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Dive into the research topics where Yasuhiro Koike is active.

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Featured researches published by Yasuhiro Koike.


Ultra-High-Definition Imaging Systems | 2018

Analysis of heat shrinkage of uniaxially heat-drawn films and synthesis of heat-resistant temperature-independent zero-birefringence polymer (Conference Presentation)

Yuma Kobayashi; Akihiro Tagaya; Yasuhiro Koike

Several kinds of optical polymer films in liquid crystal displays (LCDs) greatly contribute to image quality. However, contrast ratio of LCDs degrades with an increase in birefringence of polymer films used in the LCDs. The major types of birefringence are orientational birefringence and photoelastic birefringence. Furthermore, it was recently found that the birefringence caused by specified conformation and degree of orientation of polymer chains strongly depends on the temperature. We designed and synthesized a temperature-independent zero-birefringence polymer (TIZBP): poly(methyl methacrylate/benzyl methacrylate/phenyl methacrylate = 45/22/33(wt.%)) that has zero intrinsic birefringence over a wide temperature range in the random copolymerization method. However, the glass transition temperature Tg of this TIZBP is 95°C, and heat-drawn films of this TIZBP shrank at lower temperature than Tg, for example, at about 60°C. Upper limit of operating temperature of LCDs in automobile is higher than 60°C. Therefore, this TIZBP is not proper for practical use in automobile.nIn this research, after analysis of heat shrinkage of heat-drawn films, heat-resistant TIZBP (HRTIZBP) that exhibits sufficiently low heat shrinkage at 60°C, zero intrinsic birefringence and zero temperature coefficient of intrinsic birefringence was designed and synthesized. First of all, heat shrinkage ratio of heat-drawn films of poly(methyl methacrylate),poly(methyl methacrylate/benzyl methacrylate) and TIZBP was investigated. The heat shrinkage of polymer films began at Tg-55°C. Based on the results, because targeting Tg for HRTIZBP was determined to 125°C, higher than 115°C with a sufficient margin, poly(methyl methacrylate/phenyl methacrylate/N-ethyl maleimide = 39/45/16 (wt.%)) was synthesized. This polymer exhibits lower heat shrinkage than the existing polymers, especially the heat shrinkage at 60°C is 0.0%. Therefore, this polymer was confirmed to be HRTIZBP.


Archive | 2011

OPTICAL COLLIMATOR AND OPTICAL CONNECTOR USING SAME

Yasuhiro Koike; Hitoshi Suzuki; Hiroyuki Muto; Akihito Mitsui; Naohiko Moriya; Toshitaka Torikai; Takayoshi Yamauchi


Synthesiology | 2014

Development of a household high-definition video transmission system based on ballpoint-pen technology: A low cost, easily deployed optical connection using a ballpoint-pen type interconnect

Tetsuya Toma; Hiroshi Takizuka; Toshitaka Torikai; Hitoshi Suzuki; Tetsuro Ogi; Yasuhiro Koike


Archive | 2014

GAS SEPARATION MEMBRANES BASED ON PERFLUORINATED POLYMERS

Zhenjie He; Timothy C. Merkel; Yoshiyuki Okamoto; Yasuhiro Koike


Handbook of Fluoropolymer Science and Technology | 2014

16. Amorphous Perfluoropolymers

Yoshiyuki Okamoto; František Mikeš; Kotaro Koike; Yasuhiro Koike


Archive | 2013

EXTRUSION RAW MATERIAL FEEDING DEVICE AND METHOD OF PRODUCING OPTICAL TRANSMISSION BODY USING THE SAME

Shuya Wada; 周也 和田; Yuki Masabe; 祐季 正部; Yasuhiro Koike; 康博 小池


Archive | 2011

Optical collimator and optical connector using the same

Yasuhiro Koike; Akihito Mitsui; Hiroyuki Muto; Yojiro Sano; Hitoshi Suzuki; Toshitaka Torikai; Takayoshi Yamauchi; 章仁 三井; 陽二郎 佐野; 康博 小池; 貴義 山内; 広行 武藤; 等 鈴木; 俊敬 鳥飼


Archive | 2013

Graded-index plastic optical fibers: Materials and fabrication techniques

Kotaro Koike; Yasuhiro Koike; Yoshiyuki Okamoto


Archive | 2011

ROD SHAPED PLASTIC MATERIAL, POLYMERIZATION CONTAINER AND POLYMERIZATION DEVICE FOR OBTAINING THE SAME AND MANUFACTURING METHOD FOR OPTICAL TRANSMISSION BODY USING ROD SHAPED PLASTIC MATERIAL

Masato Aoyama; Ryosuke Nakao; Yasuhiro Koike; 亮介 中尾; 康博 小池; 真登 青山


Archive | 2017

FLUID SEPARATION PROCESS USING MEMBRANES BASED ON PERFLUORINATED POLYMERS

Zhenjie He; Timothy C. Merkel; Johannes G. Wijmans; Yoshiyuki Okamoto; Yasuhiro Koike

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