MULTI-LAYER COMPOSITE
    54.
    发明公开
    MULTI-LAYER COMPOSITE 审中-公开
    多层复合材料

    公开(公告)号:EP2658661A1

    公开(公告)日:2013-11-06

    申请号:EP11791705.4

    申请日:2011-11-17

    Inventor: RICHTER, Gunter

    Abstract: A process for the production of a multi-layer composite comprising applying a coating layer from a pigmented coating composition A onto the back face of a transparent plastic film and then applying an NIR-opaque coating layer from a pigmented coating composition B, wherein the pigment content of coating composition A consists 50 to 100 wt.% of black pigment with low NIR absorption and 0 to 50 wt.% of further pigment, which is selected in such a way that coating layer A' exhibits low NIR absorption and that the multi-layer composite exhibits a brightness L* of at most 10 units, wherein the pigment content of coating composition B is either a pigment content PC1 consisting 90 to 100 wt.% of aluminum flake pigment and 0 to 10 wt.% of further pigment, which is selected in such a way that NIR-opaque coating layer B' exhibits low NIR absorption, or a pigment content PC2 comprising

    Abstract translation: 一种生产多层复合材料的方法,该方法包括将来自着色涂料组合物A的涂层施加到透明塑料膜的背面上,然后从着色涂料组合物B上施加不透光NIR涂层,其中颜料 涂料组合物A的含量由50至100重量%的具有低NIR吸收率的黑色颜料和0至50重量%的其他颜料组成,其以这样的方式选择,使得涂层A'表现出低NIR吸收,并且多 其中涂层组合物B的颜料含量为由铝薄片颜料90至100重量%和其它颜料0至10重量%组成的颜料含量PC1, 其选择为使得NIR不透明涂层B'表现出低NIR吸收,或者包含<90wt。%铝片状颜料的颜料含量PC2,并且以这样的方式构成,即NIR不透明涂层B' 展品 低NIR吸收,并且其中涂层A'和B'被固化。

    씽크대용 패널 도장방법
    58.
    发明授权
    씽크대용 패널 도장방법 失效
    面板涂层方法

    公开(公告)号:KR100931282B1

    公开(公告)日:2009-12-11

    申请号:KR1020080107092

    申请日:2008-10-30

    Inventor: 연재화

    CPC classification number: B05D7/574 B05D1/38 B05D2201/04 B05D2503/00 B41M1/12

    Abstract: PURPOSE: A method for coating a panel for a sink is provided to offer a good look for a consumer by exposing a shape or a color expressed on each applying layer without distortion by using transparent pigment. CONSTITUTION: A method for coating a panel for a sink comprises the following steps of: cutting the panel; polishing the surface of the panel and an edge to combine a hinge on a side of the panel; transferring the panel to a base layer forming chamber by laminating the panels on a holder; arranging a transfer sheet after applying an adhesive on the panel surface; and drying the base layer by laminating transferring sheets and the panel.

    Abstract translation: 目的:提供一种用于涂覆水槽面板的方法,通过使用透明颜料,在每个涂布层上曝光形状或颜色而不变形,从而为消费者提供良好的外观。 构成:用于涂覆水槽面板的方法包括以下步骤:切割面板; 抛光面板的表面和边缘以组合面板侧面的铰链; 通过将所述面板层压在保持器上,将所述面板转移到基底层形成室; 在所述面板表面上施加粘合剂之后布置转印片; 并通过层压转印片和面板干燥基层。

    소수성 또는 초소수성 처리를 위하여 상압 플라즈마를이용한 표면코팅방법
    59.
    发明公开
    소수성 또는 초소수성 처리를 위하여 상압 플라즈마를이용한 표면코팅방법 有权
    大气压力等离子体和超级离子处理表面涂层方法

    公开(公告)号:KR1020070006991A

    公开(公告)日:2007-01-12

    申请号:KR1020060063916

    申请日:2006-07-07

    Applicant: 강방권

    Inventor: 강방권

    Abstract: A surface coating method for hydrophobic and super hydrophobic treatment by using atmospheric pressure plasma is provided to reform the surface of an object by controlling the treatment speed and treatment times and to regulate the deposition speed of poly-fluorocarbon by selecting one of scanning, roll-to-roll, and reel-to-reel transportation systems according to the kind of the object. The surface coating method for hydrophobic and super hydrophobic treatment by using atmospheric pressure plasma comprises the steps of: generating first atmospheric pressure glow plasma by supplying the reactive gas including hydrogen gas, fluorocarbon gas, and inert gas to a discharge space(406) formed between first and second electrodes(402,403) connected to an RF(Radio Frequency) power source(400) of an atmospheric pressure plasma generator and making an object(420) approach the first electrode at the lower part of the flow of the reactive gas passing through the discharge space to form a fluorocarbon coating layer on the surface of the object by generating second atmospheric pressure glow plasma by transiting the plasma generated from the discharge space in a space between the first electrode and the object.

    Abstract translation: 提供了一种通过使用大气压等离子体进行疏水和超疏水处理的表面涂覆方法,通过控制处理速度和处理时间来改变物体的表面,并通过选择扫描,滚压等方法来调节多氟碳化物的沉积速度, 根据物体的种类对卷轴和卷对卷运输系统。 通过使用大气压等离子体进行疏水和超疏水处理的表面涂覆方法包括以下步骤:通过将包括氢气,氟碳化合物气体和惰性气体的反应气体供应到形成在第一气压等离子体之间的放电空间(406) 连接到大气压等离子体发生器的RF(射频)电源(400)的第一和第二电极(402,403),并且使物体(420)接近穿过反应气体的流动的下部的第一电极 所述放电空间通过在所述第一电极和所述物体之间的空间中转移从所述放电空间产生的等离子体而产生第二大气压发光等离子体,在所述物体的表面上形成氟碳涂层。

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