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  1. NTU Theses and Dissertations Repository
  2. 電機資訊學院
  3. 光電工程學研究所
請用此 Handle URI 來引用此文件: http://tdr.lib.ntu.edu.tw/jspui/handle/123456789/63431
完整後設資料紀錄
DC 欄位值語言
dc.contributor.advisor蘇國棟(Guo-Dung Su)
dc.contributor.authorWei Chengen
dc.contributor.author鄭維zh_TW
dc.date.accessioned2021-06-16T16:41:17Z-
dc.date.available2017-09-07
dc.date.copyright2012-09-07
dc.date.issued2012
dc.date.submitted2012-08-31
dc.identifier.citationChapter 6 References
[1] Hsiang-Chun Wei and Guo-Dung John Su, A Large-Stroke Deformable Mirror by Gear Shaped IPMC
Design, 978-1-61284-777-1/11/$26.00 c2011 IEEE
[2] Mohsen Shahinpoor and Kwang J Kim Ionic polymer–metal composites: I. Fundamentals, Smart Mater. Struct. 10 (2001) 819–833
[3] S. Guo, T. Fukuda, K. Asaka, A new type of fish-like underwater microrobot, IEEE/ASME Transactions on Mechatronics 8 (1) (2003) 136–141.
[4] Kim K J and ShahinpoorM2002 Handbook of Polyelectrolytes vol 3, ed S Tripathy, J Kumar and H S Nalwa (Stevenson Ranch, CA: American Scientific Press (ASP)) chapter 1 (Applications of Polyelectrolytes in Ionic Polymeric Sensors, Actuators, and Artificial Muscles, Review Chapter) pp 1–22
[5] Mohsen Shahinpoor and Kwang J Kim, Ionic polymer–metal composites: I. Fundamentals, Smart Mater. Struct. 10 (2001) 819–833.
[6] DuPont™, http://www2.dupont.com/Our_Company/en_US/
[7] http://en.wikipedia.org/wiki/Deformable_mirror
[8] Yu-Hung Lin and Guo-Dung Su, Design and Applications of Reflective Optics System: Zoom System and Head-up Display System for Automobile.
[9] Zheng Chen∗, Tae I. Um, Hilary Bart-Smith, A novel fabrication of ionic polymer–metal composite membrane actuator capable of 3-dimensional kinematic motions, Sensors and Actuators A 168 (2011) 131–139.
[10] Jin-Han Jeon, Sung-Won Yeom, Il-Kwon Oh *, “Fabrication and actuation of ionic polymer metal composites patterned by combining electroplating with electroless plating,” Composites: Part A 39 (2008) 588–596.
[11] Guo-Hua Feng, Ri-Hong Chen, “Fabrication and characterization of arbitrary shaped μIPMC transducers for accurately controlled biomedical applications,” Sensors and Actuators A 143 (2008) 34–40.
[12] H.-C. Wei and G.-D. J. Su, 'A low voltage deformable mirror using ionic-polymer metal composite,' San Diego, California, USA, 2010, pp. 77880C-11.
[13] Yu-Hung Lin, Yen-Liang Liu, and Guo-Dung J. Su*, Optical zoom module based on two deformable mirrors for mobile device applications, APPLIED OPTICS / Vol. 51, No. 11.
dc.identifier.urihttp://tdr.lib.ntu.edu.tw/jspui/handle/123456789/63431-
dc.description.abstract可形變鏡面在光學系統中是一重要的反射元件,可在鏡子表面形變時改變聚焦長度,現今有幾種可用來做可形變鏡面的材料,例如液態透鏡或是微機電技術等,而微機電可形變鏡面已在我們實驗室研發多時,但其高致動電壓一直都是難以解決的問題。
在此篇論文中,我們提出一個叫離子性聚合物金屬複合材料(IPMC)來製作可形變鏡面,其優勢在於低電壓高形變量。藉由遮蔽罩子可成功的定義任意形狀的電極在IPMC上,對於圓形電極的IPMC其效果於2伏特下,可達到中心最大位移350μm,我們相信這種新的材料未來在光學系統中可當作可形變鏡面的材料。
zh_TW
dc.description.abstractDeformable mirror is a very important reflective component in optical system, which can vary the focal length while the surface deform. Nowadays several type of material were used as deformable mirror, such as liquid lens and MEMS deformable mirror. MEMS deformable mirror have been developed in our group and shows the potential.
However, the problem of high actuation voltage is not easy to solve.
In this thesis, we proposed using low voltage applied material, which is called Ionic-Polymer Metal Composite (IPMC) with the advantage of low applied voltage but high actuation performance. Arbitrary-shaped electrode IPMC was successfully fabricated by simply covering a shadow mask during electroless plating. Maximum central displacement of ellipsoid-shaped electrode IPMC can be achieved up to 350 μm under 2.5 volts applied. We believe this technique can be used in optical system as a deformable mirror in the future.
en
dc.description.provenanceMade available in DSpace on 2021-06-16T16:41:17Z (GMT). No. of bitstreams: 1
ntu-101-R99941093-1.pdf: 4832159 bytes, checksum: b11e14a56ad177e733cfd82593b4dd83 (MD5)
Previous issue date: 2012
en
dc.description.tableofcontentsCONTENTS
口試委員會審定書 #
誌謝 i
中文摘要 ii
CONTENTS iv
LIST OF FIGURES vi
Chapter 1 Introduction 1
1.1 Ionic-Polymer-Metallic Composite 1
1.2 Deformable Mirror 6
1.3 MEMS Deformable Mirror 8
1.4 Optical Power 10
1.5 Design Discussion 12
1.6 Freeform MEMS Deformable Mirror 13
1.7 Simulation Results 17
Chapter 2 Fabrication 19
2.1 Standard IPMC Fabrication Process 20
2.2 Photolithography-based patterned IPMC 27
2.3 Surface Roughness Improvement by Electrode Plating 37
Chapter 3 Simulation Results 44
3.1 Simulation Working Principal 44
3.2 Design Model 49
Chapter 4 Experiment Results 53
4.1 Measurement Set-Up 53
4.2 Measurement Results 55
Chapter 5 Conclusion 73
Chapter 6 References 74
dc.language.isoen
dc.subject可形變鏡面zh_TW
dc.subject任意電極zh_TW
dc.subject離子性聚合物金屬複合材料zh_TW
dc.subjectIPMCen
dc.subjectDeformable Mirroren
dc.subjectArbitrary-Shaped Electrodeen
dc.title在高定義電極形狀來製作光滑可調適鏡面zh_TW
dc.titleElectrode Patterning on Ionic Polymer Metal Composite for Making Smooth Surface on Tunable Mirroren
dc.typeThesis
dc.date.schoolyear100-2
dc.description.degree碩士
dc.contributor.oralexamcommittee黃鼎偉(Ding-wei Huang),何志浩(Jr-Hau He)
dc.subject.keyword離子性聚合物金屬複合材料,任意電極,可形變鏡面,zh_TW
dc.subject.keywordIPMC,Deformable Mirror,Arbitrary-Shaped Electrode,en
dc.relation.page74
dc.rights.note有償授權
dc.date.accepted2012-09-03
dc.contributor.author-college電機資訊學院zh_TW
dc.contributor.author-dept光電工程學研究所zh_TW
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