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    • 132. 发明公开
    • 뷰어가 포함된 컨텐츠파일을 기록한 기록매체 및 그 컨텐츠파일의 재생방법
    • 记录媒体记录的内容文件及其再现方法
    • KR1020110092743A
    • 2011-08-18
    • KR1020100012346
    • 2010-02-10
    • 김정식
    • 김정식
    • G11B20/12G11B20/10
    • G11B20/10G06F3/14
    • PURPOSE: A record medium for recording a content file including a viewer and reproduction method of the content file thereof are provided to download a viewer with a content file by including a viewer that is able to execute the content in the content file. CONSTITUTION: A content file(100) includes content(110), a header(130), and a viewer(120). The content includes information and an image. The content is executed in a user terminal as the viewer is an operating program. The header records meta information required for performance, file size information, and offset information about the content and the viewer. The viewer executes the content in the user terminal and displays the video or the image.
    • 目的:提供用于记录包括观看者的内容文件和其内容文件的再现方法的记录介质,以通过包括能够在内容文件中执行内容的观看者来下载具有内容文件的观看者。 构成:内容文件(100)包括内容(110),标题(130)和观看者(120)。 内容包括信息和图像。 当观众是操作程序时,在用户终端中执行内容。 标题记录性能所需的元信息,文件大小信息和关于内容和查看器的偏移量信息。 观众执行用户终端中的内容并显示视频或图像。
    • 133. 发明公开
    • 공작기계의 절삭유 열교환기
    • 切割油加热机工具
    • KR1020110041078A
    • 2011-04-21
    • KR1020090098098
    • 2009-10-15
    • 김정식
    • 김정식김희중엄현민김동현
    • F28D7/00B23Q11/10
    • B23Q11/10F28D7/16F28D2021/0019
    • PURPOSE: A cutting oil heat exchanger for a machine tool is provided to reduce maintenance costs by detachably arranging a cooling cassette on a heat exchanger body. CONSTITUTION: A cutting oil heat exchanger for a machine tool comprises a main body(100), multiple through flow paths(200), a cooling cassette, an upper body cover(400), and a cooling liquid discharge pipe(700). The main body has a cylindrical inner space, a cutting oil inlet, and a cutting oil outlet. The through flow paths traverse the top and bottom ends of the main body. The cooling cassette is detachably inserted into the inner space of the main body and forms a cutting oil circulation path. A connection line is formed in the inner edge of the upper body cover and forms a cooling liquid circulation path by connecting the through flow paths.
    • 目的:提供一种用于机床的切削油热交换器,以通过将冷却盒可拆卸地布置在热交换器主体上来降低维护成本。 构成:用于机床的切削油热交换器包括主体(100),多个通路(200),冷却盒,上主体盖(400)和冷却液排出管(700)。 主体具有圆柱形内部空间,切削油入口和切削油出口。 贯穿流路穿过主体的顶端和底端。 冷却盒可拆卸地插入主体的内部空间并形成切割油循环路径。 在上壳体的内缘形成有连接线,通过连通通路形成冷却液循环路。
    • 134. 发明公开
    • 원료 공급 장치
    • 用于提供原料的装置
    • KR1020100132368A
    • 2010-12-17
    • KR1020090051159
    • 2009-06-09
    • 김정식
    • 김정식
    • C21B7/18
    • B65G47/18B65G11/16F27D2003/0075
    • PURPOSE: An apparatus for supplying a raw material is provided to prevent the inner side of a hopper from becoming worn or damaged due to a solid material and thus to prevent a foreign material from becoming mixed with the solid material. CONSTITUTION: An apparatus(100) for supplying a raw material consists of a hopper unit(101) and protruded plate units. The hopper unit withdraws a solid material, which comes from the upper part, to the lower part. The protruded plate units are protruded from the inner side of the hopper unit. The protruded ends of the protruded plate units are bent toward the upper part. The protruded plate units are located to be vertically spaced. The protruded plate unit consists of a first plate(121), a second plate(123) and a connecting unit(125). A part of the solid material, which comes from the upper part of the hopper unit, is held on the protruded plate unit and blocks the collision of the hopper unit and the solid material.
    • 目的:提供一种用于供应原料的装置,以防止料斗的内侧由于固体材料而磨损或损坏,从而防止异物与固体材料混合。 构成:用于供给原料的装置(100)由料斗单元(101)和突出板单元构成。 料斗单元从上部抽出固体材料到下部。 突出板单元从料斗单元的内侧突出。 突出板单元的突出端朝向上部弯曲。 突出的板单元被定位成垂直间隔开。 突出板单元由第一板(121),第二板(123)和连接单元(125)组成。 来自料斗单元上部的固体材料的一部分被保持在突出的板单元上,并阻止料斗单元与固体材料的碰撞。
    • 137. 实用新型
    • 지갑용 카드홀더
    • 钱包的持卡人
    • KR200450316Y1
    • 2010-09-20
    • KR2020100003974
    • 2010-04-15
    • 김정식
    • 김정식
    • A45C1/06A45C11/18A45C15/02
    • A45C1/06A45C11/182A45C15/02A45C2200/05
    • 본 고안에 따른 지갑용 카드홀더는 전면 및 후면 외측에 위치하여 표지기능을 하는 커버와, 상기 커버의 일면을 개방 형성한 개방 면을 구비하여 상기 개방 면을 통해 카드가 출입할 수 있도록 하는 카드 장착부, 상기 개방 면에서 홈이 파진 형상으로 함입 구성된 리세스부 및 상기 커버의 내측에 위치하여 필요사항을 기입할 수 있도록 하는 속지, 상기 커버의 중앙 부위에서 상기 속지를 연결하는 연결부를 포함하는 것을 특징으로 한다.
      본 고안에 따른 지갑용 카드홀더에 의하면, 컴팩트한 크기로 지갑에 구비되어 휴대가 간편하며, 신용카드의 지출내역과 누적금액을 언제 어디서나 쉽게 기록하고 확인할 수 있어 무절제한 카드의 사용을 미연에 방지할 수 있다는 장점을 가진다.
    • 根据本发明的用于钱包的卡夹包括具有盖功能的盖和具有形成在盖的一侧上的开口的盖, ,其特征在于它包括将所述嵌镶连接到配置成嵌入在图像中的开口侧有槽和位于所述盖的内侧,以填写所需的信息的凹部的连接部,从盖的中心部分 它应。
    • 138. 发明授权
    • 인바 합금 및 그 제조방법
    • 인바합금및그제조방법
    • KR100931739B1
    • 2009-12-14
    • KR1020070105457
    • 2007-10-19
    • 성낙훈김정식
    • 성낙훈김정식
    • C25D3/56
    • AN invar alloy and a manufacturing method thereof are provided to reduce the loss of materials and a manufacturing cost. An invar alloy and a manufacturing method thereof comprises: a step preparing the electrolyte including calcium chloride of 38g, ferous chloride of 100g, nickel sulfate of 220g, nickel chloride of 120g, hydrochloric acid of 25g, sodium saccharin of 2g, and sodium lauryl sulfate of 0.2g based on the water 1L; and a step electronically plating in the state where temperature is 45-60°C pH of electrolyte is 0.5-1.5, the electric current density is 50-100mA/cm^2. The sodium lauryl sulfate is added for a surfactant function. The calcium chloride is added for the conductivity improvement of electrolyte.
    • 提供一种恩戈尔合金及其制造方法,以减少材料损失和制造成本。 恩戈尔合金及其制造方法包括:制备电解质的步骤,包括38g氯化钙,100g氯化亚铁,220g硫酸镍,120g氯化镍,25g盐酸,2g糖精钠和2g月桂基硫酸钠 基于水1L为0.2g; 在温度为45-60℃的状态下进行电镀步骤,电解液的pH值为0.5-1.5,电流密度为50-100mA /平方公分。 加入月桂基硫酸钠用于表面活性剂功能。 加入氯化钙以提高电解质的导电性。
    • 139. 发明授权
    • 밀착부와 공간부로 구성되고 Jet printing되는 극미세인쇄방법
    • BARRIER,RIB和喷墨打印作为NARROW PATTERN
    • KR100928616B1
    • 2009-11-30
    • KR1020080122464
    • 2008-12-04
    • 황춘섭김정식
    • 황춘섭김정식
    • B41J2/01H05K3/12
    • PURPOSE: An ultra-fine printing method using the jet printing is provided to print the conductive material stored in a space part on a glass substrate after sticking an adhesive part to a substrate. CONSTITUTION: An electro forming mold is formed by a designed pattern. The electro forming mold is mounted in a press and the silicon rubber is put into. A conductive material(10) is filled in the front side of the molded silicon rubber(25-1) by using a mask. The silicon rubber in which the conductive material is filled is compressed in a glass substrate(15). The filled conductive material is moved to the glass substrate.
    • 目的:提供使用喷墨印刷的超细印刷方法,在将粘合剂部分粘附到基材上之后,将存储在玻璃基板上的空间部分中的导电材料印刷。 构成:通过设计图案形成电铸成型模具。 电铸成型模具安装在压力机中,硅橡胶被放入。 通过使用掩模将导电材料(10)填充在模制硅橡胶(25-1)的前侧。 其中填充有导电材料的硅橡胶在玻璃基板(15)中被压缩。 将填充的导电材料移动到玻璃基板。
    • 140. 发明公开
    • 전극 제조방법
    • 电极生产方法
    • KR1020090099435A
    • 2009-09-22
    • KR1020080029527
    • 2008-03-31
    • 황춘섭김정식
    • 황춘섭김정식
    • H01L23/48H01L21/60H01L21/027B82Y30/00
    • G03F7/0002H05K3/0002
    • A method for manufacturing an electrode is provided to obtain an anti-bacterial and disinfection effect by forming a silver nano particle layer on a plastic film which is a substrate. A pressurized mold(100) is made by plating a metal material with a pressurized pattern(102) with a protrusive shape corresponding to the electrode pattern with the nickel. A plastic film(120) passes between a pressurizing roller(108) combined in the pressurized mold and a rotating roller(109) arranged to correspond to the pressurized roller. A concave electrode pattern(122) is formed on the plastic film by the pressurized pattern of the pressurized mold. A conductive material(125) to form an electrode is filled in an electrode pattern of the plastic film. The conductive material filled in the plastic film is polished to match with the plane of the plastic film. The plastic film is made of one of PET, PI or PC. The process of forming the electrode pattern is performed between - 50 and + 10 degrees centigrade.
    • 提供电极的制造方法,通过在作为基板的塑料膜上形成银纳米粒子层来获得抗菌消毒效果。 加压模具(100)通过用具有与镍的电极图案对应的凸起形状的加压图案(102)镀金属材料制成。 塑料薄膜(120)通过加压模具中组合的加压辊(108)和布置成对应于加压辊的旋转辊(109)之间通过。 通过加压模具的加压图案在塑料膜上形成凹电极图案(122)。 用于形成电极的导电材料(125)填充在塑料膜的电极图案中。 填充在塑料膜中的导电材料被抛光以与塑料膜的平面匹配。 塑料薄膜由PET,PI或PC制成。 形成电极图案的过程在-50至+ 10摄氏度之间进行。