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    題名: Mechanically tunable aspheric lenses via additive manufacture of hanging elastomeric droplets for microscopic applications
    作者: 傅尹坤;Fuh, Yiin-Kuen;Chen, Pin-Wen;Lai, Zheng-Hong
    貢獻者: 工學院機械工程學系
    關鍵詞: Additives;Aspheric lens;Boards;Circuit boards;Curing;Droplets;Lenses;microscope;Microscopes;Optics;PDMS;Silicone resins;Three dimensional;tunable
    日期: 2016-07-03
    上傳時間: 2026-04-23 15:17:44 (UTC+8)
    出版者: Abingdon: Taylor & Francis
    摘要: 摘要: Mechanically deformable lenses with dynamically tunable focal lengths have been developed in this work. The fabricated five types of aspheric polydimethylsiloxane (PDMS) lenses presented here have an initial focal length of 7.0, 7.8, 9.0, 10.0 and 10.2 mm. Incorporating two modes of operation in biconvex and concave-convex configurations, the focal lengths can be tuned dynamically as 5.2-10.2, 5.5-9.9, 6.6-11.9, 6.1-13.5 and 6.6-13.5 mm respectively. Additive manufacturing was utilized to fabricate these five types of aspheric lenses (APLs) via sequential layering of PDMS materials. Complex structures with three-dimensional features and shorter focal lengths can be successfully produced by repeatedly depositing, inverting and curing controlled PDMS volume onto previously cured PDMS droplets. From our experiments, we empirically found a direct dependence of the focal length of the lenses with the amount (volume) of deposited PDMS droplets. This new mouldless, low-cost, and flexible lens fabrication method is able to transform an ordinary commercial smartphone camera into a low-cost portable microscope. A few microscopic features can be readily visualized, such as wrinkles of ladybird pupa and printed circuit board. The fabrication technique by successively applying hanging droplet and facile mechanical focal-length-tuning set-up can be easily adopted in the development of high-performance optical lenses.
    出版者: Abingdon: Taylor & Francis
    出版日期: 2016-07-03
    出處: Journal of modern optics, 2016-07, Vol.63 (12), p.1129-1135
    版權: 2016 Taylor & Francis 2016
    版權: 2016 Taylor & Francis
    識別號: ISSN: 0950-0340
    識別號: EISSN: 1362-3044
    識別號: DOI: 10.1080/09500340.2015.1128007
    顯示於類別:[機械工程學系] 期刊論文

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