Design and fabrication of micro imaging lens for biomedical applications
In this research, a hot compression molding apparatus was designed and fabricated for production of polymer micro stand-alone lens. The fabricated lens can be installed easily on the tip of a fiber optic imaging purposes. FEM (Finite Element Method) simulation of the forming process was conducted to...
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sg-ntu-dr.10356-462482023-03-11T17:26:45Z Design and fabrication of micro imaging lens for biomedical applications Seyed Mohhammad Mirkhalaf Valashani Murukeshan Vadakke Matham Tor Shu Beng School of Mechanical and Aerospace Engineering DRNTU::Engineering::Bioengineering In this research, a hot compression molding apparatus was designed and fabricated for production of polymer micro stand-alone lens. The fabricated lens can be installed easily on the tip of a fiber optic imaging purposes. FEM (Finite Element Method) simulation of the forming process was conducted to optimize the processing parameters and to predict the behaviour of polycarbonate (PC) under different molding temperatures. The results of FEM simulation were then used to compare the actual experimental results. Design of experiments was used to locate the actual feasible molding window. MASTER OF ENGINEERING (MAE) 2011-07-08T05:56:46Z 2011-07-08T05:56:46Z 2010 2010 Thesis Seyed, M. M. V. (2010). Design and fabrication of micro imaging lens for biomedical applications. Master’s thesis, Nanyang Technological University, Singapore. https://hdl.handle.net/10356/46248 10.32657/10356/46248 en 170 p. application/pdf |
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DRNTU::Engineering::Bioengineering Seyed Mohhammad Mirkhalaf Valashani Design and fabrication of micro imaging lens for biomedical applications |
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In this research, a hot compression molding apparatus was designed and fabricated for production of polymer micro stand-alone lens. The fabricated lens can be installed easily on the tip of a fiber optic imaging purposes. FEM (Finite Element Method) simulation of the forming process was conducted to optimize the processing parameters and to predict the behaviour of polycarbonate (PC) under different molding temperatures. The results of FEM simulation were then used to compare the actual experimental results. Design of experiments was used to locate the actual feasible molding window. |
author2 |
Murukeshan Vadakke Matham |
author_facet |
Murukeshan Vadakke Matham Seyed Mohhammad Mirkhalaf Valashani |
format |
Theses and Dissertations |
author |
Seyed Mohhammad Mirkhalaf Valashani |
author_sort |
Seyed Mohhammad Mirkhalaf Valashani |
title |
Design and fabrication of micro imaging lens for biomedical applications |
title_short |
Design and fabrication of micro imaging lens for biomedical applications |
title_full |
Design and fabrication of micro imaging lens for biomedical applications |
title_fullStr |
Design and fabrication of micro imaging lens for biomedical applications |
title_full_unstemmed |
Design and fabrication of micro imaging lens for biomedical applications |
title_sort |
design and fabrication of micro imaging lens for biomedical applications |
publishDate |
2011 |
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https://hdl.handle.net/10356/46248 |
_version_ |
1761781739367170048 |