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    • 52. 发明授权
    • 전사를 이용한 나노/마이크로 렌즈몰드 및 렌즈 제작방법
    • 使用传输制作镜头模具和镜头的方法
    • KR101255726B1
    • 2013-04-17
    • KR1020120026108
    • 2012-03-14
    • 한국기계연구원
    • 장성환최두선김재현유영은황경현
    • B29C33/38B29C33/42B29C59/02
    • PURPOSE: A manufacturing method of a nano/micro lens mold and a lens using transferring are provided to precisely manufacture a lens mold having a nano/micro structure at a relatively low cost. CONSTITUTION: A manufacturing method for a nano/micro lens mold using transferring includes: a step(S110) of forming a transfer pattern, which is formed of a material activated by or manipulated by a magnetic force, on a substrate part; a step(S120) of transferring the transfer pattern on a buffer part; a step(S130) of preparing a master having a concave recessed part; and a step(S140) of attaching the transfer pattern on the buffer part to the master using the magnetic force in order to manufacture the lens mold. When the transfer pattern is formed, a sacrificial layer is laminated on a base for forming the device layer, and then the transfer pattern is patterned on the sacrificial layer. [Reference numerals] (AA) Start; (BB) End; (S110) Transfer pattern forming step; (S120) First transfer step; (S130) Master preparing step; (S140) Lens mold manufacturing step;
    • 目的:提供纳米/微透镜模具的制造方法和使用转印的透镜,以相对低的成本精确地制造具有纳米/微结构的透镜模具。 构成:使用转印的纳米/微透镜模具的制造方法包括:在基板部分上形成由由磁力激活或由磁力操纵的材料形成的转印图案的工序(S110) 将转印图案转印在缓冲部上的步骤(S120) 准备具有凹形凹部的主体的步骤(S130) 以及使用磁力将缓冲部分上的转印图案附着到母版上以制造透镜模具的步骤(S140)。 当形成转印图案时,在用于形成器件层的基底上层叠牺牲层,然后在牺牲层上图案化转印图案。 (附图标记)(AA)开始; (BB)结束; (S110)转印图案形成工序; (S120)第一转印步骤; (S130)主准备步骤; (S140)镜片模具制造步骤;
    • 54. 发明公开
    • 이형제조성물 및 이를 합성하는 방법
    • 用于UV固化的模具释放组合物及其合成方法
    • KR1020120125826A
    • 2012-11-19
    • KR1020110043508
    • 2011-05-09
    • 한국기계연구원
    • 유영은최두선권기환김진상김봉기
    • B29C33/56C07D265/04
    • C08K5/357C07D265/04C08F2/50C08F220/34
    • PURPOSE: A release agent composite and a composition method thereof are provided to reduce surface energy after hardening by using monomers including a benzoxazine group as release agents and adding the monomers to indurative resins. CONSTITUTION: A reactant is manufactured(S10). 1,4 dioxane is supplied to the reactant(S20). A second reactant is manufactured(S30). Tri-ethanolamine and dichloromethane are added to the second reactant(S40). A third reactant is manufactured(S31). Dibutyltin dilaurate is added to the third reactant(S41). [Reference numerals] (AA) Start; (BB) End; (S10) Reactant manufacturing step; (S20) Reaction step; (S30) Second reactant manufacturing step; (S31) Third reactant manufacturing step; (S40) Second reaction step; (S41) Third reaction step
    • 目的:提供脱模剂复合物及其组合方法,以通过使用包含苯并恶嗪基团的单体作为脱模剂并将单体加入到浸渍树脂中来降低硬化后的表面能。 构成:制造反应物(S10)。 将1,4-二恶烷供给反应物(S20)。 制造第二反应物(S30)。 将三乙醇胺和二氯甲烷加入第二反应物(S40)。 制造第三反应物(S31)。 向第三反应物中加入二月桂酸二丁基锡(S41)。 (附图标记)(AA)开始; (BB)结束; (S10)反应物制造工序; (S20)反应步骤; (S30)第二反应物制造步骤; (S31)第三反应物制造步骤; (S40)第二反应步骤; (S41)第三反应步骤
    • 56. 发明授权
    • 터치센서유닛
    • 触摸Seonsor单位
    • KR101094927B1
    • 2011-12-15
    • KR1020090126003
    • 2009-12-17
    • 한국기계연구원
    • 윤재성최두선유영은장성환전은채
    • G06F3/041
    • 본 발명은 터치센서유닛에 관한 것으로서, 본 발명에 따른 터치센서유닛은 함몰된 캐비티(cavity)가 형성된 기판; 상기 캐비티 내에 설치되는 다수 개의 접촉센서; 상기 캐비티의 상부를 덮도록 형성되며, 터치압력이 상면에 인가시 상기 캐비티의 내측으로 탄성변형되어 저면이 상기 센서단자와 접촉되고, 가압해제시 탄성복원되는 탄성접촉부; 상기 접촉센서와 연결되며, 상기 탄성접촉부와 상기 접촉센서의 접촉되는 숫자에 따라 상기 탄성접촉부에 인가된 터치압력을 산출하는 신호처리부;를 포함하는 것을 특징으로 한다. 이에 의하여 MEMS기술을 적용하여 터치센서유닛을 제조시 기계적 또는 화학적 안정성을 향상시켜 수명을 연장할 수 있고, 별도의 보호필름이 구비되지 않아도 되어 제조비용을 절감하고, 보호필름이 구비되지 않아도 됨으로써 반응속도가 저하되지 않아 사용자의 터치감도가 향상되며, 인가되는 터치압력을 산출해낼 수 있는 터치센서유닛이 제공된다.
      터치센서, MEMS, 터치압력, 접촉센서, 압력센서, 메탈파우더, CNT
    • 60. 发明公开
    • 유연성 폴리머 기판용 수분제거장치
    • 柔性聚合物基材的水分去除装置
    • KR1020090111467A
    • 2009-10-27
    • KR1020080037098
    • 2008-04-22
    • 한국기계연구원
    • 제태진최두선황경현유영은배종오박재성
    • H01L21/304
    • H01L21/67115
    • PURPOSE: A moisture removal device of flexible polymer substrate is provided to rapidly dry a substrate without damage by drying and heating the substrate during the delivery by the transferring roller. CONSTITUTION: A moisture removal device of flexible polymer substrate includes a chamber(100), an open and close frame(200), a vacuum pump, an unwinding roller(400), an unwinding motor, an unwinding transferring guide roller(600), a main heating and drying unit(700), a cooling drum(800), a drum rotation motor, a coiling transferring guide roller(1000), the secondary heating and drying unit(1100), a winding roller(1200), and a reel motor. The one-side part of chamber of a barrel shape is opened. The vacuum pump is connected with the chamber to make the inside of chamber vacuum. A flexible polymer substrate is installed at the open and close frame. The unwinding motor is connected with the unwinding roller to rotate. The main heating and drying unit dries the flexible polymer substrate with radiant heat generated from infrared lamp.
    • 目的:提供柔性聚合物基材的去湿装置,以在输送辊输送期间通过干燥和加热基材而快速干燥基材而不损坏基材。 构造:柔性聚合物基材的除湿装置包括室(100),开闭框架(200),真空泵,退卷辊(400),退绕电机,退绕转印导向辊(600) 主加热干燥单元(700),冷却滚筒(800),滚筒旋转马达,卷取传送导辊(1000),二次加热干燥单元(1100),卷绕辊(1200) 卷轴电机。 桶形的室的单侧部分打开。 真空泵与室连接,使室内真空。 柔性聚合物基材安装在开闭框架上。 退绕马达与放卷辊连接以旋转。 主要的加热和干燥单元用红外线灯产生的辐射热干燥柔性聚合物基材。