柔性OLED的制作方法及柔性OLED
    4.
    发明申请

    公开(公告)号:WO2017215063A1

    公开(公告)日:2017-12-21

    申请号:PCT/CN2016/089956

    申请日:2016-07-14

    Inventor: 李文杰 曾维静

    Abstract: 一种柔性OLED的制作方法及柔性OLED。该制作方法,采用磁性基板(10)作为载体基板,通过磁力吸附使柔性磁性薄膜(20)固定于磁性基板上,之后在柔性磁性薄膜上形成聚合物薄膜(30),在聚合物薄膜上制作OLED器件(40),对OLED器件进行封装后,完成柔性OLED的制作,该制作方法简单,通过对磁性基板进行消磁即可实现柔性磁性薄膜和磁性基板之间的无损分离。另外,柔性磁性薄膜优选为具有良好的水汽阻隔能力的金属薄膜,可降低水汽通过率,提高OLED器件的稳定性。通过对OLED器件进行封装进一步提升了OLED器件性能的可靠性。该柔性OLED,制程简单,性能优异。

    窄边框柔性显示装置及其制作方法

    公开(公告)号:WO2016179876A1

    公开(公告)日:2016-11-17

    申请号:PCT/CN2015/081728

    申请日:2015-06-18

    Inventor: 李文辉

    Abstract: 一种窄边框柔性显示装置及其制作方法,通过在下基板(20)内的第一基板(21)上靠近边缘的区域设置一通孔(211),所述通孔(211)内设置一导电连接体(22),通过导电连接体(22)分别连接电路布线层(23)及连接驱动电路板(40)的柔性连接电路(41),从而将驱动电路板(40)与电路布线层(23)连接起来。该设置使得所述下基板(20)的电路布线层(23)一侧不需要再设置额外的连接区域用作与柔性连接电路(41)相连接,可以增大柔性显示装置的有效显示区域,缩小边框区域,并且,由于所述柔性连接电路(41)仅设置于所述下基板(20)的一侧,避免了现有技术中柔性连接电路绕过所述下基板的侧边,从而占用所述下基板侧边空间的问题,可以进一步缩小边框区域,实现窄边框显示。

    ELECTRICAL MULTILAYER LAMINATION TRANSFER FILMS
    9.
    发明申请
    ELECTRICAL MULTILAYER LAMINATION TRANSFER FILMS 审中-公开
    电气多层复合传输膜

    公开(公告)号:WO2016033211A2

    公开(公告)日:2016-03-03

    申请号:PCT/US2015/046990

    申请日:2015-08-26

    Abstract: Transfer films, articles made therewith, and methods of making and using transfer films to form an electrical stack are disclosed. The transfer films may include a plurality of co-extensive electrical protolayers forming an electrical protolayer stack, at least selected or each electrical protolayer independently comprising at least 25 wt% sacrificial material and a thermally stable material and having a uniform thickness of less than 25 micrometers. The transfer films may include a plurality of co-extensive electrical protolayers forming an electrical protolayer stack, at least selected or each protolayer independently exhibiting a complex viscosity of between 10 3 and 10 4 Poise at a shear rate of 100/s when heated to a temperature between its T g and T dec .

    Abstract translation: 公开了转移膜,制成的制品以及制造和使用转印膜形成电堆的方法。 转移膜可以包括形成电原始层堆叠的多个共扩展电原层,至少选择的或每个电原型层独立地包含至少25重量%的牺牲材料和热稳定材料,并且具有小于25微米的均匀厚度 。 转移膜可以包括形成电原始层堆叠的多个共扩展电原层,至少选择的或每个原层在100 / s的剪切速率下独立地显示103至104泊的复数粘度,当加热至 其Tg和Tdec。

    FLEXIBLE TFT BACKPANEL BY GLASS SUBSTRATE REMOVAL
    10.
    发明申请
    FLEXIBLE TFT BACKPANEL BY GLASS SUBSTRATE REMOVAL 审中-公开
    透明玻璃底板去除柔性TFT背板

    公开(公告)号:WO2015142525A1

    公开(公告)日:2015-09-24

    申请号:PCT/US2015/018807

    申请日:2015-03-04

    Applicant: CBRITE INC.

    Abstract: A process of fabricating a flexible TFT back-panel on a glass support includes a step of providing a flat glass support member sufficiently thick to prevent bending during the processing. A layer of etch stop material is positioned on the upper surface of the glass support member and an insulating buffer layer is positioned on the layer of etch stop material. A TFT back-panel is positioned on the insulating buffer layer and a flexible plastic carrier is affixed to the TFT back-panel. The glass support member is etched away, whereby a flexible TFT back-panel is provided. The TFT back-panel can include a matrix of either OLED cells or LCD cells.

    Abstract translation: 在玻璃支架上制造柔性TFT背板的工艺包括提供足够厚的平板玻璃支撑件以防止加工过程中弯曲的步骤。 一层蚀刻停止材料定位在玻璃支撑构件的上表面上,并且绝缘缓冲层位于蚀刻停止材料层上。 TFT背板位于绝缘缓冲层上,柔性塑料载体固定在TFT后面板上。 蚀刻玻璃支撑构件,由此提供柔性TFT背面板。 TFT背面板可以包括OLED单元或LCD单元的矩阵。

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