyz micropositioning system based on compliance mechanisms fabricated by additive manufacturing
publisher MDPI AG
series Actuators
issn 2076-0825
publishDate 2021-03-01
description This article presents the design and implementation of a micropositioning system actuated by three piezoelectric stacks to control its displacements on XYZ axes. The use of conventional piezoelectric buzzers allows us to reduce fabrication costs. The working or mobile platform is the base for objects that will be manipulated, for example, in automated assembling. The micropositioner can be integrated into a microgripper to generate a complete manipulation system. For micropositioner fabrication, at first, Polylactic Acid (PLA) was chosen as the structural material, but after simulation and some experimental tests performed with a micropositioner made of Acrylonitrile Butadiene Styrene (ABS), it showed larger displacement (approx. 20%) due to its lower stiffness. A third test was performed with a positioner made with Polyethylene Terephthalate Glycol (PETG), obtaining an intermediate performance. The originality of this work resides in the geometrical arrangement based on thermoplastic polymer compliance mechanisms, as well as in the use of additive manufacturing to fabricate it. An experimental setup was developed to carry out experimental tests. ANSYS™ was used for simulation.
topic ABS
PLA
PETG
MEMS
micromanipulation
piezoelectric actuation
url https://www.mdpi.com/2076-0825/10/4/68
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