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    • 1. 发明公开
    • 물리적 분리방법에 의한 PVB 재활용 장치
    • PVB循环装置
    • KR1020160099305A
    • 2016-08-22
    • KR1020150021608
    • 2015-02-12
    • 고등기술연구원연구조합
    • 박재량이찬기박경수윤진호홍명환홍현선
    • B29B17/02
    • B09B3/00B29B17/02B29B2017/0224
    • 본발명은폐유리에서분리된 PVB에잔류하는컬릿과미립유리를완전히제거하는재활용장치에관한것으로, 폐PVB가침지된분리액을담을수 있는수조; 상기수조내에상기수조벽과소정간격이격되어설치되며, 측면과바닥에복수의미세홀이형성된회수망; 및상기수조내에분리액을교반하기위한교반장치를포함한다. 본발명은, 회수망이설치된수조에서폐PVB가침지된분리액을교반함으로써, 폐PVB에잔존하는컬릿과미립유리를완전하게분리하여 PVB를재활용할수 있는효과가있다. 또한, 본발명의 PVB 재활용장치를사용하면, 단일공정으로컬릿과미립유리가완전히분리된 PVB를회수할수 있으며, 고가의 PVB를재활용할수 있는뛰어난경제적효과를얻을수 있다.
    • 本发明涉及一种PVB回收设备,其能够完全除去残留在与废玻璃分离的PVB中的碎玻璃和颗粒玻璃。 PVB回收设备包括:含有废弃PVB浸渍的分离液的水箱; 收集网,其与水箱中的水箱壁间隔一定距离,并且在其侧表面和底表面上形成有多个细孔; 以及搅拌装置,其搅拌水箱中的分离液。 根据本发明,可以在安装有收集网的水箱中搅拌其中浸渍有废弃PVB的分离液,通过完全分离剩余在废PVB中的碎玻璃和颗粒玻璃来回收PVB。 此外,当使用根据本发明的PVB再循环设备时,可以通过信号处理收集碎玻璃和颗粒玻璃完全分离的PVB,并且可以回收高价PVB。
    • 3. 发明授权
    • 냉음극 형광램프 재활용 방법
    • 冷阴极灯回收方法
    • KR101371290B1
    • 2014-03-07
    • KR1020120121302
    • 2012-10-30
    • 고등기술연구원연구조합
    • 조성수이성규홍현선박재량
    • H01J9/50
    • Y02W30/828
    • A method for recycling a cold cathode fluorescent lamp is disclosed. The method for recycling a cold cathode fluorescent lamp according to an embodiment of the present invention comprises a cutting process (S100) of cutting a cold cathode fluorescent lamp in a certain size; a phosphor detaching process (S200) of spraying compressed gas having a certain pressure to the cut cold cathode fluorescent lamp to detach and collect the phosphor; a crushing process (S300) of crushing the lamp from which the phosphor is detached in a certain particle size; and a heating process (S400) of removing a small quantity of the phosphor and mercury existing in the surface of a crushed glass. According to an embodiment of the present invention, all of the glass, the phosphor and the mercury in the cold cathode fluorescent lamp can be collected. Especially, the mercury can be directly collected in the form of metal rather than in the form of being embedded and thus, the present invention is able to contribute to the domestic recycling business of cold cathode fluorescent lamps. Furthermore, various resources included in the collected phosphor may be collected, thereby securing a resource recycling technology. [Reference numerals] (S100) Cutting process; (S200) Phosphor detaching process; (S220) Particle separating process; (S300) Crushing process; (S400) Heating process; (S420) Rapid cooling process; (S440) Mercury collecting process; (S500) Glass collecting process; (S600) Phosphor collecting process
    • 公开了冷阴极荧光灯再循环方法。 根据本发明实施例的冷阴极荧光灯的再循环方法包括切割具有一定尺寸的冷阴极荧光灯的切割工艺(S100) 将具有一定压力的压缩气体喷射到切割的冷阴极荧光灯上以分离和收集荧光体的荧光体分离工艺(S200); 破碎处理(S300),以一定的粒径粉碎荧光体从其中分离的灯; 以及除去存在于碎玻璃表面的少量荧光体和汞的加热工序(S400)。 根据本发明的实施例,可以收集冷阴极荧光灯中的所有玻璃,荧光体和汞。 特别地,汞可以以金属的形式直接收集而不是嵌入的形式,因此本发明能够有助于冷阴极荧光灯的家用回收业务。 此外,可以收集包含在收集的磷光体中的各种资源,从而确保资源回收技术。 (附图标记)(S100)切割处理; (S200)磷光体分离工艺; (S220)颗粒分离工艺; (S300)破碎过程; (S400)加热过程; (S420)快速冷却过程; (S440)汞收集过程; (S500)玻璃采集工艺; (S600)荧光粉收集过程
    • 7. 发明公开
    • 폐 LCD패널의 유리를 이용한 고주파용 자성재료의 제조 방법
    • 使用废水液晶显示面板使用的玻璃制造高频磁性材料的方法
    • KR1020130027073A
    • 2013-03-14
    • KR1020110090042
    • 2011-09-06
    • 고등기술연구원연구조합
    • 홍현선최강룡강이승
    • H01F1/33H01F1/01B09B3/00C03B19/10
    • PURPOSE: A manufacturing method of a magnetic material for a high frequency using the glass of an LCD panel is provided to manufacture a magnetic material for a high frequency by reusing high purity glass having a high value from a wasted LCD panel. CONSTITUTION: A polarized film is separated using a first thermal shock(S100). A cullet process is performed through a second grinding of a glass substrate separated from the polarized film(S200). The cullet processed glass substrate is pulverized into glass powder having a predetermined diameter using a planetary milling. The glass powder is mixed with a magnetic material of Ni-Cu-Zn in a dry method(S400). The Ni-Cu-Zn magnetic material mixed with the glass powder is formed into a green body(S500). The green body is sintered(S600). [Reference numerals] (S100) Polarized film separating process; (S200) Cullet process; (S300) Glass powder process; (S400) Mixing process; (S500) Green body forming process; (S600) Sintering process
    • 目的:提供使用LCD面板的玻璃的高频磁性材料的制造方法,通过重新利用来自浪费的LCD面板的具有高价值的高纯度玻璃来制造高频磁性材料。 构成:使用第一次热冲击分离极化膜(S100)。 通过对从偏光膜分离的玻璃基板的第二次研磨进行碎玻璃加工(S200)。 使用行星研磨将玻璃碎片玻璃基板粉碎成具有预定直径的玻璃粉末。 以干法将玻璃粉与Ni-Cu-Zn的磁性材料混合(S400)。 将与玻璃粉末混合的Ni-Cu-Zn磁性材料形成为生坯体(S500)。 生坯烧结(S600)。 (附图标记)(S100)极化膜分离处理; (S200)制罐工艺; (S300)玻璃粉末工艺; (S400)混合过程; (S500)绿体成型工艺; (S600)烧结工艺
    • 9. 发明公开
    • PCB기판의 유가금속 및 부품 회수장치와 이를 이용한 회수방법
    • 用于从印刷电路板恢复有价值金属和零件的装置及其方法
    • KR1020120059682A
    • 2012-06-11
    • KR1020100121063
    • 2010-12-01
    • 한밭대학교 산학협력단고등기술연구원연구조합
    • 박준식홍현선
    • C22B7/00C22B11/00
    • C22B7/00C22B11/025Y02P10/214
    • PURPOSE: An apparatus and a method for recovering valuable metal and parts from a printed circuit board are provided to reduce energy consumption by simultaneously rotating and heating a printed circuit board to separate electric parts and solder from the printed circuit board by a centrifugal force and heat. CONSTITUTION: An apparatus for recovering valuable metal and parts from a printed circuit board comprises a rotating unit(10), a heating unit(40), and a recovery unit(13). The rotating unit fixes a printed circuit board(1) and is rotated by the torque of an external power source. The heating unit heats the printed circuit board fixed by the rotating unit to a predetermined temperature. The recovery unit is formed in the rotating unit and stores electric parts and solder separated from the printed circuit board. The rotating unit comprises upper and lower parts composed of pneumatic cylinders that form a fixing part therebetween and are moved up and down to fix a printed circuit board.
    • 目的:提供一种用于从印刷电路板回收有价值的金属和零件的设备和方法,以通过同时旋转和加热印刷电路板来分离电气部件并通过离心力和热量从印刷电路板焊接来降低能量消耗 。 构成:用于从印刷电路板回收有价值的金属和零件的装置包括旋转单元(10),加热单元(40)和回收单元(13)。 旋转单元固定印刷电路板(1)并通过外部电源的扭矩旋转。 加热单元将由旋转单元固定的印刷电路板加热到预定温度。 回收单元形成在旋转单元中,并且存储与印刷电路板分离的电气部件和焊料。 旋转单元包括由气缸组成的上部和下部,其在其间形成固定部分并且上下移动以固定印刷电路板。
    • 10. 发明授权
    • 연료전지용 분리판
    • 用于燃料电池的流动通道板
    • KR101092486B1
    • 2011-12-13
    • KR1020090066487
    • 2009-07-21
    • 고등기술연구원연구조합
    • 김종민이성규이진욱홍현선나일채
    • H01M8/02
    • 본 발명은 연료전지용 분리판에 관한 것으로서, 유로 형상을 개선하여 연료전지의 성능과 신뢰성을 향상시키는 연료전지용 분리판을 제공하는 것을 목적으로 한다. 상기한 목적을 달성하기 위한 본 발명에 따른 연료전지용 분리판은 전기전도도를 가지는 재질로 이루어지며, 연료전지의 형태유지와 전자의 이동 및 기체를 공급하기 위해 설치되어 하부에는 랜드가 마련되고, 상부에는 전해질막에 의해 밀폐되는 연료전지용 분리판으로, 상기 분리판은 내부에 기체의 이동을 위한 통로를 제공하는 기체 유로부가 형성되고, 상기 기체 유로부에는 종횡으로 굴곡이 반복되는 지그재그 형태의 패턴을 갖는 채널이 다수개로 형성되되, 상기 채널은 다수개를 한 조로 하여 반복적으로 연속하게 배치된다.
      연료전지, 분리판, 연료극, 기체유로, 패턴