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    • 4. 发明授权
    • 탄소나노소재를 이용한 고열전도성 폴리에스테르 필름 및그 제조 방법과 덕트
    • 使用碳纳米管的高电导率聚酯膜和制造方法和导管
    • KR100811047B1
    • 2008-03-12
    • KR1020070069592
    • 2007-07-11
    • (주)넥스콘
    • 정춘균추교진김해식
    • C08J5/18B29D7/01B82Y30/00
    • A method for preparing a highly heat conductive polyester film, a highly heat conductive polyester film prepared by the method, and highly heat conductive polyester film duct prepared from the film are provided to improve thermal conductivity by using a carbon nanotube, thereby reducing the amount of oil used in a boiler. A method for preparing a highly heat conductive polyester film comprises the steps of dispersing a carbon nanotube in water or ethanol to prepare a highly dispersed carbon nanotube; mixing a mixture comprising the highly dispersed carbon nanotube and 1-20 wt% of a solvent with an LDPE (low density polyethylene) powder, and mixing it with a common plastic powder and a pigment to prepare a highly dispersed carbon nanotube-LDPE master batch containing 3 wt% of carbon nanotube; and mixing the highly dispersed carbon nanotube-LDPE master batch with LLDPE in a ratio of 2-5 : 1 by weight and blow molding it to prepare a highly heat conductive polyester film.
    • 提供一种制备高导热性聚酯膜的方法,通过该方法制备的高导热性聚酯膜和由该膜制备的高导热性聚酯膜导管,以通过使用碳纳米管来提高导热性,由此减少 用于锅炉的油 制备高导热性聚酯膜的方法包括将碳纳米管分散在水或乙醇中以制备高度分散的碳纳米管的步骤; 将包含高度分散的碳纳米管和1-20重量%的溶剂的混合物与LDPE(低密度聚乙烯)粉末混合,并将其与普通的塑料粉末和颜料混合,以制备高度分散的碳纳米管-LDPE母料 含有3重量%的碳纳米管; 并将高度分散的碳纳米管-LDPE母料与2-5重量%的LLDPE混合,并吹塑成型以制备高导热性聚酯膜。
    • 5. 发明公开
    • 금 또는 은나노입자를 함유한 분산용액을 이용한 친환경건축시공방법
    • 使用金或银纳米级溶液的环境建筑方法
    • KR1020070014506A
    • 2007-02-01
    • KR1020050069193
    • 2005-07-29
    • (주)넥스콘
    • 정춘균추교진김해식
    • E04B1/92B82Y30/00
    • An environment-friendly construction method using a dispersant solution containing gold or silver nano particles is provided to keep the indoor environment of a building clean by removing formaldehyde or VOC(volatile organic compound) contained in interior construction materials and having antibacterial and bactericidal properties against germs and virus parasitic on interior construction materials. The environment-friendly construction method using a dispersant solution containing gold or silver nano particles comprises the steps of: coating an inner concrete wall with gold or silver nano particles by spraying a 10 ppm gold or silver nano dispersant solution having 99.9 percent antibacterial and bactericidal properties on an inner concrete wall in 0.1 kg/m^2 through a spray gun, and drying naturally; attaching Styrofoam, aluminum foil sheet and plywood on the concrete coated with gold or silver nano particles in order; spraying a gold or silver nano dispersant solution on the plywood which emits a large amount of formaldehyde, in the same method; attaching a gypsum board and wallpaper on the plywood coated with gold or silver nano particles in order; and spraying a gold or silver nano dispersant solution on the wallpaper.
    • 提供使用含有金或银纳米颗粒的分散剂溶液的环境友好的施工方法,通过除去室内建筑材料中含有的甲醛或挥发性有机化合物(挥发性有机化合物),对细菌具有抗细菌和杀菌性能,从而保持建筑物的室内环境清洁 和病毒寄生在室内建筑材料上。 使用含有金或银纳米颗粒的分散剂溶液的环境友好的施工方法包括以下步骤:通过喷洒具有99.9%抗菌和杀菌性能的10ppm金或银纳米分散剂溶液来涂覆金或银纳米颗粒的内混凝土壁 通过喷枪在0.1 kg / m ^ 2的内混凝土墙上自然干燥; 依次将聚苯乙烯,铝箔片和胶合板贴在涂有金或银纳米颗粒的混凝土上; 以相同的方法,在发生大量甲醛的胶合板上喷涂金或银纳米分散剂溶液; 将石膏板和墙纸贴在涂有金或银纳米颗粒的胶合板上; 并在壁纸上喷涂金或银纳米分散剂溶液。
    • 6. 发明公开
    • 탄소나노튜브가 강화된 와이퍼 블레이드
    • 用碳纳米管加固的刮刀刀片
    • KR1020080024251A
    • 2008-03-18
    • KR1020060088337
    • 2006-09-13
    • 주식회사 오리엔트정공(주)넥스콘
    • 정춘균추교진
    • B60S1/38B60S1/00B82Y30/00
    • B60S1/38B60S2001/3829
    • A wiper blade reinforced with a carbon nano-tube is provided to easily transmit emitted thermal energy to an end of the wiper blade by improving thermal conductivity as compared with a conventional wiper blade installed a heating element. A wiper blade(100) includes a base substance(200) and a carbon nano-tube(300). The base substance is formed by mixing a thermoplastic resin and an elastic polymer. The carbon nano-tube is mixed with the base substance and is dispersed in the base substance. One surface of the wiper blade is in contact with a wiper frame of a transporting device, and the other surface of the wiper blade is in contact with a glass surface so that the wiper blade removes foreign materials by swing motion.
    • 提供用碳纳米管增强的刮片,以便与安装加热元件的传统刮片相比,通过改善导热性,将发射的热能容易地传递到刮片的一端。 刮水片(100)包括基体(200)和碳纳米管(300)。 基础物质通过混合热塑性树脂和弹性聚合物形成。 碳纳米管与基体物质混合并分散在基体中。 刮水片的一个表面与传送装置的擦拭器框架接触,并且刮水片的另一个表面与玻璃表面接触,使得刮水片通过摆动来移除异物。