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    • 74. 发明公开
    • 광경화성 수지의 수축률 측정장치
    • 用于测量可光致树脂的合同比例的装置
    • KR1020160022446A
    • 2016-03-02
    • KR1020140107811
    • 2014-08-19
    • 한국기계연구원
    • 윤재성유영은김정환최두선
    • G01B11/02G01N21/17
    • 본발명은소정방향을따라순차적으로경화를진행시킬수 있어광경화성수지의경화전후의수축률을정확하게측정할수 있는광경화성수지의수축률측정장치에관한것으로, 광경화성수지의경화시수축률을측정하기위한장치에있어서, 내부에측정대상이되는광경화성수지가수용되는채널을구비하는수용부; 상기채널에수용되는광경화성수지가경화되도록상기채널을향하여광을방출하는광조사부; 상기수용부와상기광조사부사이에마련되며, 상기채널에수용되는광경화성수지에조사되는광이일방향을따라점진적으로증가하거나감소하도록상기채널에도달하는광량을조절하는광조절부;를포함하는광경화성수지의수축률측정장치가제공된다.
    • 本发明涉及一种用于测量在一定方向上连续固化的光固化树脂的收缩率的装置,并且精确地测量固化前后的光固化性树脂的收缩率。 本发明的装置,在测定光固化性树脂的收缩率的装置中,具备容纳部,该容纳部具有容纳在被测定的光固化性树脂内部的通道; 光照射单元,用于向容纳在要固化的通道中的可光固化树脂的通道发光; 以及光控制单元,放置在所述容纳单元和所述光照射单元之间,以便控制朝向所述通道的光量,用于照射到容纳在所述通道中的所述光固化树脂的光在一个方向上逐渐增大或减小。
    • 75. 发明授权
    • 인 몰드 코팅장치
    • 模具涂装装置
    • KR101536399B1
    • 2015-07-14
    • KR1020130049761
    • 2013-05-03
    • 한국기계연구원
    • 윤재성유영은최두선
    • B29C45/14B29C45/02
    • 본발명은인 몰드코팅장치에관한것으로서, 본발명에따른인 몰드코팅장치는, 제1몰딩; 상기제1몰딩과상호결합에의해내부캐비티를형성하며, 상기캐비티에코팅대상물이위치하거나성형되도록마련되는제2몰딩; 상기제2몰딩에상기캐비티와외부가연통되도록형성되어상기코팅대상물로코팅수지가주입되도록하는코팅수지용게이트; 코팅용용융수지와경화제를혼합시킨상기코팅수지가마련되며, 상기코팅수지용게이트를통해상기코팅수지를주입시키도록상기제2몰딩에결합되는믹싱헤드; 상기제1몰딩중 상기코팅수지용게이트와대향되는부분에돌출형성되는제1차단부; 상기제2몰딩에상기제1차단부가내입되도록함몰형성되는제2차단부; 및, 상기제1차단부와상기제2차단부가맞닿는부분에는상기코팅수지가분할되면서통과되어상기코팅용용융수지와상기경화제가믹싱되도록형성된믹싱채널;을포함하며, 상기제1차단부는, 상기코팅대상물에상기코팅수지를주입시, 상기제2차단부로부터멀어지는방향으로이동하여상기코팅수지용게이트를개방하고, 상기코팅수지주입이완료된후에는상기제2차단부측으로이동하여상기코팅대상물에주입된코팅수지가압착시키면서상기코팅수지용게이트를외부와차단시키는것을특징으로한다. 이에의하여, 믹싱헤드에서코팅용용융수지와경화제를 1차적으로혼합시켜형성한코팅수지를코팅수지용게이트로주입시, 코팅수지용게이트상에형성된믹싱채널을통해코팅수지가분할및 결합되면서통과되도록하여상기코팅용용융수지와상기경화제간의혼합을 2차적으로유도하여경화제의균일한분포를도모할수 있어코팅층전체에균일한경화속도를담보할수 있으며, 코팅수지주입을위한간격확보시, 상기믹싱채널이형성된부분을차단되도록하여몰딩내부의기밀성을확보할수 있는인 몰드코팅장치가제공된다.
    • 76. 发明授权
    • 광결정 나노 구조물 제작방법
    • 用于制造它们的光子晶体纳米结构方法
    • KR101501005B1
    • 2015-03-12
    • KR1020140059192
    • 2014-05-16
    • 한국기계연구원
    • 김정환장성환최두선유영은윤재성전은채
    • B82B1/00B82B3/00G03F7/00
    • B82B3/0095B82Y40/00G03F7/0002G03F7/16
    • 본 발명은 광결정 나노 구조물 제작방법에 관한 것이며, 본 발명의 광결정 나노 구조물 제작방법은 기판 상에 제1패턴층과 제2패턴층을 반복하여 적층하는 패턴층 적층단계; 상기 제1패턴층에 제1개구부를 형성하고, 상기 제1개구부로부터 깊이방향을 따라 연장되는 가상의 직선 상에 정렬되되 상기 제1개구부보다 작은 면적의 제2개구부를 상기 제2패턴층에 형성하는 개구부 형성단계;를 포함하는 것을 특징으로 한다. 따라서, 본 발명에 의하면, 광간섭 등의 현상에 의하여 구조색을 발현할 수 있는 광결정 나노 구조물 제작방법이 제공된다.
    • 本发明涉及一种光子晶体纳米结构制造方法。 本发明的光子晶体纳米结构体制造方法包括:在基板上反复层叠第一图案层和第二图案层的图案层叠层工序; 以及开口形成步骤,在所述第一图案层上形成第一开口,并形成具有比所述第二图案层上的所述第一开口的面积小的区域的第二开口,同时沿着从所述第二图案层的深度方向延伸的假想直线延伸 第一次开放 因此,本发明提供能够通过诸如光学干涉等的现象呈现结构颜色的光子晶体纳米结构制造方法。
    • 77. 发明授权
    • 나노채널이 형성된 나노구조체의 제조방법
    • 具有纳米通道的纳米结构的制造方法
    • KR101454313B1
    • 2014-10-28
    • KR1020130090347
    • 2013-07-30
    • 한국기계연구원
    • 윤재성유영은최두선김정환장성환
    • B82B3/00B82B1/00
    • B82B3/0095B82Y40/00
    • The present invention relates to a method for manufacturing a nanostructure having a nano-channel. The method for manufacturing a nanostructure having a nano-channel according to the present invention is characterized by comprising: a first injection step of injecting a solution to fill in the inside of a micro-tube; a second injection step of forming a nano-channel by injecting a fluid which does not chemically react with the solution to penetrate the center part of the solution; and a removing step of removing the fluid. Therefore, provided is a method for manufacturing a nanostructure having a nano-channel, which can form a nano-channel with a simple process of injecting and curing a solution, which does not need an additional surface treatment, and which easily provides chemical, electrical, and physical functions of a nano-channel according to components of the solution.
    • 本发明涉及一种具有纳米通道的纳米结构的制造方法。 根据本发明的制造具有纳米通道的纳米结构体的方法的特征在于包括:注入溶液以填充微管内部的第一注射步骤; 第二注射步骤,通过注入不与溶液发生化学反应以渗透溶液中心部分的流体形成纳米通道; 以及去除流体的去除步骤。 因此,提供了一种制造具有纳米通道的纳米结构体的方法,其可以通过简单的注入和固化溶液形成纳米通道,其不需要额外的表面处理,并且易于提供化学,电气 ,以及根据解决方案的组件的纳米通道的物理功能。
    • 78. 发明授权
    • 나노채널 제작방법
    • 纳米通道的制造方法
    • KR101408194B1
    • 2014-06-17
    • KR1020130122055
    • 2013-10-14
    • 한국기계연구원
    • 윤재성김정환유영은최두선
    • G03F7/26G03F7/20
    • G03F7/2016G03F7/26G03F7/32G03F7/70158G03F7/70308H01L29/0665
    • The present invention relates to a nanochannel production method including: a through-hole forming step for forming a through-hole in a substrate; a structure forming step for forming a structure, where an opening portion with a diameter smaller than the diameter of the through-hole is formed, on an inlet side of the through-hole; a filling step for filling the through-hole with a sensitizer; an irradiation step for irradiating the structure with light so that a part of the area of the sensitizer which fills the through-hole is exposed due to a diffraction phenomenon occurred when the light passes through the opening portion; and a removing step for removing the sensitizer which is exposed during the irradiation step. According to the present invention, provided is a nanochannel production method which can easily produce a nanochannel, in which an inclined, bullet-shaped, or asymmetrical inner diameter is formed.
    • 纳米通道制造方法技术领域本发明涉及一种纳米通道的制造方法,其特征在于,包括:通孔形成工序,在基板上形成贯通孔; 在通孔的入口侧形成具有直径小于通孔直径的开口部的结构的结构形成步骤; 用于用敏化剂填充通孔的填充步骤; 照射步骤,用于用光照射结构,使得当光通过开口部分时,由于衍射现象而使填充通孔的敏化剂的一部分区域暴露; 以及去除在照射步骤期间暴露的敏化剂的去除步骤。 根据本发明,提供一种可以容易地制造其中形成倾斜的,子弹形的或不对称的内径的纳米通道的纳米通道制造方法。
    • 79. 发明公开
    • 나노/마이크로 하이브리드 구조물 제조방법
    • 制备纳米/微混晶结构的方法
    • KR1020140068616A
    • 2014-06-09
    • KR1020120136314
    • 2012-11-28
    • 한국기계연구원
    • 윤재성유영은최두선장성환김정환전은채
    • B81C1/00B82B3/00
    • The present invention relates to a method for manufacturing a nano/micro hybrid structure. The method for manufacturing a nano/micro hybrid structure of the present invention comprises a first pattern layer lamination step of laminating a first pattern layer on a substrate; a nanomask applying step of applying a nanomask made of nanomaterials on the first pattern layer; a second pattern layer lamination step of laminating a second pattern layer on the first pattern layer and nanoparticles; an arranging step of arranging the micromask with the pattern width of a microscale in the upper part of the second pattern layer; and a patterning step of patterning the first pattern layer and the second pattern layer, using the nanomask and the micromask. Therefore, according to the present invention, provided is the method for manufacturing a nano/micro hybrid structure, which facilitates the manufacture of a hybrid structure where a nanoscale structure and a microscale structure are mixed through a single patterning process.
    • 本发明涉及纳米/微混合结构的制造方法。 本发明的纳米/微混合结构体的制造方法包括在基板上层叠第一图案层的第一图案层叠层工序; 将由纳米材料制成的纳米掩模施加在所述第一图案层上的纳米掩模施加步骤; 第二图案层层压步骤,在第一图案层和纳米颗粒上层压第二图案层; 布置步骤,在第二图案层的上部布置具有微细图案宽度的微图案; 以及使用纳米掩模和微掩模来图案化第一图案层和第二图案层的图案化步骤。 因此,根据本发明,提供了制造纳米/微混合结构的方法,其有利于制造通过单一图案化工艺混合纳米尺度结构和微结构的混合结构。