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<title>【日本專家】★架橋↑黏著性★透明聚醯亞胺★硬化劑★光學薄膜</title>
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<div><strong><span style="font-size: 18px; font-family: 微軟正黑體;"><span style="background-color: #ff8c00;"> 課題快報 </span></span></strong></div>
<div><span style="font-size: 20px; font-family: 微軟正黑體;"><span style="font-family: 微軟正黑體;"><span style="font-size: 20px;"> ◆</span></span><span style="color: #008000;"><strong>確定開課:【日本專家】環氧樹脂用硬化劑.硬化物的分析技術</strong></span><br><span style="font-family: 微軟正黑體;"><span style="font-size: 20px;">◆</span></span><span style="color: #008000;"><strong>新課上架:【日本專家】</strong></span><span style="color: #008000; font-family: 微軟正黑體;"><span style="font-size: 20px;"><strong>掌握高機能性「光學薄膜」解讀最新動向(可撓/折疊、防止指紋附著)</strong></span></span><br><span style="font-family: 微軟正黑體;"><span style="font-size: 20px;">◆</span></span><span style="color: #008000;"><strong>新課上架:【日本專家】如何透過架橋技術提高黏著性及改良法</strong></span><br><span style="font-family: 微軟正黑體;"><span style="font-size: 20px;">◆</span></span><span style="color: #008000;"><strong>新課上架:【日本專家】靈活運用聚醯亞胺,達成各式高機能化及透明性應用</strong></span> </span></div>
<div align="center"><span style="font-size: 20px; font-family: 微軟正黑體;"> 欲知個別課題詳情 <a style="font-weight: bold; font-size: 20px;" href="https://edm.mail03.mg7.newsleopard.com/t/c?l=4028cc526ec89bec016ecb44e2230111&s=0&y1=0&y2=4028cc526ec89bec016ecb44e2230111&y3=f1dceaf66f58537b623540e5be2f6338274a8ff279940999c58aaca013c090f3" target="_blank" rel="noopener">(請上網查看更多)</a>|http://www.sumken.com/ch </span></div>
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<div><strong><span style="font-size: 18px; font-family: 微軟正黑體;"><span style="background-color: #fd5454;"> 《課程推薦》 </span></span></strong></div>
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<div><strong> <span style="font-size: 18px; font-family: 微軟正黑體;"> ★2019年2月19、20日/台北</span><br><a style="text-decoration: underline; font-weight: bold; font-size: 28px; color: #ff0000; font-family: 微軟正黑體;" href="https://edm.mail03.mg7.newsleopard.com/t/c?l=4028cc526ec89bec016ecb44e2230111&s=1&y1=0&y2=4028cc526ec89bec016ecb44e2230111&y3=f1dceaf66f58537b623540e5be2f6338274a8ff279940999c58aaca013c090f3" target="_blank" rel="noopener"> 【日本專家】環氧樹脂用硬化劑.硬化物的分析技術 </a> </strong></div>
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<td align="right"><span style="color: #008000; font-size: medium;">主講人:柴田 勝司(前日立化成退役專家)</span></td>
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<div><span style="font-size: 22px; font-family: 微軟正黑體;"> 本講習會中,不僅介紹了環氧樹脂及其固化劑的基本知識,而且還提供了分析方法、反應分析方法、詳細解釋與組成–物性–特性等相關關係的具體實例可用於設計環氧樹脂配方。<br><strong>4. Epoxy Resin Accelerators</strong><br><strong>5. Modifiers Additives</strong><br><strong>6. Characterization of Epoxy Resins and Curing Agents</strong><br><strong>7. Analyses of Curing</strong><br><strong>8. Reaction Analysis Using Model Compounds</strong><br><strong>9. Evaluation of Cured Resins</strong><br><strong>10. Design of Epoxy Resin Formulation</strong><br><strong>11. Epoxy Resin Formulation for Various Application</strong><br><strong>12. Safety of Epoxy Resins and Hardeners</strong> </span></div>
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<div><strong> <span style="font-size: 18px; font-family: 微軟正黑體;"> ★2019年3月19日/新竹</span><br><a style="text-decoration: underline; font-weight: bold; font-size: 28px; color: #ff0000; font-family: 微軟正黑體;" href="https://edm.mail03.mg7.newsleopard.com/t/c?l=4028cc526ec89bec016ecb44e2230111&s=2&y1=0&y2=4028cc526ec89bec016ecb44e2230111&y3=f1dceaf66f58537b623540e5be2f6338274a8ff279940999c58aaca013c090f3" target="_blank" rel="noopener"> 【日本專家】從「光學薄膜」解讀次世代顯示器最新動向 </a> </strong> <span style="font-size: 18px; color: #ff0000; font-family: 微軟正黑體;">~光學高分子材料、顯示器光學薄膜功能、高機能化、最新市場技術趨勢、防止指紋附著(防污)~</span></div>
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<td align="right"><span style="color: #008000; font-size: medium;">主講人:青崎 耕(前AGC旭硝子退役專家、(株)FT-Net取締役)</span></td>
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<div><span style="font-size: 22px; font-family: 微軟正黑體;"> 本講習會中,將掌握目前光學膜的功能,並介紹次世代的有機EL、微型LED(Micro LED)最新動向,並說明將來光學膜應用的可能性。<br><strong>1. 顯示器用光學膜的種類・功能及市場動向</strong><br><strong>2. 次世代顯示器的動向與未來光學膜的應用</strong><br></span></div>
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<div><strong> <span style="font-size: 18px; font-family: 微軟正黑體;"> ★2019年3月23、24日/台北</span><br><a style="text-decoration: underline; font-weight: bold; font-size: 28px; color: #ff0000; font-family: 微軟正黑體;" href="https://edm.mail03.mg7.newsleopard.com/t/c?l=4028cc526ec89bec016ecb44e2230111&s=3&y1=0&y2=4028cc526ec89bec016ecb44e2230111&y3=f1dceaf66f58537b623540e5be2f6338274a8ff279940999c58aaca013c090f3" target="_blank" rel="noopener"> 【日本專家】如何透過架橋技術提高黏著性及改良法 </a> </strong> <span style="font-size: 18px; color: #ff0000; font-family: 微軟正黑體;">~根據架橋Polymer特性變化/黏著性改良之有效架橋與無效架橋/具體形成架橋的方法~</span></div>
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<td align="right"><span style="color: #008000; font-size: medium;">主講人:畠山 晶(前富士FujiFilm(株)退役專家)</span></td>
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<div><span style="font-size: 22px; font-family: 微軟正黑體;"> 陳述具體的架橋形成技術。然後說明如何改良接著,以便提升架橋性能。這個部分,不光只是理論而已,也想針對具體應用技術進行說明。<br><strong>1・首先-架橋與高品質製品</strong><br><strong>2・Polymer的架橋的種類</strong><br><strong>3・依據架橋 Polymer物性的變化</strong><br><strong>4・架橋的形成方法</strong><br><strong>5・架橋與黏性</strong><br><strong>6・架橋帶來附著力以外的性能提升</strong><br></span></div>
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<div><strong> <span style="font-size: 18px; font-family: 微軟正黑體;"> ★2019年3月25、26日/台北</span><br><a style="text-decoration: underline; font-weight: bold; font-size: 28px; color: #ff0000; font-family: 微軟正黑體;" href="https://edm.mail03.mg7.newsleopard.com/t/c?l=4028cc526ec89bec016ecb44e2230111&s=4&y1=0&y2=4028cc526ec89bec016ecb44e2230111&y3=f1dceaf66f58537b623540e5be2f6338274a8ff279940999c58aaca013c090f3" target="_blank" rel="noopener"> 【日本專家】靈活運用聚醯亞胺,達成各式高機能化及透明性應用 </a> </strong> <span style="font-size: 18px; color: #ff0000; font-family: 微軟正黑體;">~從聚醯亞胺基礎、分子設計、無色透明化、高機能化、複合化到應用發展~</span></div>
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<td align="right"><span style="color: #008000; font-size: medium;">主講人:山田 保治(已退役專家講師!擔任多家日本塗料公司顧問)</span></td>
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<div><span style="font-size: 22px; font-family: 微軟正黑體;"> 各種用途該如何來開發機能性聚醯亞胺,從分子.材料設計、合成、特性、機能化及應用的觀點出發,解說聚醯亞胺,其基本合成法、特性、應用及高機能化等等。<br><strong>2.聚醯亞胺的合成、結構、特性</strong><br><strong>3.變性聚醯亞胺的合成及特性</strong><br><strong>4.聚醯亞胺的分子設計及機能化</strong><br><strong>5.無色透明聚醯亞胺</strong><br><strong>6.樹枝狀聚合物及多分歧聚醯亞胺的合成及特性</strong><br><strong>7. 聚醯亞胺的複合化(奈米複合物、奈米混合物)</strong><br><strong>8.多分歧聚醯亞胺- Silica hybrid(HBPI-SiO2HBD)</strong><br><strong>9.聚醯亞胺的應用</strong><br></span></div>
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