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    • 72. 发明授权
    • 서랍함 자동 닫힘 및 역 배출 방지용 슬라이드레일 구조
    • 自动关闭和滑动防滑装置
    • KR101391997B1
    • 2014-07-04
    • KR1020130014116
    • 2013-02-07
    • (재)대구기계부품연구원주식회사 한독하이테크
    • 이성로
    • A47B88/04A47B88/00
    • The present invention relates to a slide structure for automatically shutting a drawer and preventing the drawer from being reversely drawn. According to the present invention, the slide structure for automatically shutting a drawer and preventing the drawer from being reversely drawn is capable of surely making a transition to an automatic slide on a desired position by having a predetermined angle to realize a flexible and active slide when the drawer is automatically shut, and is capable of having the functions of the automatic slide and a stopper through paths respectively bent down at different angles in two areas into which the position to have the predetermined angle is partitioned, wherein the stopper prevents the undesirably reverse movement of the drawer. The slide structure according to the present invention comprises: multiple guide rails (10) arranged to be fixed in a housing space, and having guide wheels (11) in the front ends thereof; and multiple moving rails (20) engaged with the respective guide rails, having moving wheels (21) in the rear ends thereof, and guided to slide. Each of the guide rails (10) has an upper cover surface (12) and a lower cover surface (13) extended in an upper and a lower space laterally and respectively. The rear end areas of the upper cover surface and the lower cover surface have bent guiding part (A), wherein the upper cover surface (12) forming the bent guiding parts is cut to be partitioned into a first and a second bent part (14, 15) as much as a corresponding space so that the cut surface of the upper cover surface (12) is rounded downwards, and the lower cover surface (13) forming the bent guiding part is partitioned into a first and a second bent part (14, 15) on a collinear vertical line so that the shape of the lower cover surface (13) is rounded downwards to correspond to the upper cover surface. The bent guiding parts (A) further have grooves (16) on positions on which the second bent parts (15) are formed.
    • 本发明涉及一种用于自动关闭抽屉并防止抽屉反向拉出的滑动结构。 根据本发明,用于自动关闭抽屉并防止抽屉被反向拉伸的滑动结构能够通过具有预定角度而可靠地转换到期望位置上的自动滑动件,以实现柔性和主动滑动, 抽屉自动关闭,并且能够具有自动滑动的功能和通过分别在具有预定角度的位置分隔的两个区域中以不同的角度向下弯曲的止动件,其中止动件防止不期望的反向 抽屉的运动。 根据本发明的滑动结构包括:多个导轨(10),布置成固定在容纳空间中,并且在其前端具有导轮(11); 和与相应导轨接合的多个移动轨道(20),其后端具有移动轮(21)并被引导以滑动。 每个导轨(10)具有分别在横向上在上部和下部空间中延伸的上盖表面(12)和下部盖表面(13)。 上盖表面和下盖表面的后端区域具有弯曲的引导部分(A),其中形成弯曲引导部分的上盖表面(12)被切割成第一和第二弯曲部分(14) ,15)与相应的空间一样多,使得上盖表面(12)的切割表面向下倒圆,并且形成弯曲引导部分的下盖表面(13)被分隔成第一和第二弯曲部分( 14,15)在共线垂直线上,使得下盖表面(13)的形状向下倒圆以对应于上盖表面。 弯曲的引导部分(A)在其上形成有第二弯曲部分(15)的位置处还具有凹槽(16)。
    • 73. 发明公开
    • 냉각 팁과 진동 감쇠부를 갖는 마모 시험장치 및 그 시험 방법.
    • 具有冷却端和振动隔离部件的研磨试验机及其相关方法。
    • KR1020140077559A
    • 2014-06-24
    • KR1020120146501
    • 2012-12-14
    • (재)대구기계부품연구원
    • 윤국태박춘달김동배송재선
    • G01N3/56G01N3/60G01M99/00
    • G01N3/56G01M99/007G01N3/60G01N2203/0226G01N2203/0228
    • The present invention has a structure damping loads by vibration in an abrasion testing device generating vibration and possibly measuring maintaining loads, which can damp vibration generated when measuring loads applied on a specimen during abrasion measurement and uses a ball when loads are applied to have one point of contact, thereby reducing error of eccentricity when power is applied. In addition, cooling function is applied in a tip generating friction and accurate temperature heating test of the specimen is enabled through a structure that a testing container which the specimen is loaded is automatically exchanged by temperature. Therefore, if testing under a desired temperature of a tester, test can be performed under an accurate temperature desired by the user.
    • 本发明具有通过在产生振动并可能测量维持负载的磨损测试装置中通过振动来减振负载的结构,其可以抑制在磨损测量期间测量施加在样本上的负载时产生的振动,并且当施加负载以使用一个点时使用球 的接触,从而在施加电力时减少偏心误差。 此外,在尖端产生摩擦中施加冷却功能,通过将被加载的试样的试验容器自动交换温度的结构,能够进行试样的精确的温度加热试验。 因此,如果在测试仪的期望温度下进行测试,则可以在用户期望的准确温度下进行测试。
    • 74. 发明授权
    • 모터 풀리 교체식 직기의 회전수 제어장치
    • 电动机替代方式回转控制装置数
    • KR101406582B1
    • 2014-06-11
    • KR1020130003753
    • 2013-01-14
    • 주식회사 한백아이엔티(재)대구기계부품연구원
    • 허기형최현진박철우
    • D03D51/12D03D51/00
    • Provided in the present invention a loom rotating number controlling apparatus which can rapidly and precisely controls the rotating number of a loom by connecting an individual inverter to an existing power supplying line without replacing a motor pulley, is formed by installing a circuit protector for a break current (CB2) and a magnet switch for inching (MSI) on lines (O, P, Q) of a main inverter (10) in order and grounding to spots (R2, S2, T2) passing a magnet switch for driving, provides a same function to a high loom having an individual inverter installed by simply reforming a motor pulley replacing type loop installed before, and operates a main motor by receiving only a forward rotating signal.
    • 在本发明中,通过安装用于断路的电路保护器来形成能够通过将各个逆变器与现有的供电线连接而不更换电动机皮带轮而能够快速且精确地控制织机的转数的织机转动数控制装置 电流(CB2)和主逆变器(10)的线路(O,P,Q)上的微动开关(MSI),并且通过通过用于驱动的​​磁体开关的点(R2,S2,T2) 对具有通过简单地改造安装在之前安装的电动皮带轮更换型环路的单个逆变器来安装单个逆变器的高织机具有相同的功能,并且仅通过仅接收正向旋转信号来操作主电动机。
    • 76. 发明授权
    • 밸브용 리미트스위치
    • 阀门限位开关
    • KR101324802B1
    • 2013-11-01
    • KR1020120023436
    • 2012-03-07
    • 주식회사 대정밸브(재)대구기계부품연구원
    • 곽경민이중형박석균조지승김진대김경호
    • F16K37/00H01H19/18
    • 본 발명은 밸브용 리미트스위치에 관한 것으로서, 밸브의 디스크와 연결된 스템을 작동시키기 위한 액추에이터의 상부에 설치되는 케이스 내부에 관통되게 설치하는 작동축과, 상기 케이스의 상방으로 돌출되는 작동축에 설치하여 밸브의 개폐상태를 시각적으로 확인할 수 있게 하는 인디게이터와, 상기 케이스 내부에 위치하는 작동축과 케이스 내부에 설치하여 밸브의 개폐를 전기적인 신호로 콘트롤러로 인가하는 작동부로 구성되는 밸브용 리미트스위치에 있어서;
      상기 작동부는, 작동축의 중간위치에 케이스의 내부 일측에 설치되는 스위치의 열림단자 및 닫힘단자와 접촉하여 밸브의 개폐상태를 관제실의 콘트롤러로 전기적인 신호를 인가하도록 열림로드와 닫힘로드를 설치하고, 상기 열림로드와 닫힘로드는, 작동축의 축중심에 대한 직각 방향으로 열림관통되게 형성하는 열림홀 및 닫힘홀과 나사 결합하고, 상기 열림 및 닫힘로드의 선단에는 열림 및 닫힘단자와 접촉할 수 있도록 접촉팁을 구비하고, 상기 열림 및 닫힘로드의 후단에는 열림 및 닫힘로드를 열림 및 닫힘단자 방향으로 근접 및 이탈시킬 수 있도록 조절헤드를 형성하여, 밸브의 개폐상태를 정확하게 인디게이터 및 콘트롤러로 인가할 수 있는 것은 물론 리미트스위치의 구조를 간단하게 할 수 있는 특징을 가진다.
    • 77. 发明公开
    • 레이저비전 센서 및 그 보정방법
    • 激光传感器及其校准方法
    • KR1020130075712A
    • 2013-07-05
    • KR1020120155151
    • 2012-12-27
    • (재)대구기계부품연구원
    • 김진대조지승김경호박기진김병수
    • B25J19/04G01B11/03
    • PURPOSE: A laser vision sensor and a calibration method thereof are provided to easily calibrate a two-dimensional image coordinate into a three-dimensional coordinate value by calculating the three-dimensional coordinate value from an arbitrary two-dimensional image coordinate using a transform function obtained from the two-dimensional image coordinate. CONSTITUTION: A laser vision sensor is composed of a laser beam projecting unit (10), a camera unit (20), and a coordinate calculation unit. The laser beam projecting unit projects a laser beam to an object in a vertical direction. The camera unit is inclined from the object to photograph the laser trace formed on the object. The coordinate calculation unit calculates the three-dimensional coordinate value of the object from the two-dimensional image coordinate of the laser trace using a pre-stored transform function.
    • 目的:提供一种激光视觉传感器及其校准方法,通过使用获得的变换函数从任意二维图像坐标计算三维坐标值,将二维图像坐标容易地校正为三维坐标值 从二维图像坐标。 构成:激光视觉传感器由激光束投影单元(10),照相机单元(20)和坐标计算单元组成。 激光束投影单元在垂直方向上将激光束投射到物体。 相机单元从物体倾斜以拍摄形成在物体上的激光迹线。 坐标计算单元使用预先存储的变换函数根据激光轨迹的二维图像坐标来计算物体的三维坐标值。
    • 79. 发明公开
    • 딥드로잉을 이용한 가정용 고압용기 제조방법
    • 高压船用于家庭使用深度绘图和制造方法
    • KR1020130043803A
    • 2013-05-02
    • KR1020110107917
    • 2011-10-21
    • (재)대구기계부품연구원
    • 박상하배정섭
    • F17C1/06
    • PURPOSE: A high pressure vessel for home use using deep drawing, and a manufacturing method thereof are provided to increase the strength of a liner body by winding a fiber filament wire on the liner body. CONSTITUTION: A high pressure vessel for home use using deep drawing comprises an aluminum liner body(10), a fiber filament wire(20), and an epoxy resin layer(30). The aluminum liner body comprises a bottom part, a cylindrical part, and a top part. A circular plate is deep-drawn by a punch and a die to form the bottom part. The bottom part is a cup shape. The cylinder part is formed above the bottom part. The upper side of the cylindrical part is spun to form the cup-shaped top part. The top part has a screw part to which a regulator is coupled. The fiber filament wire is formed of a carbon fiber or a glass fiber, and is wound on the outer surface of the aluminum liner body. The epoxy resin layer is thermally cured on the outer surface of the fiber filament wire. [Reference numerals] (AA) Carbon/Epoxy Layer, Main structure under internal pressure; (BB) Al Liner, Providing airtightness/shape frame; (CC) Boss, Providing a coupling system for external bogies; (DD) Securing shock resistance
    • 目的:提供一种使用深冲压的家用高压容器及其制造方法,其通过将纤维丝线缠绕在衬垫体上来增加衬垫体的强度。 构成:使用深冲的家用高压容器包括铝衬垫体(10),纤维细丝线(20)和环氧树脂层(30)。 铝衬套本体包括底部,圆柱形部分和顶部。 圆板通过冲头和模具深冲以形成底部。 底部是杯形。 气缸部分形成在底部的上方。 将圆筒形部分的上侧旋转以形成杯形顶部。 顶部有一个螺丝部分,一个调节器与之连接。 纤维丝线由碳纤维或玻璃纤维形成,并且缠绕在铝衬里体的外表面上。 环氧树脂层在纤维丝线的外表面上热固化。 (参考号)(AA)碳/环氧层,内压主要结构; (BB)铝衬里,提供气密/形状框架; (CC)老板,为外部转向架提供耦合系统; (DD)确保抗冲击性
    • 80. 发明公开
    • 내장형 안테나 제조방법
    • 内部天线及其制造方法
    • KR1020130038508A
    • 2013-04-18
    • KR1020110102902
    • 2011-10-10
    • (재)대구기계부품연구원
    • 박상하이호영김경호이상민
    • H01Q1/24
    • PURPOSE: An internal antenna and a manufacturing method thereof are provided to form an antenna pattern and an antenna carrier by using a double injection molding process and simplifying a manufacturing process without a separate antenna pattern bonding process. CONSTITUTION: An antenna pattern(200) is connected to a main printed circuit board of an electronic device. The antenna pattern is inserted into an antenna carrier(100). The antenna pattern is manufactured by an injection molding method using a conductive resin composite. The antenna pattern and the antenna carrier integrally are manufactured by a double injection molding process. The temperature of the conductive resin composite is a 240 to 280 deg C in the double injection molding process.
    • 目的:提供内部天线及其制造方法,以通过双重注射成型工艺形成天线图案和天线载体,并且在没有单独的天线图案接合工艺的情况下简化制造工艺。 构成:天线图案(200)连接到电子设备的主印刷电路板。 天线图案被插入天线载体(100)中。 通过使用导电性树脂复合体的注射成型法制造天线图案。 通过双重注射成型工艺制造天线图案和天线载体。 在双重注射成型工艺中,导电树脂复合材料的温度为240〜280℃。