Optimization of aerosol jet printed strain sensor design via computational simulation

3D printing technology has been getting attention in these few year. There is an increasing interest in 3D printed circuit and sensor recently. Aerosol Jet printing technique is used for printing the strain sensor for this project. It is a contact-less and mask-less type of printing process. Thus, t...

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Main Author: Wong, Chee Khong
Other Authors: Yeong Wai Yee
Format: Final Year Project
Language:English
Published: 2017
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Online Access:http://hdl.handle.net/10356/73061
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Institution: Nanyang Technological University
Language: English
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spelling sg-ntu-dr.10356-730612023-03-04T18:41:25Z Optimization of aerosol jet printed strain sensor design via computational simulation Wong, Chee Khong Yeong Wai Yee School of Mechanical and Aerospace Engineering DRNTU::Engineering 3D printing technology has been getting attention in these few year. There is an increasing interest in 3D printed circuit and sensor recently. Aerosol Jet printing technique is used for printing the strain sensor for this project. It is a contact-less and mask-less type of printing process. Thus, this allows aerosol jet to create 3D-contact. In addition, it is capable in achieving fine pitch and high resolution printing for nanomaterial. Strain gauge is widely used in various industry fields. With the used of strain sensor, dimensions that are difficult to measure such as force and stress of a objects or specimens can be measure and calculate. Thus, it is able to prevent any failure due to high stress. In this report, the simulation software ANSYS was used to optimize an aerosol jet printed strain sensor. Both the parameters and material of the design strain gauge will be adjusted in the simulation. Through simulation, the performance of the strain sensor based on different materials, substrate and patterns will be able to be estimated. Additionally, by the used of the simulation software to adjust or modify the parameters and materials, it greatly helps the user to save both the time and cost spent on conducting real-life experiments. The different experiment groups such as dimension of the strain gauge, foil grid design and material, and substrate material will be conducted to find out the factor that will affects the strain sensitivity of the strain gauge. An optimized strain gauge with gauge factor of 1.7224 is presented in this report. Bachelor of Engineering (Mechanical Engineering) 2017-12-27T04:40:28Z 2017-12-27T04:40:28Z 2017 Final Year Project (FYP) http://hdl.handle.net/10356/73061 en Nanyang Technological University 75 p. application/pdf
institution Nanyang Technological University
building NTU Library
continent Asia
country Singapore
Singapore
content_provider NTU Library
collection DR-NTU
language English
topic DRNTU::Engineering
spellingShingle DRNTU::Engineering
Wong, Chee Khong
Optimization of aerosol jet printed strain sensor design via computational simulation
description 3D printing technology has been getting attention in these few year. There is an increasing interest in 3D printed circuit and sensor recently. Aerosol Jet printing technique is used for printing the strain sensor for this project. It is a contact-less and mask-less type of printing process. Thus, this allows aerosol jet to create 3D-contact. In addition, it is capable in achieving fine pitch and high resolution printing for nanomaterial. Strain gauge is widely used in various industry fields. With the used of strain sensor, dimensions that are difficult to measure such as force and stress of a objects or specimens can be measure and calculate. Thus, it is able to prevent any failure due to high stress. In this report, the simulation software ANSYS was used to optimize an aerosol jet printed strain sensor. Both the parameters and material of the design strain gauge will be adjusted in the simulation. Through simulation, the performance of the strain sensor based on different materials, substrate and patterns will be able to be estimated. Additionally, by the used of the simulation software to adjust or modify the parameters and materials, it greatly helps the user to save both the time and cost spent on conducting real-life experiments. The different experiment groups such as dimension of the strain gauge, foil grid design and material, and substrate material will be conducted to find out the factor that will affects the strain sensitivity of the strain gauge. An optimized strain gauge with gauge factor of 1.7224 is presented in this report.
author2 Yeong Wai Yee
author_facet Yeong Wai Yee
Wong, Chee Khong
format Final Year Project
author Wong, Chee Khong
author_sort Wong, Chee Khong
title Optimization of aerosol jet printed strain sensor design via computational simulation
title_short Optimization of aerosol jet printed strain sensor design via computational simulation
title_full Optimization of aerosol jet printed strain sensor design via computational simulation
title_fullStr Optimization of aerosol jet printed strain sensor design via computational simulation
title_full_unstemmed Optimization of aerosol jet printed strain sensor design via computational simulation
title_sort optimization of aerosol jet printed strain sensor design via computational simulation
publishDate 2017
url http://hdl.handle.net/10356/73061
_version_ 1759858396071198720