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    • 3. 发明授权
    • 투명 전극 필름 제조용 기재 필름
    • 透明电极膜基片
    • KR101479811B1
    • 2015-01-08
    • KR1020110128635
    • 2011-12-02
    • 서 광 석인스콘테크(주)솔로테크 주식회사
    • 서광석김종은김태영
    • B32B27/08B32B27/26H01B5/14G02F1/1343
    • C09D133/14C09D133/08G02F1/13338G06F3/041G06F3/044G06F2203/04103H01B5/14H01B13/003H01B13/0036Y10T428/24372Y10T428/31797
    • 본 발명은 폴리에스터 등과 같은 투명 기재 표면에 전도성 고분자, 탄소나노튜브, 그래핀, 및 금속 나노와이어 등의 투명 전극소재를 형성하여 투명 전극 필름을 제조함에 있어, 에이징 시험 시 투명 전극 필름의 표면저항의 변화를 줄이기 위해 기재 필름의 양쪽 표면에 광경화형 수지층을 형성하고 그 한 면의 표면에 투명 전극층을 형성하여 투명 전극을 제조하는 기술에 관한 것이다. 이때 기재 필름의 양쪽 표면에 형성되는 광경화층의 광경화도를 조절하여 한쪽 면의 경화도는 최소 85% 이상의 경화도를, 그리고 반대 표면의 광경화 수지층의 경화도는 45-85%의 광경화도를 갖도록 조절한 후 이 표면에 투명 전극층을 형성하는 기술이다. 본 발명의 기술을 이용하면 기재 필름의 유리전이온도 이상의 높은 온도 및 높은 상대습도 조건에서 표면저항의 변화율이 초기값 대비 10% 미만이고 에이징 후 헤이즈 값의 변화가 작은 양호한 에이징 특성을 얻을 수 있는 큰 장점이 있다.
    • 通过在诸如聚酯等的透明基板的表面上涂覆诸如导电聚合物,碳纳米管,石墨烯或金属纳米线的透明电极材料来制造透明电极膜,其中为了减少表面电阻的变化 在透光性电极膜的边缘检测中,在基板膜的两面形成光固化性树脂层,在树脂层的表面上形成透明电极层。 该技术涉及调整形成在基材膜的两面上的光固化层的光固化程度,使得一面的光固化层的固化度为85%以上,光固化性树脂层的固化度为 另一面为45〜85%的范围,然后在其上形成透明电极层。
    • 5. 发明授权
    • 광학부재 및 그 제조방법
    • 光学元件及其制造方法
    • KR101152966B1
    • 2012-06-08
    • KR1020110087414
    • 2011-08-30
    • 주식회사 앤앤드에프인스콘테크(주)이대환
    • 이대환서광석김종은황재선이정신
    • G02B5/02G02F1/1335
    • G02F1/133606G02F1/133611G02F2001/133607
    • PURPOSE: An optical member and a manufacturing method thereof are provided to increase brightness by not using polyethylene terephthalate(PET) between a diffusion plate and a refraction plate, thereby expanding a view angle and preventing a light leakage phenomenon of a liquid crystal display panel. CONSTITUTION: An optical member comprises a light guide plate(110), a diffusion plate(130), and a refraction plate(150). A plurality of prism parts is formed on the upper side of the refraction plate. The diffusion part is arranged on the lower part of the refraction plate. A plurality of diffusion units is formed on the upper or lower surface of the diffusion plate for diffusing light. The diffusion plate and the refraction plate are made of resin which has adhesive or bonding properties. The refraction plate and the diffusion plate are formed into one body.
    • 目的:提供一种光学构件及其制造方法,通过在扩散板和折射板之间不使用聚对苯二甲酸乙二醇酯(PET)来增加亮度,从而扩大视角并防止液晶显示面板的漏光现象。 构成:光学构件包括导光板(110),扩散板(130)和折射板(150)。 多个棱镜部分形成在折射板的上侧。 扩散部分布置在折射板的下部。 在扩散板的上表面或下表面上形成多个扩散单元,用于漫射光。 扩散板和折射板由具有粘合或粘合特性的树脂制成。 折射板和扩散板形成为一体。
    • 7. 发明公开
    • 공중합물 캡핑제를 이용한 은 나노와이어 제조방법
    • 使用共聚物封端剂生产银纳米粒子的方法
    • KR1020140080710A
    • 2014-07-01
    • KR1020120146057
    • 2012-12-14
    • 인스콘테크(주)솔로테크 주식회사
    • 김태영김종은
    • B82B3/00B22F9/18
    • B22F9/24B22F1/0025B22F1/004B22F1/0044C22B11/04C30B7/14C30B29/02C30B29/60H01L29/0669H01L29/413
    • The present invention relates to capping agents for manufacturing silver nanowires having a diameter of 100 or less nanometers and a length of 5 or more microns, and more specifically, to a method for manufacturing silver nanowires having a high aspect ratio using vinylpyrolidone-co-vinylimidazole copolymers (PIC), which is a new capping agent different from the conventional capping agent, when synthesizing silver nanowires by mixing and heating silver salt precursors, reduction solvents, and capping agents in a method for polyol synthesis, and to silver nanowires produced thereby. When the technique of the present invention is used, it is possible to easily synthesize the silver nanowires which have a diameter of 100 or less nanometers and a length of 5 or more microns and which rarely have granular silver particles during synthesis.
    • 本发明涉及一种用于制造直径为100微米以下且长度为5微米以上的银纳米线的封端剂,更具体地说,涉及使用乙烯基吡咯烷酮 - 共 - 乙烯基咪唑制造具有高纵横比的银纳米线的方法 通过在多元醇合成方法中混合并加热银盐前体,还原溶剂和封端剂以及由此制备的银纳米线合成银纳米线时,它是不同于常规封端剂的新型封端剂的共聚物(PIC)。 当使用本发明的技术时,可以容易地合成直径为100微米以下且长度为5微米以上且在合成时很少具有颗粒状银颗粒的银纳米线。
    • 8. 发明公开
    • 일체형 광학 필름 ,확산층 제조방법 및 확산층 제조방법을 이용한 일체형 광학 필름 제조방법
    • 一体型光学膜,制造扩散层的方法以及使用制造扩散层的方法制造一体型光学膜的方法
    • KR1020130113912A
    • 2013-10-16
    • KR1020120111119
    • 2012-10-08
    • 이대환주식회사 앤앤드에프인스콘테크(주)
    • 이대환서광석김종은황재선심연승
    • G02B5/02G02B5/04G02F1/13357
    • G02B5/0268B29D11/00788G02B5/021G02F1/133606
    • PURPOSE: An integrated optical film, a diffusion layer manufacturing method, and an integrated optical film manufacturing method using the same are provided to prevent dislocation between a diffusion layer and a refractive layer unless excessive external force bigger than tolerance is applied even if the period of use is lengthened. CONSTITUTION: A first diffusion layer is manufactured by using a first mold having a first pattern corresponding to a first concave diffusion part (S10). The first diffusion layer is laminated on the upper or lower surface of a base layer, and a refractive layer or an optical transmission layer is laminated on the first diffusion layer (S20). The first diffusion layer is fully hardened to be integrated with the refractive layer or the optical transmission layer, and then integrated with the base layer (S30). [Reference numerals] (S10) Manufacture diffusion layer of pseudo hardened state; (S20) Laminate diffusion layer of pseudo hardened state to be neighborly located with a layer to be integrated with diffusion layer; (S30) Fully harden laminated diffusion layer of pseudo hardened state to produce integrated optical film
    • 目的:提供一种集成光学膜,扩散层制造方法和使用其的集成光学膜制造方法,以防止扩散层和折射层之间的位错,除非施加大于容差的外力,即使施加 使用延长了 构成:通过使用具有对应于第一凹部扩散部的第一图案的第一模具来制造第一扩散层(S10)。 第一扩散层层压在基层的上表面或下表面上,并且在第一扩散层上层叠折射层或光透射层(S20)。 第一扩散层被完全硬化以与折射层或光学传输层一体化,然后与基底层一体化(S30)。 (附图标记)(S10)伪硬化状态的制造扩散层; (S20)伪硬化状态的层叠体扩散层与被扩散层一体化的层相邻定位; (S30)完全硬化伪硬化状态的层叠扩散层,制作集成光学膜
    • 9. 发明授权
    • 일체형 광학 필름 제조 방법 및 일체형 광학 필름
    • 制造一体型光学薄膜和一体型光学薄膜的方法
    • KR101262885B1
    • 2013-05-09
    • KR1020120125357
    • 2012-11-07
    • 이대환주식회사 앤앤드에프인스콘테크(주)
    • 이대환서광석김종은황재선심연승
    • G02B5/02G02B5/04G02F1/13357B29D7/01
    • G02B5/0268B29C39/026B29C39/123B29D11/00788G02B5/0231G02B5/0278G02B6/0053G02B6/0065G02F2001/133607
    • PURPOSE: An integrated optical film and a manufacturing method thereof are provided to secure the integrality intensively and to be slim, and at the same time, to efficiently diffuse or curve the light to greatly enhance the brightness or the light equality. CONSTITUTION: An integrated optical film manufacturing method(S100) comprises the following steps: a step(S105) which coats the resin of the hardening property on a first mold which has a pattern; a step(S110) which covers a base material layer on the upper side of the coated resin on the first mold; a step(S115) which forms a first layer in a pseudo-hardening status or a complete hardening status by penetrating the light on the resin in which the base material layer is covered, for the pseudo-hardening or the complete hardening; a step(S120) which coats the resin of the hardening property on a second mold which has a pattern; a step(S125) which forms a second layer of a non-hardening status by flattening the upper side of the resin which is coated on the second mold, with the double sided film or double sided roll which has a surface with heterogeneity; a step(S135) which laminates a first layer which is separated from the first mold to make the first layer to contact on the second layer, and the base material layer; and a step(S140) which integrates the second layer, the first layer, and the base material layer by penetrating the light to the second layer, the first layer, and the base material layer, and forms a two-layer optical film by separating the second mold. [Reference numerals] (S105) Coat the resin of the hardening property on a first mold which has a pattern; (S110) Cover a base material layer on the upper side of the coated resin; (S115) Form a first layer for a pseudo-hardening status or a complete hardening status by penetrating light; (S120) Coat the resin of the hardening property on a second mold which has a pattern; (S125) Form a second layer of a non-hardening status by flattening the upper side of the coated resin on the second mold with a release film or a release roll; (S135) Laminate a first layer and the base material on a second layer of the non-hardening status; (S140) Form an integrated two-layer optical film by penetrating light for the completion hardening status
    • 目的:提供一种集成光学膜及其制造方法,其集成度和细度确保整体性,并且同时有效地扩散或弯曲光线,以大大提高亮度或光的平等性。 构成:集成光学膜制造方法(S100)包括以下步骤:在具有图案的第一模具上涂布硬化性树脂的工序(S105) 覆盖第一模具上的涂布树脂的上侧的基材层的工序(S110) 通过在其上覆盖基材层的树脂上穿透光来形成伪硬化状态的第一层或完全硬化状态的步骤(S115),用于伪硬化或完全硬化; 在具有图案的第二模具上涂覆硬化性树脂的工序(S120) 通过使具有异质性的表面的双面膜或双面辊将通过使涂覆在第二模具上的树脂的上侧变平而形成非硬化状态的第二层的步骤(S125) 层叠从第一模具分离的第一层以使第一层与第二层接触的步骤(S135)和基材层; 以及通过将光穿过第二层,第一层和基材层而将第二层,第一层和基材层整合在一起的步骤(S140),并通过分离形成双层光学膜 第二个模具。 (附图标记)(S105)在具有图案的第一模具上涂覆硬化性树脂; (S110)覆盖被覆树脂的上侧的基材层; (S115)通过穿透光形成伪硬化状态或完全硬化状态的第一层; (S120)在具有图案的第二模具上涂覆硬化性树脂; (S125)通过用剥离膜或脱模辊将第二模具上的涂布树脂的上侧压平,形成非硬化状态的第二层; (S135)在非硬化状态的第二层上层压第一层和基材; (S140)通过穿透光来形成一体化的双层光学膜用于完成硬化状态
    • 10. 发明授权
    • 광학부재
    • 光学元件
    • KR101262874B1
    • 2013-05-09
    • KR1020120017320
    • 2012-02-21
    • 이대환주식회사 앤앤드에프인스콘테크(주)
    • 이대환서광석김종은황재선심연승
    • G02B5/02G02F1/1335
    • G02B5/0215G02B5/0268
    • PURPOSE: An optical element with increased light diffusion is provided to enable a liquid crystal display panel to spread light to wide ranges for widening viewing angle, and to be integrated with other plates of a display panel when multiple laminated plates are equipped or a refraction plate and light guide plate are equipped together in the display panel. CONSTITUTION: An optical element comprises a base plate(140), a top unit(100) which is disposed at the top of the base plate, and a bottom unit(200) which is disposed at the bottom of the base plate. The top unit and the bottom unit respectively has a diffusion plate(110) which includes a plurality of bent diffusion parts(115) formed one or more surfaces of the top surface(111) and the bottom surface(113) of the diffusion plate. The base plate, the top unit, and the bottom unit are integrally formed. The plurality of bent diffusion parts are formed into a shape of intaglios. The intaglio-shaped bent surfaces of the bent diffusion parts are equipped with beads for scattering the light that passes through the bent diffusion parts.
    • 目的:提供增加光扩散的光学元件,使得液晶显示面板能够将光扩展到宽范围,以扩大视角,并且当配备多个层叠板时与显示面板的其它板一体化或折射板 和导光板组装在显示面板上。 构成:光学元件包括基板(140),设置在基板顶部的顶部单元(100)和设置在基板底部的底部单元(200)。 顶部单元和底部单元分别具有扩散板(110),其包括形成扩散板的顶表面(111)和底表面(113)的一个或多个表面的多个弯曲扩散部分(115)。 基板,顶部单元和底部单元是一体形成的。 多个弯曲扩散部分形成为凹入的形状。 弯曲扩散部分的凹版形弯曲表面装有用于散射通过弯曲扩散部分的光的珠子。