NICKEL-ALUMINUM BLOCKER FILM MULTIPLE CAVITY CONTROLLED TRANSMISSION COATING
    4.
    发明申请
    NICKEL-ALUMINUM BLOCKER FILM MULTIPLE CAVITY CONTROLLED TRANSMISSION COATING 有权
    镍铬合金膜多孔密封控制传动涂层

    公开(公告)号:US20160273265A1

    公开(公告)日:2016-09-22

    申请号:US14663644

    申请日:2015-03-20

    IPC分类号: E06B3/67 C23C14/35 C23C14/18

    摘要: The invention provides a glazing sheet and a coating on the glazing sheet. The coating comprises, in sequence moving outwardly from the glazing sheet, a dielectric base coat comprising oxide film, nitride film, or oxynitride film, a first infrared-reflective layer, a first nickel-aluminum blocker layer in contact with the first infrared-reflective layer, a first dielectric spacer coat comprising an oxide film in contact with the first nickel-aluminum blocker layer, a second infrared-reflective layer, a second nickel-aluminum blocker layer in contact with the second infrared-reflective layer, a second dielectric spacer coat comprising an oxide film in contact with the second nickel-aluminum blocker layer, a third infrared-reflective layer, a third nickel-aluminum blocker layer in contact with the third infrared-reflective layer, and a dielectric top coat comprising an oxide film in contact with the third nickel-aluminum blocker layer. Also provided are methods of depositing such a coating.

    摘要翻译: 本发明提供了玻璃板和玻璃板上的涂层。 该涂层依次从玻璃板向外移动,包括氧化膜,氮化物膜或氧氮化物膜的介电基底涂层,第一红外反射层,与第一红外反射层接触的第一镍 - 铝阻挡层 层,包括与第一镍铝阻挡层接触的氧化物膜的第一介电隔离层涂层,第二红外反射层,与第二红外反射层接触的第二镍 - 铝阻挡层,第二介电间隔物 包含与第二镍 - 铝阻挡层接触的氧化膜的涂层,第三红外反射层,与第三红外线反射层接触的第三镍 - 铝阻挡层,以及包含氧化膜的电介质涂层 与第三个镍铝阻挡层接触。 还提供了沉积这种涂层的方法。

    Switchable hydride smart window and the methods for producing the same

    公开(公告)号:US10247997B2

    公开(公告)日:2019-04-02

    申请号:US15677302

    申请日:2017-08-15

    IPC分类号: G02F1/19 G02F1/1523 G02F1/153

    摘要: A switchable hydride smart window solid thin film coating having variable opacity and the methods for producing the same is described. The coating includes the following layers deposited on substrate such as glass: a switchable layer, an optional barrier layer, a catalyst layer, an optional barrier layer, a solid electrode, an ion storage layer, an optional insulating layer and a transparent conductor layer. The switchable layer is preferably formed of a magnesium alloy and ore preferable, a ternary alloy of magnesium along with two additional rare earth metals such as yttrium (Y) and Titanium (Ti), i.e., MgYTi.

    NICKEL-ALUMINUM BLOCKER FILM MULTIPLE CAVITY CONTROLLED TRANSMISSION COATING

    公开(公告)号:US20200024894A1

    公开(公告)日:2020-01-23

    申请号:US16577368

    申请日:2019-09-20

    摘要: The invention provides a glazing sheet and a coating on the glazing sheet. The coating comprises, in sequence moving outwardly from the glazing sheet, a dielectric base coat comprising oxide film, nitride film, or oxynitride film, a first infrared-reflective layer, a first nickel-aluminum blocker layer in contact with the first infrared-reflective layer, a first dielectric spacer coat comprising an oxide film in contact with the first nickel-aluminum blocker layer, a second infrared-reflective layer, a second nickel-aluminum blocker layer in contact with the second infrared-reflective layer, a second dielectric spacer coat comprising an oxide film in contact with the second nickel-aluminum blocker layer, a third infrared-reflective layer, a third nickel-aluminum blocker layer in contact with the third infrared-reflective layer, and a dielectric top coat comprising an oxide film in contact with the third nickel-aluminum blocker layer. Also provided are methods of depositing such a coating.

    Nickel-aluminum blocker film multiple cavity controlled transmission coating

    公开(公告)号:US10465434B2

    公开(公告)日:2019-11-05

    申请号:US15456821

    申请日:2017-03-13

    摘要: The invention provides a glazing sheet and a coating on the glazing sheet. The coating comprises, in sequence moving outwardly from the glazing sheet, a dielectric base coat comprising oxide film, nitride film, or oxynitride film, a first infrared-reflective layer, a first nickel-aluminum blocker layer in contact with the first infrared-reflective layer, a first dielectric spacer coat comprising an oxide film in contact with the first nickel-aluminum blocker layer, a second infrared-reflective layer, a second nickel-aluminum blocker layer in contact with the second infrared-reflective layer, a second dielectric spacer coat comprising an oxide film in contact with the second nickel-aluminum blocker layer, a third infrared-reflective layer, a third nickel-aluminum blocker layer in contact with the third infrared-reflective layer, and a dielectric top coat comprising an oxide film in contact with the third nickel-aluminum blocker layer. Also provided are methods of depositing such a coating.