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    • 1. 发明公开
    • 발열 윈도우 온도 제어 장치
    • 用于控制温度窗口温度的装置
    • KR1020100028216A
    • 2010-03-12
    • KR1020080087139
    • 2008-09-04
    • 한국기계연구원
    • 한창수송진원김준동
    • B60S1/54B60S1/02B60J1/00B82Y30/00
    • B60S1/548B60J1/002B60J1/02H05B3/84
    • PURPOSE: A device for controlling the temperature of a heating window is provided to remove dew condensation generated on the surface of the heating window by heating a nano material layer. CONSTITUTION: A device for controlling the temperature of a heating window comprises a heating window(30), a power supply unit(40), a dew condensation detecting part(50), and a controller(60). The heating window comprises a nano material layer(30b) and a power terminal(30c). The nano material layer is composed of a transparent substrate and a carbon nanotube formed on the transparent substrate. The power supply unit applies power on the power terminal. The dew condensation detecting part detects the dew condensation generated on the heating window. The controller analyzes signals detected through the dew condensation detecting part and controls the power supplied to the power terminal.
    • 目的:提供一种用于控制加热窗口的温度的装置,以通过加热纳米材料层来消除在加热窗的表面上产生的结露。 构成:用于控制加热窗口的温度的装置包括加热窗(30),电源单元(40),结露检测部(50)和控制器(60)。 加热窗包括纳米材料层(30b)和电源端子(30c)。 纳米材料层由透明基板和形成在透明基板上的碳纳米管构成。 电源单元为电源端子供电。 结露检测部检测在加热窗上产生的结露。 控制器分析通过结露检测部检测到的信号,并控制提供给电源端子的电力。
    • 2. 发明公开
    • 투명 전극 제조방법
    • 制造透明电极的方法和制造的透明电极
    • KR1020080031725A
    • 2008-04-10
    • KR1020087000210
    • 2005-07-05
    • 한국기계연구원
    • 오상근김재호김영관한창수송진원정준호
    • G02F1/1343G02F1/13H01J11/22
    • G02F1/13439G02F1/133305H01L51/0048H01L51/442
    • A method for manufacturing a transparent electrode and a transparent electrode manufactured by the same are provided to manufacture a uniform thin layer of carbon nanotube on a solid substrate and form a transparent polymer substrate on an upper part of the thin layer of carbon nanotube by curing a precursor, thereby significantly increasing adhesion stability on the polymer substrate of the thin layer. A method for manufacturing a conductive transparent electrode comprises the following steps. A thin layer of carbon nanotube(2) is formed on a solid substrate(1). A precursor(3) capable of forming a flexible transparent substrate is coated on the thin layer of carbon nanotube. The precursor is cured so as to make a flexible transparent substrate on which the thin layer of carbon nanotube is fixed. The solid substrate is removed. The solid substrate is selected from a filtration membrane, a metal substrate, an opaque inorganic substrate, a transparent inorganic substrate and a polymer substrate.
    • 提供一种制造透明电极和由其制造的透明电极的方法,以在固体基底上制造均匀的碳纳米管薄层,并通过固化在碳纳米管的薄层上形成透明的聚合物基底 前体,从而显着增加薄层的聚合物基材上的粘合稳定性。 导电性透明电极的制造方法包括以下步骤。 在固体基板(1)上形成薄层的碳纳米管(2)。 能够形成柔性透明基板的前体(3)涂覆在碳纳米管的薄层上。 固化前体以制成其上固定有碳纳米管薄层的柔性透明基材。 去除固体基质。 固体基材选自过滤膜,金属基材,不透明无机基材,透明无机基材和聚合物基材。
    • 7. 发明公开
    • 도전성 박막과 전극을 구비한 발열기판 및 이의 제조방법
    • 配有导电薄膜和电极的加热衬底及其制造方法
    • KR1020090022959A
    • 2009-03-04
    • KR1020070088683
    • 2007-08-31
    • 한국기계연구원
    • 한창수송진원김준동윤여환
    • H05B3/84
    • H05B3/84H05B2203/013H05B2214/04Y10T29/49002
    • A heating substrate and a manufacturing method thereof are provided to uniformly maintain heating performance of a conductive thin film by regularly forming width between branch electrodes formed on the conductive thin film. A heating substrate comprises a transparent substrate(100), a conductive film(105), a first main electrode(110), a second main electrode(115), a first branch electrode(120a), and a second branch electrode(120b). The conductive thin film is formed on one surface of the substrate, and is divided into a plurality of regions. The first main electrode and the second electrode are formed on the substrate. The first main electrode is adjacent to a first edge of the conductive thin film. The second main electrode is adjacent to a second edge of the conductive thin film. The first edge is faced with the second edge. The first branch electrode crosses one side of the conductive thin film from the first main electrode, and is extended to a second main electrode direction. The second branch electrode is extended from the second main electrode, and corresponds to the first branch electrode.
    • 提供加热基板及其制造方法,通过规则地形成导电薄膜上形成的分支电极之间的宽度来均匀地保持导电薄膜的加热性能。 加热基板包括透明基板(100),导电膜(105),第一主电极(110),第二主电极(115),第一分支电极(120a)和第二分支电极(120b) 。 导电薄膜形成在基板的一个表面上,并分成多个区域。 第一主电极和第二电极形成在基板上。 第一主电极与导电薄膜的第一边缘相邻。 第二主电极与导电薄膜的第二边缘相邻。 第一个边缘面临着第二个边缘。 第一分支电极从第一主电极与导电薄膜的一侧相交,并延伸到第二主电极方向。 第二分支电极从第二主电极延伸,并且对应于第一分支电极。
    • 9. 发明授权
    • 투명 히터 및 이의 제조 방법
    • 立式加热器及其制作方法
    • KR100797094B1
    • 2008-01-22
    • KR1020060095738
    • 2006-09-29
    • 한국기계연구원
    • 한창수송진원이응숙김덕종윤여환
    • H05B3/14B82Y40/00
    • H05B2214/04H05B3/84H05B3/145H05B2203/013
    • A transparent heater and a method for fabricating the same are provided to ensure a high heat-generation performance by having a thin nano material dense layer on a transparent substrate to reduce the distribution part of nano material. A transparent heater includes a transparent substrate(111), a nano material dense layer(116), and a terminal. The nano material dense layer is formed under a surface of the transparent substrate and has a structure including carbon nano tubes connected to each other. The terminal is connected to the nano material dense layer electrically. At least any one selected from a group consisting of a metallic oxide, a semiconductor, and a metal is attached to the carbon nano tubes. The nano material dense layer is formed in a structure that the carbon nano tubes are fused on the transparent substrate.
    • 提供一种透明加热器及其制造方法,以通过在透明基板上具有薄的纳米材料致密层以减少纳米材料的分布部分来确保高的发热性能。 透明加热器包括透明基板(111),纳米材料致密层(116)和端子。 纳米材料致密层形成在透明基板的表面下方,并且具有包括彼此连接的碳纳米管的结构。 端子电连接到纳米材料致密层。 选自由金属氧化物,半导体和金属组成的组中的至少任意一种被附着在碳纳米管上。 纳米材料致密层以碳纳米管熔合在透明基板上的结构形成。