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塑膠基材和鍍膜溫度對光學鍍膜之影響 = A study o...
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JEN-YU SHIEH
塑膠基材和鍍膜溫度對光學鍍膜之影響 = A study on optics membrane coating subject to plastic sills and membrane temperature
紀錄類型:
書目-語言資料,印刷品 : 單行本
並列題名:
A study on optics membrane coating subject to plastic sills and membrane temperature
作者:
林俊雄,
其他作者:
謝振榆,
其他團體作者:
國立虎尾科技大學
出版地:
雲林縣
出版者:
國立虎尾科技大學;
出版年:
民97[2008]
版本:
初版
面頁冊數:
84面圖,表 : 30公分;
標題:
光學鍍膜
標題:
optics
電子資源:
http://140.130.12.251/ETD-db/ETD-search-c/view_etd?URN=etd-0116108-145911
摘要註:
抗反射光學薄膜,根本上是藉由干涉作用而達成其抗反射的效果,若將抗反射光學薄膜應用在手機鏡片(塑膠基材)這領域,一者要有很好的提高穿透率的效果,一者要能克服膜推和塑膠界面結合能力較差的先天不良,提高塑膠鏡片高穿透率已有光學設計軟體為輔可盡速達到需求,但在提高塑膠鏡片光學鍍膜附著率方法,卻屈指可數。 本論文針對手機鏡頭鏡片慣用的塑膠材料PC、E48R、PMMA三種材料在不同鍍膜溫度下,去鍍光學抗反射膜,藉由不同塑膠基材特性再加上不同鍍膜溫度會產生光學薄膜的變化和差異性去作深入的探討,經一連串的實驗鍍膜和儀器量測發現不同的預熱鍍膜溫度會對光學抗反射膜和塑膠間的附著力有很大的影響,溫度愈高其附著程度有成正比的趨勢。 Resist and reflect the optical membrane, basically reach it and resist result reflected by interfering function, resist and reflect the optical membrane and employ the mobile phone lens (on plastic sill) Field this, one person have goodimprovement penetrate result of rate very, one person can overcome membrane push away with plastic interface combining ability a bad one congenital and bad, improve plastic lens high to penetrate, lead, have optics design software for complement, can up to the demand as soon as possible already, but is improving plastic lens optics and plating adhering to rate of membrane, very few. Whom this text mention to mobile phone scene lens habitual plastic material PC, E48R, PMMA in different to plate membrane temperature go down, plate optics resist, reflect membrane, adding and plating membrane temperature change and difference of producing the optical membrane to do the deep discussiondifferently with different plastic sill characteristics, plate through a succession of experiment membrane and instrument amount examine, find preheating, plating membrane temperature can resist, reflect to optics membrane and adhesive force of plastics have loud influence very different, the higher temperature is it has the tendency to directly proportional to to adhere to intensity.
塑膠基材和鍍膜溫度對光學鍍膜之影響 = A study on optics membrane coating subject to plastic sills and membrane temperature
林, 俊雄
塑膠基材和鍍膜溫度對光學鍍膜之影響
= A study on optics membrane coating subject to plastic sills and membrane temperature / 林俊雄撰 - 初版. - 雲林縣 : 國立虎尾科技大學, 民97[2008]. - 84面 ; 圖,表 ; 30公分.
光學鍍膜optics
謝, 振榆
塑膠基材和鍍膜溫度對光學鍍膜之影響 = A study on optics membrane coating subject to plastic sills and membrane temperature
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抗反射光學薄膜,根本上是藉由干涉作用而達成其抗反射的效果,若將抗反射光學薄膜應用在手機鏡片(塑膠基材)這領域,一者要有很好的提高穿透率的效果,一者要能克服膜推和塑膠界面結合能力較差的先天不良,提高塑膠鏡片高穿透率已有光學設計軟體為輔可盡速達到需求,但在提高塑膠鏡片光學鍍膜附著率方法,卻屈指可數。 本論文針對手機鏡頭鏡片慣用的塑膠材料PC、E48R、PMMA三種材料在不同鍍膜溫度下,去鍍光學抗反射膜,藉由不同塑膠基材特性再加上不同鍍膜溫度會產生光學薄膜的變化和差異性去作深入的探討,經一連串的實驗鍍膜和儀器量測發現不同的預熱鍍膜溫度會對光學抗反射膜和塑膠間的附著力有很大的影響,溫度愈高其附著程度有成正比的趨勢。 Resist and reflect the optical membrane, basically reach it and resist result reflected by interfering function, resist and reflect the optical membrane and employ the mobile phone lens (on plastic sill) Field this, one person have goodimprovement penetrate result of rate very, one person can overcome membrane push away with plastic interface combining ability a bad one congenital and bad, improve plastic lens high to penetrate, lead, have optics design software for complement, can up to the demand as soon as possible already, but is improving plastic lens optics and plating adhering to rate of membrane, very few. Whom this text mention to mobile phone scene lens habitual plastic material PC, E48R, PMMA in different to plate membrane temperature go down, plate optics resist, reflect membrane, adding and plating membrane temperature change and difference of producing the optical membrane to do the deep discussiondifferently with different plastic sill characteristics, plate through a succession of experiment membrane and instrument amount examine, find preheating, plating membrane temperature can resist, reflect to optics membrane and adhesive force of plastics have loud influence very different, the higher temperature is it has the tendency to directly proportional to to adhere to intensity.
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