Influence of material nonlinearity on the durability of piezoelectric energy harvesters using macro fiber composite

Many researches and studies has been done to increase the output performance and bandwidth of Piezoelectric Energy Harvester (PEH). Yet, there are limited studies being done on the strength and durability aspects of piezoelectric materials such as Macro Fiber Composite (MFC). An energy harvester wil...

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Main Author: Teoh, Lai Xing
Other Authors: Yang Yaowen
Format: Final Year Project
Language:English
Published: 2015
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Online Access:http://hdl.handle.net/10356/64152
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Institution: Nanyang Technological University
Language: English
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spelling sg-ntu-dr.10356-641522023-03-03T17:09:37Z Influence of material nonlinearity on the durability of piezoelectric energy harvesters using macro fiber composite Teoh, Lai Xing Yang Yaowen School of Civil and Environmental Engineering DRNTU::Engineering::Civil engineering::Structures and design Many researches and studies has been done to increase the output performance and bandwidth of Piezoelectric Energy Harvester (PEH). Yet, there are limited studies being done on the strength and durability aspects of piezoelectric materials such as Macro Fiber Composite (MFC). An energy harvester will still be deemed as impractical if it is to fail quickly even though it is able to produce high power output. This paper aims to study the nonlinearity and durability of MFCs. When they are subjected to both high and low excitation accelerations, conclusion could be drawn on how their performance varies and what are the kinds of behaviour and characteristic that can be expected. Experimental results showed that nonlinearity occurred even at low excitation acceleration which was unexpected. Also, MFC possess recovery properties where voltage output could potentially recover to a certain efficiency after MFC were deem to have failed. These two discoveries poses several implication on the strength and durability characteristic of the piezoelectric material which emphasize to take them into consideration when designing PEH for Wireless Senor Nodes (WSN). Durability test also suggest that low excitation acceleration produces consistent power output even after failure and recovery occurred. However, recovery process might take a considerable amount of time. PEH that was subjected to high excitation acceleration were significantly less stable and is discouraged for commercial purposes until more studies are made. Bachelor of Engineering (Civil) 2015-05-25T03:24:33Z 2015-05-25T03:24:33Z 2015 2015 Final Year Project (FYP) http://hdl.handle.net/10356/64152 en Nanyang Technological University 46 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::Civil engineering::Structures and design
spellingShingle DRNTU::Engineering::Civil engineering::Structures and design
Teoh, Lai Xing
Influence of material nonlinearity on the durability of piezoelectric energy harvesters using macro fiber composite
description Many researches and studies has been done to increase the output performance and bandwidth of Piezoelectric Energy Harvester (PEH). Yet, there are limited studies being done on the strength and durability aspects of piezoelectric materials such as Macro Fiber Composite (MFC). An energy harvester will still be deemed as impractical if it is to fail quickly even though it is able to produce high power output. This paper aims to study the nonlinearity and durability of MFCs. When they are subjected to both high and low excitation accelerations, conclusion could be drawn on how their performance varies and what are the kinds of behaviour and characteristic that can be expected. Experimental results showed that nonlinearity occurred even at low excitation acceleration which was unexpected. Also, MFC possess recovery properties where voltage output could potentially recover to a certain efficiency after MFC were deem to have failed. These two discoveries poses several implication on the strength and durability characteristic of the piezoelectric material which emphasize to take them into consideration when designing PEH for Wireless Senor Nodes (WSN). Durability test also suggest that low excitation acceleration produces consistent power output even after failure and recovery occurred. However, recovery process might take a considerable amount of time. PEH that was subjected to high excitation acceleration were significantly less stable and is discouraged for commercial purposes until more studies are made.
author2 Yang Yaowen
author_facet Yang Yaowen
Teoh, Lai Xing
format Final Year Project
author Teoh, Lai Xing
author_sort Teoh, Lai Xing
title Influence of material nonlinearity on the durability of piezoelectric energy harvesters using macro fiber composite
title_short Influence of material nonlinearity on the durability of piezoelectric energy harvesters using macro fiber composite
title_full Influence of material nonlinearity on the durability of piezoelectric energy harvesters using macro fiber composite
title_fullStr Influence of material nonlinearity on the durability of piezoelectric energy harvesters using macro fiber composite
title_full_unstemmed Influence of material nonlinearity on the durability of piezoelectric energy harvesters using macro fiber composite
title_sort influence of material nonlinearity on the durability of piezoelectric energy harvesters using macro fiber composite
publishDate 2015
url http://hdl.handle.net/10356/64152
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