Metal forming at nanoscales
Nano fabrication techniques have many applications important to our daily life, ranging from production of Blue-Ray discs to manufacture of CPU chips. Currently, these techniques are focusing on nano patterning of either polymer (Blue-Ray) or Silicon (CPU). Very little study has been carried out on...
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sg-ntu-dr.10356-748722023-03-04T18:17:07Z Metal forming at nanoscales Ong, Chin Keong Matteo Seita School of Mechanical and Aerospace Engineering A*STAR Singapore Institute of Manufacturing Technology Song Xu DRNTU::Engineering Nano fabrication techniques have many applications important to our daily life, ranging from production of Blue-Ray discs to manufacture of CPU chips. Currently, these techniques are focusing on nano patterning of either polymer (Blue-Ray) or Silicon (CPU). Very little study has been carried out on metallic materials. However, metal nano patterning has many attractive applications, such as anti-counterfeit hologram features on aluminum foils for pharmaceuticals push-through-packages. Deformation-based surface texturing technique has shown to benefit many different applications. Besides being low-cost, the setup for the system is also easy. In this project, we will look into developing deformation-based submicron surface texturing techniques on metallic substrates in collaboration with SIMTech, A*STAR. Bachelor of Engineering (Mechanical Engineering) 2018-05-24T07:18:52Z 2018-05-24T07:18:52Z 2018 Final Year Project (FYP) http://hdl.handle.net/10356/74872 en Nanyang Technological University 37 p. application/pdf |
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Nano fabrication techniques have many applications important to our daily life, ranging from production of Blue-Ray discs to manufacture of CPU chips. Currently, these techniques are focusing on nano patterning of either polymer (Blue-Ray) or Silicon (CPU). Very little study has been carried out on metallic materials. However, metal nano patterning has many attractive applications, such as anti-counterfeit hologram features on aluminum foils for pharmaceuticals push-through-packages. Deformation-based surface texturing technique has shown to benefit many different applications. Besides being low-cost, the setup for the system is also easy. In this project, we will look into developing deformation-based submicron surface texturing techniques on metallic substrates in collaboration with SIMTech, A*STAR. |
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Matteo Seita |
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Matteo Seita Ong, Chin Keong |
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Final Year Project |
author |
Ong, Chin Keong |
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Ong, Chin Keong |
title |
Metal forming at nanoscales |
title_short |
Metal forming at nanoscales |
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Metal forming at nanoscales |
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Metal forming at nanoscales |
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Metal forming at nanoscales |
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metal forming at nanoscales |
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2018 |
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http://hdl.handle.net/10356/74872 |
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