반도체 제조설비의 배기라인 구조
    21.
    发明授权
    반도체 제조설비의 배기라인 구조 有权
    半导体制造设备的排气管结构

    公开(公告)号:KR101802167B1

    公开(公告)日:2017-12-04

    申请号:KR1020160077271

    申请日:2016-06-21

    CPC classification number: H01L21/02 H01L21/67005 H01L2021/60187

    Abstract: 본발명은반도체제조설비의배기라인구조에관한것으로, 보다상세하게는배기라인외부를에어로겔단열층으로감싸배기라인으로배출되는배출가스(분진등)의온도를일정하게유지시키고, 배기라인내부를산화촉매로코팅하여배기라인에배출가스등이침적되는현상을방지하여배기라인의유속감속과폐쇄를미연에방지할수 있는반도체제조설비의배기라인구조에관한것이다.

    Abstract translation: 废气管线的排气管线结构技术领域本发明涉及半导体制造设备的废气管线结构,更具体地涉及废气管线 涉及半导体制造设备,能够与一种催化剂,以防止排出的气体被沉积在排气管线,以防止排放管线中的流速减速和关闭预先被涂覆的排气线结构。

    구름형 고체 윤활입자를 구비한 딤플형 저마찰 부재
    22.
    发明授权
    구름형 고체 윤활입자를 구비한 딤플형 저마찰 부재 有权
    带类型固体润滑颗粒的二类低摩擦材料

    公开(公告)号:KR101684425B1

    公开(公告)日:2016-12-08

    申请号:KR1020150008076

    申请日:2015-01-16

    Abstract: 구름형고체윤활입자를구비한딤플형저마찰부재에관한것으로, 딤플형저마찰부재를베이스로하여딤플에최적화된구름기능을수행할수 있는고체윤활입자를복합적으로적용하여저마찰효과를향상시킨것이다. 이러한본 발명은, 피대상물의표면접촉으로일어나는마찰을줄일수 있도록표면에다수의딤플이형성된기판과; 상기딤플에수용된상태로제자리에서구름가능하도록하여베어링특성을갖도록한 구형의고체윤활입자가포함되는것을특징으로한다.

    Abstract translation: 本发明涉及具有滚动​​型固体润滑颗粒的凹坑式低摩擦材料。 本发明使用凹坑式低摩擦材料作为基底,将对滚动功能进行优化的固体润滑颗粒复杂地应用于凹坑,以进一步降低摩擦。 本发明包括:具有在表面上形成的凹坑以减少由物体的表面接触引起的摩擦的基板; 并且球形固体润滑颗粒在被存储在凹坑中时滚动就位以具有轴承特性。

    자동차 엔진용 저마찰 소재 및 레이저 패터닝을 이용한 그의 제조방법
    26.
    发明公开
    자동차 엔진용 저마찰 소재 및 레이저 패터닝을 이용한 그의 제조방법 有权
    汽车发动机的低摩擦材料及其使用激光雕刻的制造方法

    公开(公告)号:KR1020140088299A

    公开(公告)日:2014-07-10

    申请号:KR1020120158741

    申请日:2012-12-31

    Abstract: The present invention relates to a low-friction material for an automotive engine and a method for manufacturing the same using laser patterning, which remarkably reduces surface friction and detrition through the combined action of multiple dimples arranged in optimal sizes and optimal intervals, which are formed by the laser patterning, and a graphene layer applied thereon, whereby achieving fuel saving and life extension of an engine of an automobile. The method for manufacturing the low-friction material for an automotive engine comprises: a laser patterning step of forming multiple dimples being spaced apart from each other on a surface of a raw material to reduce surface friction caused by surface contacts by irradiating a laser; a polishing step of polishing the perimeter of the dimples formed in the laser pattering step; and a coating step of coating the surface of the raw material with graphene after the polishing step to form a graphene layer.

    Abstract translation: 本发明涉及一种用于汽车发动机的低摩擦材料及其制造方法,其使用激光图案化方法,其通过形成为以最佳尺寸和最佳间隔布置的多个凹坑的组合作用显着地减小了表面摩擦和磨损 通过激光图案化,并且涂覆有石墨烯层,从而实现汽车发动机的燃料节省和寿命延长。 制造用于汽车发动机的低摩擦材料的方法包括:激光图案化步骤,在原材料的表面上形成彼此间隔开的多个凹坑,以通过照射激光来减少由表面接触引起的表面摩擦; 抛光步骤,用于抛光在激光图案步骤中形成的凹坑的周边; 以及在抛光步骤之后用石墨烯涂覆原料表面以形成石墨烯层的涂覆步骤。

    가시광 감응 화합물, 그를 포함하는 광촉매 및 그의 제조방법
    30.
    发明公开
    가시광 감응 화합물, 그를 포함하는 광촉매 및 그의 제조방법 无效
    可见光敏化合物,包括该化合物的光催化剂及其制造方法

    公开(公告)号:KR1020140098601A

    公开(公告)日:2014-08-08

    申请号:KR1020130011462

    申请日:2013-01-31

    Abstract: The present invention relates to a visible light sensitive photocatalyst and a manufacturing method thereof. The visible light sensitive photocatalyst comprises an erbium (Er^3+) doped bismuth vanadate (BiVO_4) compound manufactured by a microwave hydrothermal synthesis. The photocatalyst according to the present invention has high absorption efficiency of visible light because it has a band gap energy capable of absorbing visible light and exhibits high transfer efficiency of electric charge because the effective mass of electric charge is small. Additionally, the photocatalyst according to the present invention can be used as a water splitting photocatalyst with high efficiency because it can have high over-voltage against the oxidation of water by having energy levels of a conduction band and a valence band suitable to decompose water.

    Abstract translation: 本发明涉及可见光敏感光催化剂及其制造方法。 可见光敏光催化剂包括掺杂铒(Er 3+)掺杂的钒酸铋(BiVO 4)化合物,其通过微波水热合成制得。 根据本发明的光催化剂由于具有能够吸收可见光的带隙能量并且由于电荷的有效质量小而具有高的电荷转移效率,所以可见光的吸收效率高。 此外,根据本发明的光催化剂可以高效率地用作水分解光催化剂,因为通过具有适于分解水的导带和价带的能级,可以对水的氧化具有高的过电压。

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