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    • 1. 发明公开
    • 전자빔을 이용한 금속 나노입자 제조용 반응기 및 이를 포함하는 금속나노 입자 제조장치
    • 使用电子束制备金属纳米颗粒的反应器及其包含的设备
    • KR1020130110894A
    • 2013-10-10
    • KR1020120033207
    • 2012-03-30
    • 주식회사 알티엑스한국원자력연구원
    • 류시영채근석민명기이병철박지현강현숙김혜원구용환
    • B82B3/00
    • PURPOSE: A reactor for manufacturing metal nanoparticles and a metal nanoparticle manufacturing device including the same are provided to form uniform irradiation domain of electronic beam inside the reactor, to increase transmittance of electronic beam and to uniformly stirring reactants. CONSTITUTION: A reactor (30) for manufacturing metal nanoparticles which uses electronic beam comprises a reaction container (31), an opening part (36), a transmission window (37), an agitator (41), and a driving source (51). The reaction container accommodates reactant. The opening part is equipped in one side of the wall of the reaction container. The transmission window covers the opening part. The transmission window comprises metal thin films or polymer material with a thickness of 1-10um which transmits electronic beam. The agitator is rotatably installed inside the container. The driving source provides rotary power to the agitator. The metal nanoparticle manufacturing device comprises an electron beam irradiator, a reactor for manufacturing metal nanoparticles which uses electronic beam and a power supply source.
    • 目的:提供一种用于制造金属纳米颗粒的反应器和包含该反应器的金属纳米颗粒制造装置,以在反应器内形成电子束的均匀照射域,以增加电子束的透射率和均匀搅拌反应物。 构成:用于制造使用电子束的金属纳米粒子的反应器(30)包括反应容器(31),开口部分(36),透射窗(37),搅拌器(41)和驱动源(51) 。 反应容器容纳反应物。 开口部分装在反应容器壁的一侧。 传输窗口覆盖开口部分。 透射窗包括厚度为1-10um的金属薄膜或聚合物材料,其透射电子束。 搅拌器可旋转地安装在容器内。 驱动源为搅拌器提供旋转动力。 金属纳米颗粒制造装置包括电子束照射器,用于制造使用电子束和电源的金属纳米粒子的反应器。
    • 3. 发明授权
    • 전자빔 경화형 전도성 페이스트 조성물 및 이를 포함하는 경화방법
    • 用于触控面板的电子束固化导电组合物,包含该组合物的触控面板及其固化方法
    • KR101430150B1
    • 2014-08-18
    • KR1020130038819
    • 2013-04-09
    • 한국수력원자력 주식회사한국원자력연구원
    • 이병철구용환박지현강현숙김혜원
    • H01B1/22G06F3/041H05K1/09
    • H01B1/22G06F3/041H05K1/09
    • The present invention relates to a method for curing a conductive paste composition. The conductive pattern curing method includes the following steps: A) producing conductive paste by mixing and defoaming 60 to 90 wt% of silver particles and 10 to 40 wt% of an electron beam-curing binder; B) coating a substrate with the conductive paste obtained in step A); and C) curing the coated substrate obtained in step B) for 1 to 15 seconds with an electron beam of 0.1 to 1 mA at 200 KeV. The present invention is shorter in curing time than existing curing methods and is improved in process speed and cost reduction. Moreover, a conductive pattern that is manufactured by using the method described above has excellent characteristics and can be widely used in the field of display touch panels.
    • 本发明涉及一种固化导电糊组合物的方法。 导电图案固化方法包括以下步骤:A)通过混合和消泡60至90重量%的银颗粒和10至40重量%的电子束固化粘合剂来制备导电浆料; B)用步骤A)中获得的导电糊涂布基材; 和C)在200keV下用0.1至1mA的电子束固化步骤B)中得到的涂布基材1至15秒。 本发明的固化时间比现有的固化方法短,并且提高了工艺速度和降低成本。 此外,通过使用上述方法制造的导电图案具有优异的特性,并且可以广泛地用于显示触摸面板领域。