Design and implementation of two photon polymerization additive manufacturing

碩士 === 國立交通大學 === 機械工程系所 === 105 === This thesis introduces the practical issue of two-photon polymerization platform via utilization of the photoresist to fabricate two-dimensional or three-dimensional structures. The feasibility of accelerated polymerization by using laser-scanning system is discu...

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Main Authors: Chou, Chen-Hsun, 周承勳
Other Authors: Hung, Sha0-Kang
Format: Others
Language:zh-TW
Published: 2017
Online Access:http://ndltd.ncl.edu.tw/handle/5tm277
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spelling ndltd-TW-105NCTU54890432018-05-13T04:29:29Z http://ndltd.ncl.edu.tw/handle/5tm277 Design and implementation of two photon polymerization additive manufacturing 雙光子聚合積層製造設計與實作 Chou, Chen-Hsun 周承勳 碩士 國立交通大學 機械工程系所 105 This thesis introduces the practical issue of two-photon polymerization platform via utilization of the photoresist to fabricate two-dimensional or three-dimensional structures. The feasibility of accelerated polymerization by using laser-scanning system is discussed. The whole system is divided into the optical and microscopy system. Titanium sapphire femtosecond laser, centered at 800 nm, is used as the light source in the optical system. A half wave plate and polarizer are used to control the power. The pulse duration is compressed to be ~ 95 femtosecond in front of the sample. The switch of the light source is achieved by an acousto-optic modulator. The microscopy system includes an inverted microscope, incorporated with a galvanometer mirrors for two-dimensional laser scanning. The depth dimension of the structure is controlled by a motorized stage and monitored with a confocal system. By controlling the laser power and writing speed, this two-photon polymerization platform is capable of writing the structures on the sample (photoresist on substrate) with different resolution (linewidth). The resolution of the polymerized structure can be achieved by suitable light dosage, which just exceeds the threshold of polymerization. The optimal resolution (minimum linewidth) achieved in this thesis is 190 nm. Hung, Sha0-Kang Lin, Kung-Hsuan 洪紹剛 林宮玄 2017 學位論文 ; thesis 54 zh-TW
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language zh-TW
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sources NDLTD
description 碩士 === 國立交通大學 === 機械工程系所 === 105 === This thesis introduces the practical issue of two-photon polymerization platform via utilization of the photoresist to fabricate two-dimensional or three-dimensional structures. The feasibility of accelerated polymerization by using laser-scanning system is discussed. The whole system is divided into the optical and microscopy system. Titanium sapphire femtosecond laser, centered at 800 nm, is used as the light source in the optical system. A half wave plate and polarizer are used to control the power. The pulse duration is compressed to be ~ 95 femtosecond in front of the sample. The switch of the light source is achieved by an acousto-optic modulator. The microscopy system includes an inverted microscope, incorporated with a galvanometer mirrors for two-dimensional laser scanning. The depth dimension of the structure is controlled by a motorized stage and monitored with a confocal system. By controlling the laser power and writing speed, this two-photon polymerization platform is capable of writing the structures on the sample (photoresist on substrate) with different resolution (linewidth). The resolution of the polymerized structure can be achieved by suitable light dosage, which just exceeds the threshold of polymerization. The optimal resolution (minimum linewidth) achieved in this thesis is 190 nm.
author2 Hung, Sha0-Kang
author_facet Hung, Sha0-Kang
Chou, Chen-Hsun
周承勳
author Chou, Chen-Hsun
周承勳
spellingShingle Chou, Chen-Hsun
周承勳
Design and implementation of two photon polymerization additive manufacturing
author_sort Chou, Chen-Hsun
title Design and implementation of two photon polymerization additive manufacturing
title_short Design and implementation of two photon polymerization additive manufacturing
title_full Design and implementation of two photon polymerization additive manufacturing
title_fullStr Design and implementation of two photon polymerization additive manufacturing
title_full_unstemmed Design and implementation of two photon polymerization additive manufacturing
title_sort design and implementation of two photon polymerization additive manufacturing
publishDate 2017
url http://ndltd.ncl.edu.tw/handle/5tm277
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