Design and analysis of a rotating device actuated by shape memory alloy for recovering useful energy from a waste heat source

The discovery of shape memory effect in materials has enabled the direct conversion of low-grade thermal energy of less than 100°C to mechanical energy. There have been a number of researches on the use shape memory alloys (SMAs) for rotational actuation; however, very few of these researches provid...

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Main Author: Han, Yuguang
Other Authors: Liu Yong
Format: Final Year Project
Language:English
Published: 2018
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Online Access:http://hdl.handle.net/10356/73246
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Institution: Nanyang Technological University
Language: English
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spelling sg-ntu-dr.10356-732462023-03-04T18:15:38Z Design and analysis of a rotating device actuated by shape memory alloy for recovering useful energy from a waste heat source Han, Yuguang Liu Yong School of Mechanical and Aerospace Engineering A*STAR Singapore Institute of Manufacturing Technology DRNTU::Engineering The discovery of shape memory effect in materials has enabled the direct conversion of low-grade thermal energy of less than 100°C to mechanical energy. There have been a number of researches on the use shape memory alloys (SMAs) for rotational actuation; however, very few of these researches provided clear insight in identifying the enabling factors for the functionality of such devices. This issue is especially prominent in the previous research, where a rotating device actuated by Nitinol was fabricated, but failed to function as expected. This project builds on the aforementioned research and identifies the critical factors that enable the functionality of the rotational device by performing extensive analysis and experimentation. A selection of optimising factors for the device are discussed based on the observations from the experiments. In this process, the prototype from the previous research is modified based on these conclusions, and eventually becomes functional. The device is then redesigned to fully incorporate the modifications made. This report of the project first presents a brief review of existing literature on the subject, followed by relevant theories on the functionality of the device. The relevant simulations, experiments as well as modifications performed on the device, complete with their observations and findings, are then documented. The redesign of the device is then presented after a summary of the observations and findings. Bachelor of Engineering (Mechanical Engineering) 2018-01-31T05:16:02Z 2018-01-31T05:16:02Z 2018 Final Year Project (FYP) http://hdl.handle.net/10356/73246 en Nanyang Technological University 73 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
Han, Yuguang
Design and analysis of a rotating device actuated by shape memory alloy for recovering useful energy from a waste heat source
description The discovery of shape memory effect in materials has enabled the direct conversion of low-grade thermal energy of less than 100°C to mechanical energy. There have been a number of researches on the use shape memory alloys (SMAs) for rotational actuation; however, very few of these researches provided clear insight in identifying the enabling factors for the functionality of such devices. This issue is especially prominent in the previous research, where a rotating device actuated by Nitinol was fabricated, but failed to function as expected. This project builds on the aforementioned research and identifies the critical factors that enable the functionality of the rotational device by performing extensive analysis and experimentation. A selection of optimising factors for the device are discussed based on the observations from the experiments. In this process, the prototype from the previous research is modified based on these conclusions, and eventually becomes functional. The device is then redesigned to fully incorporate the modifications made. This report of the project first presents a brief review of existing literature on the subject, followed by relevant theories on the functionality of the device. The relevant simulations, experiments as well as modifications performed on the device, complete with their observations and findings, are then documented. The redesign of the device is then presented after a summary of the observations and findings.
author2 Liu Yong
author_facet Liu Yong
Han, Yuguang
format Final Year Project
author Han, Yuguang
author_sort Han, Yuguang
title Design and analysis of a rotating device actuated by shape memory alloy for recovering useful energy from a waste heat source
title_short Design and analysis of a rotating device actuated by shape memory alloy for recovering useful energy from a waste heat source
title_full Design and analysis of a rotating device actuated by shape memory alloy for recovering useful energy from a waste heat source
title_fullStr Design and analysis of a rotating device actuated by shape memory alloy for recovering useful energy from a waste heat source
title_full_unstemmed Design and analysis of a rotating device actuated by shape memory alloy for recovering useful energy from a waste heat source
title_sort design and analysis of a rotating device actuated by shape memory alloy for recovering useful energy from a waste heat source
publishDate 2018
url http://hdl.handle.net/10356/73246
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