Tunable focus lens using electroactive polymer

The use of lenses has developed over centuries, from the first magnifying glass to the modern-day microscopes. As the demand for small and compact lenses increases, optical lenses with tunable focus ability are intensively researched. The introduction of Dielectric Elastomer Actuator (DEA) into tuna...

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主要作者: Ong, You Liang
其他作者: Lau Gih Keong
格式: Final Year Project
語言:English
出版: 2018
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在線閱讀:http://hdl.handle.net/10356/75076
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spelling sg-ntu-dr.10356-750762023-03-04T19:28:22Z Tunable focus lens using electroactive polymer Ong, You Liang Lau Gih Keong School of Mechanical and Aerospace Engineering DRNTU::Engineering The use of lenses has developed over centuries, from the first magnifying glass to the modern-day microscopes. As the demand for small and compact lenses increases, optical lenses with tunable focus ability are intensively researched. The introduction of Dielectric Elastomer Actuator (DEA) into tunable focus lens is one of such breakthrough in technology to achieve the goal of producing compact lenses commercially. However, current type of electrodes used to actuate the tunable focus lens are costly to be produced commercially or are not able to maintain optical transparency of the DEA. This thesis is designed to find a suitable substitute to the costly and non-transparent electrodes used for DEA tunable focus lens. The introduction of PEDOT:PSS as the working electrode as a replacement for the current graphite dust electrode to maintain optical transparency of the DEA and as a cost efficient replacement for indium-tin-oxide (ITO) electrode. In this experiment, PEDOT:PSS electrode and Timrex KS6 graphite dust electrode will undergo identical high voltage actuation using encapsulated gels lens of identical encapsulation volume. Their performance capabilities will be compared through the change in Radius of Curvature and Magnification Factor. Preliminary results show almost identical rate of change of DEA actuation without encapsulation lens by both electrodes, and a 7% difference in performance in the change of Radius of Curvature. The difference in performance may be attributed to the stiffness of the Gel lens and the physical properties of PEDOT:PSS and Timrex KS6 graphite electrode. Bachelor of Engineering (Mechanical Engineering) 2018-05-28T04:20:58Z 2018-05-28T04:20:58Z 2018 Final Year Project (FYP) http://hdl.handle.net/10356/75076 en Nanyang Technological University 54 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
Ong, You Liang
Tunable focus lens using electroactive polymer
description The use of lenses has developed over centuries, from the first magnifying glass to the modern-day microscopes. As the demand for small and compact lenses increases, optical lenses with tunable focus ability are intensively researched. The introduction of Dielectric Elastomer Actuator (DEA) into tunable focus lens is one of such breakthrough in technology to achieve the goal of producing compact lenses commercially. However, current type of electrodes used to actuate the tunable focus lens are costly to be produced commercially or are not able to maintain optical transparency of the DEA. This thesis is designed to find a suitable substitute to the costly and non-transparent electrodes used for DEA tunable focus lens. The introduction of PEDOT:PSS as the working electrode as a replacement for the current graphite dust electrode to maintain optical transparency of the DEA and as a cost efficient replacement for indium-tin-oxide (ITO) electrode. In this experiment, PEDOT:PSS electrode and Timrex KS6 graphite dust electrode will undergo identical high voltage actuation using encapsulated gels lens of identical encapsulation volume. Their performance capabilities will be compared through the change in Radius of Curvature and Magnification Factor. Preliminary results show almost identical rate of change of DEA actuation without encapsulation lens by both electrodes, and a 7% difference in performance in the change of Radius of Curvature. The difference in performance may be attributed to the stiffness of the Gel lens and the physical properties of PEDOT:PSS and Timrex KS6 graphite electrode.
author2 Lau Gih Keong
author_facet Lau Gih Keong
Ong, You Liang
format Final Year Project
author Ong, You Liang
author_sort Ong, You Liang
title Tunable focus lens using electroactive polymer
title_short Tunable focus lens using electroactive polymer
title_full Tunable focus lens using electroactive polymer
title_fullStr Tunable focus lens using electroactive polymer
title_full_unstemmed Tunable focus lens using electroactive polymer
title_sort tunable focus lens using electroactive polymer
publishDate 2018
url http://hdl.handle.net/10356/75076
_version_ 1759855227837612032