PIGMENT DISPERSION AND METHOD FOR PREPARING SAME
    1.
    发明申请
    PIGMENT DISPERSION AND METHOD FOR PREPARING SAME 有权
    颜料分散体及其制备方法

    公开(公告)号:US20140058017A1

    公开(公告)日:2014-02-27

    申请号:US13980486

    申请日:2012-12-21

    Abstract: A pigment dispersion and a method for preparing the same are provided. The pigment dispersion comprises the following components in the following mass percentage: 10%˜20% pigment, 1.5%˜12% dispersant, 0.75%˜7.5% binder resin, 58.5%˜87.3% solvent and 0.45%˜2% nonionic surfactant, based on the total mass of the pigment dispersion. The pigment dispersion is improved in stability, and is applicable to a colored filter.

    Abstract translation: 提供颜料分散体及其制备方法。 颜料分散体包含以下质量百分比的组分:10%〜20%颜料,1.5%〜12%分散剂,0.75%〜7.5%粘合剂树脂,58.5%〜87.3%溶剂和0.45%〜2%非离子表面活性剂, 基于颜料分散体的总质量。 颜料分散体的稳定性提高,适用于有色过滤器。

    Color Filter Substrate And Manufacturing Method Thereof
    2.
    发明申请
    Color Filter Substrate And Manufacturing Method Thereof 有权
    彩色滤光片基板及其制造方法

    公开(公告)号:US20140063631A1

    公开(公告)日:2014-03-06

    申请号:US13994738

    申请日:2012-11-23

    Abstract: Disclosed are a color filter substrate and the manufacturing method thereof. The color filter substrate comprises: a substrate (1); a black matrix (3) and a color pixel layer (4, 5, 6) formed on the substrate (1); and a transparent thermally conductive layer (2) disposed between the substrate (1) and the black matrix (3) and between the substrate (1) and the color pixel layer (4, 5, 6).

    Abstract translation: 公开了一种滤色器基板及其制造方法。 滤色器基板包括:基板(1); 形成在基板(1)上的黑矩阵(3)和彩色像素层(4,5,6); 以及设置在所述基板(1)和所述黑矩阵(3)之间以及所述基板(1)和所述彩色像素层(4,5,6)之间的透明导热层(2)。

    Manufacturing method and template of color filters
    5.
    发明授权
    Manufacturing method and template of color filters 有权
    彩色滤光片的制作方法和模板

    公开(公告)号:US09188719B2

    公开(公告)日:2015-11-17

    申请号:US14126508

    申请日:2012-11-12

    Abstract: A manufacturing method and template of color filters belong to the field of liquid crystal display. The manufacturing method comprises: forming a black matrix (2) on a substrate (1), a pixel region being formed around the black matrix (2); forming pixel resin layers (3, 4, 5) on the substrate (1) on which the black matrix is formed; boxing the template with the substrate on which the pixel resin layers are formed, the template being located above the substrate (1), and a plurality of columnar hollow protrusions (13) being arranged at a part of a template body (12), corresponding to the pixel region, of the template; subjecting the boxed substrate to heat treatment, taking off the template so as to form a hole (11) in the pixel resin layer; and forming, through a patterning process, a pattern of the pixel resin layer on the substrate on which the hole (11) is provided. Therefore, the aperture and the opening area can be accurately controlled when providing an opening on the pixel region of the color filter.

    Abstract translation: 滤色片的制造方法和模板属于液晶显示领域。 制造方法包括:在基板(1)上形成黑矩阵(2),围绕黑矩阵(2)形成像素区域; 在其上形成有黑矩阵的基板(1)上形成像素树脂层(3,4,5); 将模板与其上形成有像素树脂层的基板一起装载,模板位于基板(1)上方,并且多个柱状中空突起(13)布置在模板体(12)的一部分处,对应于 到模板的像素区域; 对盒状基板进行热处理,脱模,以在像素树脂层中形成孔(11); 以及通过图案化工艺形成在其上设置有孔(11)的基板上的像素树脂层的图案。 因此,当在滤色器的像素区域上提供开口时,可以精确地控制光圈和开口面积。

    MANUFACTURING METHOD AND TEMPLATE OF COLOR FILTERS
    6.
    发明申请
    MANUFACTURING METHOD AND TEMPLATE OF COLOR FILTERS 有权
    彩色滤光片的制造方法和模板

    公开(公告)号:US20140113067A1

    公开(公告)日:2014-04-24

    申请号:US14126508

    申请日:2012-11-12

    Abstract: A manufacturing method and template of color filters belong to the field of liquid crystal display. The manufacturing method comprises: forming a black matrix (2) on a substrate (1), a pixel region being formed around the black matrix (2); forming pixel resin layers (3, 4, 5) on the substrate (1) on which the black matrix is formed; boxing the template with the substrate on which the pixel resin layers are formed, the template being located above the substrate (1), and a plurality of columnar hollow protrusions (13) being arranged at a part of a template body (12), corresponding to the pixel region, of the template; subjecting the boxed substrate to heat treatment, taking off the template so as to form a hole (11) in the pixel resin layer; and forming, through a patterning process, a pattern of the pixel resin layer on the substrate on which the hole (11) is provided. Therefore, the aperture and the opening area can be accurately controlled when providing an opening on the pixel region of the color filter.

    Abstract translation: 滤色片的制造方法和模板属于液晶显示领域。 制造方法包括:在基板(1)上形成黑矩阵(2),围绕黑矩阵(2)形成像素区域; 在其上形成有黑矩阵的基板(1)上形成像素树脂层(3,4,5); 将模板与其上形成有像素树脂层的基板一起装载,模板位于基板(1)上方,并且多个柱状中空突起(13)布置在模板体(12)的一部分处,对应于 到模板的像素区域; 对盒状基板进行热处理,脱模,以在像素树脂层中形成孔(11); 以及通过图案化工艺形成在其上设置有孔(11)的基板上的像素树脂层的图案。 因此,当在滤色器的像素区域上提供开口时,可以精确地控制光圈和开口面积。

    Apparatus and method of preparing electronic ink microcapsules

    公开(公告)号:US09868102B2

    公开(公告)日:2018-01-16

    申请号:US14351726

    申请日:2013-11-15

    CPC classification number: B01J13/14 B01J19/123 B01J2219/1203

    Abstract: An apparatus and a method of preparing electronic ink microcapsules are disclosed. The apparatus of preparing electronic ink microcapsules includes: a first input tube, a second input tube, a UV light source, and an output tube connected to both the first input tube and the second input tube, respectively. The first input tube is a shading tube adapted to input an electrophoresis suspension comprising a mixture of a pre-polymer and a photo-initiator. The second input tube is adapted to input an aqueous solution comprising surfactant. The UV light source is adapted to radiate the mixed liquid in the output tube which is a mixture of the liquids input from the first input tube and the second input tube to prepare the electronic ink microcapsules. The electronic ink microcapsules prepared by using the apparatus and the method of preparing electronic ink microcapsules exhibit advantages including good uniformity, good thermal stability, etc.

    Fluorine-containing polymer, the preparation process and use thereof, pigment dispersion and the preparation process
    8.
    发明授权
    Fluorine-containing polymer, the preparation process and use thereof, pigment dispersion and the preparation process 有权
    含氟聚合物,其制备方法及用途,颜料分散及制备方法

    公开(公告)号:US09074109B2

    公开(公告)日:2015-07-07

    申请号:US14082949

    申请日:2013-11-18

    Abstract: The present invention relates to a fluorine-containing polymer comprising a structure represented by the following general formula (I), as well as the preparation process and use thereof. According to the technical solution of the invention, a novel fluorine-containing polymer with a larger molecular weight and an aromatic side group is obtained through a simple reaction, and it can be used as a non-ionic fluorine carbon surfactant, and especially, is applicable to the preparation of a pigment dispersion. Additionally, the invention further relates to a pigment dispersion and the preparation process thereof. In the invention, a little non-ionic fluorine carbon surfactant is added into a traditional pigment dispersion, whereby the interface energy in the pigment dispersion system can be improved, and the aggregation and agglomeration of pigment particles are prevented, as a result, the particle diameter and viscosity are less changed with the lapse of time, and there is no precipitate occurred, therefore, the stability of the pigment dispersion is improved significantly.

    Abstract translation: 本发明涉及包含由以下通式(I)表示的结构的含氟聚合物及其制备方法和用途。 根据本发明的技术方案,通过简单的反应获得具有较大分子量和芳香族侧基的新型含氟聚合物,可以作为非离子性氟碳表面活性剂使用,特别是 适用于制备颜料分散体。 另外,本发明还涉及一种颜料分散体及其制备方法。 在本发明中,将少量非离子型氟碳表面活性剂加入到传统的颜料分散体中,从而可以改善颜料分散体系中的界面能,防止颜料颗粒聚集和附聚,结果颗粒 直径和粘度随时间的推移变化较小,并且不发生沉淀,因此颜料分散体的稳定性显着提高。

    APPARATUS AND METHOD OF PREPARING ELECTRONIC INK MICROCAPSULES
    9.
    发明申请
    APPARATUS AND METHOD OF PREPARING ELECTRONIC INK MICROCAPSULES 有权
    制备电子墨水微粒的装置和方法

    公开(公告)号:US20140346696A1

    公开(公告)日:2014-11-27

    申请号:US14351726

    申请日:2013-11-15

    CPC classification number: B01J13/14 B01J19/123 B01J2219/1203

    Abstract: An apparatus and a method of preparing electronic ink microcapsules are disclosed. The apparatus of preparing electronic ink microcapsules includes: a first input tube, a second input tube, a UV light source, and an output tube connected to both the first input tube and the second input tube, respectively. The first input tube is a shading tube adapted to input an electrophoresis suspension comprising a mixture of a pre-polymer and a photo-initiator. The second input tube is adapted to input an aqueous solution comprising surfactant. The UV light source is adapted to radiate the mixed liquid in the output tube which is a mixture of the liquids input from the first input tube and the second input tube to prepare the electronic ink microcapsules. The electronic ink microcapsules prepared by using the apparatus and the method of preparing electronic ink microcapsules exhibit advantages including good uniformity, good thermal stability, etc.

    Abstract translation: 公开了一种制备电子墨水微胶囊的装置和方法。 制备电子墨水微胶囊的装置包括:分别连接到第一输入管和第二输入管的第一输入管,第二输入管,UV光源和输出管。 第一输入管是适于输入包含预聚物和光引发剂的混合物的电泳悬浮液的遮光管。 第二输入管适于输入包含表面活性剂的水溶液。 UV光源适于将输出管中的混合液体辐射,该输出管是从第一输入管和第二输入管输入的液体的混合物,以制备电子墨水微胶囊。 使用该装置制备的电子油墨微胶囊和制备电子油墨微胶囊的方法具有均匀性好,热稳定性好等优点。

    Display panel, manufacturing method thereof, and display device

    公开(公告)号:US10025090B2

    公开(公告)日:2018-07-17

    申请号:US14395656

    申请日:2013-11-13

    Inventor: Jisheng Zhao

    Abstract: The present invention provides display panel and manufacturing method thereof, and display device comprising the display panel. The display panel comprises: a first substrate and a second substrate provided opposite to each other, each of which comprises a plurality of photic areas and a plurality of shading areas; a plurality of pixel units formed between the first substrate and the second substrate; and a plurality of control units corresponding to the plurality of pixel units, respectively. In each pixel unit, a projection of the shading area of the first substrate on the second substrate completely covers the photic area of the second substrate. On a side of the first substrate opposite to the second substrate, a first reflective layer which is bendable is provided on each of the shading areas of the first substrate, and on a side of the second substrate opposite to the first substrate, a second reflective layer is provided on each of the shading areas of the second substrate. The first reflective layers, in a bent state, reflect light reaching the first reflective layers to the second reflective layers, and the second reflective layers reflect the light reflected thereto to the photic areas of the first substrate.

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