Improvement proposals for nano-dispersion and mixing technology in polymer nanocomposites and heterogeneous dispersion.
S00705
Improvement proposals for nano-dispersion and mixing techniques in polymer nanocomposites and heterogeneous dispersion.
1. What is dispersion, and what is its purpose? 1-1. The reality of dispersion From conventional dispersion to nano dispersion 1-2. Reinforcement theory In the case of inorganic nanocomposites In the case of polymer nano dispersion 2. Shear flow dispersion and extensional flow dispersion 2-1. Shear flow dispersion The reality of heterogeneous dispersion Several attempts to resolve heterogeneity 2-2. Extensional flow dispersion Dispersion mechanisms, theory The reality of homogeneous dispersion 3. Manufacturing technologies for nanocomposites 3-1. Inorganic nanocomposites Sol-gel method (in situ method) Layer insertion method High shear method Slurry dispersion method 3-2. Methods and possibilities for non-miscible polymer nano dispersion 4. Topics 5. Requests from participants * Until one week before the event date [Q&A and business card exchange]
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★A one-day intensive course covering everything from the basics to on-site discussions and new mixing technologies by a leading expert in polymer blending! 【Instructor】Shinji Hashizume, Ph.D., President of Estia Co., Ltd. ≪Formerly of Kobe Steel, Ltd.≫ 【Target Audience】Corporate representatives facing challenges in polymer blending and dispersion 【Venue】Tekuno Kawasaki 5F, Room 5 【Kawasaki, Kanagawa】 Approximately 7 minutes from JR Mizonokuchi Station (For those coming from afar: 17 minutes from the nearest Shinkansen station, JR Shinagawa Station) 【Date and Time】July 28 (Wednesday) 11:00 AM - 4:00 PM
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**Seminar Explanation** In a nano-dispersed state, the material strength becomes abnormally high. The operation of kneading that creates such a state is currently being re-evaluated. The reasons for this are becoming clearer. On the other hand, due to the unique properties of nano-dispersion, such as transparency with particle diameters smaller than the wavelength of light, new application fields are emerging in cutting-edge technologies like solar power generation. This lecture will focus on "Nano-dispersion and Kneading Action." The conventional shear flow dispersion has too many drawbacks. I believe it is time to reconsider the kneading operation. I would like to use this as a starting point for discussing where the problems lie and how improvements can be made.
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