PANE WITH THERMAL RADIATION REFLECTING COATING
    2.
    发明申请
    PANE WITH THERMAL RADIATION REFLECTING COATING 审中-公开
    带热辐射反射涂层的面板

    公开(公告)号:US20160002100A1

    公开(公告)日:2016-01-07

    申请号:US14769326

    申请日:2013-12-19

    Abstract: The present invention relates to a pane with thermal radiation reflecting coating, comprising a substrate (1) and at least one thermal radiation reflecting coating (2) on at least one of the surfaces of the substrate (1), wherein the coating (2), proceeding from the substrate (1), comprises at least one lower dielectric layer (3), one functional layer (4) that contains at least one transparent, electrically conductive oxide, and one upper dielectric layer (5), and wherein at least one darkening layer (10) is arranged below the lower dielectric layer (3), between the lower dielectric layer (3) and the functional layer (4), between the functional layer (4) and the upper dielectric layer (5), and/or above the upper dielectric layer (5), and wherein the darkening layer (10) contains at least one metal, one metal nitride, and/or one metal carbide with a melting point greater than 1900° C. and a specific electrical resistivity less than 500 μohm*cm.

    Abstract translation: 本发明涉及一种具有热辐射反射涂层的玻璃板,其中包括基材(1)和在基材(1)的至少一个表面上的至少一个热辐射反射涂层(2),其中涂层(2) 从衬底(1)开始,包括至少一个下介电层(3),一个功能层(4),其包含至少一个透明的导电氧化物和一个上电介质层(5),并且其中至少 下功能层(4)与上电介质层(5)之间的下电介质层(3)下面介于下电介质层(3)与功能层(4)之间的一个变暗层(10) /或上方的上电介质层(5),并且其中所述变色层(10)含有至少一种金属,一种金属氮化物和/或一种熔点大于1900℃的金属碳化物,并且具有比电阻率 小于500μΩ* cm。

    VEHICLE WINDOW WITH LIGHT GUIDE BODY FOR A SENSOR

    公开(公告)号:US20190263315A1

    公开(公告)日:2019-08-29

    申请号:US16349550

    申请日:2017-11-09

    Abstract: A vehicle window for separating a vehicle interior from outer surroundings, includes glass pane with a light guide body made of glass on a region of the interior-side surface of the glass pane, wherein the surface of the light guide body facing the glass pane and the surface facing away from the glass pane enclose a wedge angle such that the thickness of the light guide body decreases in the direction from a lower edge to an upper edge of the glass pane, wherein the light guide body is secured to the interior-side surface of the glass pane by means of laser welding.

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