Planar molds for UV micro-casting of polymeric micro-devices

UV roller embossing is a promising roll-to-roll fabrication technique which has great potential for mass fabrication of polymeric micro-patterns for micro-fluidic devices. For the preparation for the development of a mold with features directed created onto the roller cylindrical drum, planar molds...

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Main Author: Wang, Jane Lu
Other Authors: Lam Yee Cheong
Format: Final Year Project
Language:English
Published: 2009
Subjects:
Online Access:http://hdl.handle.net/10356/17189
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Institution: Nanyang Technological University
Language: English
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spelling sg-ntu-dr.10356-171892023-03-04T18:17:00Z Planar molds for UV micro-casting of polymeric micro-devices Wang, Jane Lu Lam Yee Cheong School of Mechanical and Aerospace Engineering A*STAR Singapore Institute of Manufacturing Technology DRNTU::Engineering::Manufacturing UV roller embossing is a promising roll-to-roll fabrication technique which has great potential for mass fabrication of polymeric micro-patterns for micro-fluidic devices. For the preparation for the development of a mold with features directed created onto the roller cylindrical drum, planar molds with two kinds of substrates were first developed and compared. Suitable substrate surface conditions and optimum parameters in photolithography processes were studied through carefully designed experiments. By measuring the contact angle and calculating the surface energy for normal copper cladding substrates and micro-etched copper cladding substrates, higher adhesive energy and thus better developed mold feature were predicted for micro-etched copper cladding substrates. By comparison, replicas from etched substrate molds developed with surface of energy 67.2mJ/ cm2 shows the best structural features with rigid and straight lines, sharp angles and vertical side walls. This further verified the prediction from surface energy calculation. To ensure uniform and to optimize development, UV intensity inside UV Flood was measured for 5 positions with 10 UV lamp height levels. With these measurements, it is recommended to cure roller mold only along its longitudinal axis and a UV light guiding mechanism should be designed to avoid UV affecting other out-of-plane. Bachelor of Engineering 2009-06-01T06:14:44Z 2009-06-01T06:14:44Z 2009 2009 Final Year Project (FYP) http://hdl.handle.net/10356/17189 en Nanyang Technological University 84 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::Manufacturing
spellingShingle DRNTU::Engineering::Manufacturing
Wang, Jane Lu
Planar molds for UV micro-casting of polymeric micro-devices
description UV roller embossing is a promising roll-to-roll fabrication technique which has great potential for mass fabrication of polymeric micro-patterns for micro-fluidic devices. For the preparation for the development of a mold with features directed created onto the roller cylindrical drum, planar molds with two kinds of substrates were first developed and compared. Suitable substrate surface conditions and optimum parameters in photolithography processes were studied through carefully designed experiments. By measuring the contact angle and calculating the surface energy for normal copper cladding substrates and micro-etched copper cladding substrates, higher adhesive energy and thus better developed mold feature were predicted for micro-etched copper cladding substrates. By comparison, replicas from etched substrate molds developed with surface of energy 67.2mJ/ cm2 shows the best structural features with rigid and straight lines, sharp angles and vertical side walls. This further verified the prediction from surface energy calculation. To ensure uniform and to optimize development, UV intensity inside UV Flood was measured for 5 positions with 10 UV lamp height levels. With these measurements, it is recommended to cure roller mold only along its longitudinal axis and a UV light guiding mechanism should be designed to avoid UV affecting other out-of-plane.
author2 Lam Yee Cheong
author_facet Lam Yee Cheong
Wang, Jane Lu
format Final Year Project
author Wang, Jane Lu
author_sort Wang, Jane Lu
title Planar molds for UV micro-casting of polymeric micro-devices
title_short Planar molds for UV micro-casting of polymeric micro-devices
title_full Planar molds for UV micro-casting of polymeric micro-devices
title_fullStr Planar molds for UV micro-casting of polymeric micro-devices
title_full_unstemmed Planar molds for UV micro-casting of polymeric micro-devices
title_sort planar molds for uv micro-casting of polymeric micro-devices
publishDate 2009
url http://hdl.handle.net/10356/17189
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