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    • 31. 发明授权
    • Apparatus for preventing the contamination of casting rolls and bulging of strip in a twin roll strip caster
    • 用于防止铸辊污染和在双辊带式连铸机中带状膨胀的装置
    • US07021364B2
    • 2006-04-04
    • US10489232
    • 2002-12-20
    • Cheol-Min ParkDong-Kyun ChooTae-Wook Kang
    • Cheol-Min ParkDong-Kyun ChooTae-Wook Kang
    • B22D11/06
    • B22D11/0697
    • An apparatus for preventing bulging of both edges of a strip while preventing contamination of a roll surface in a twin roll strip caster including a meniscus shield (5) and a plurality of weirs (12). The apparatus comprises: first chambers (60) arranged at both sides of the meniscus shield (5) in a longitudinal direction parallel to the casting roll (1) and having inlet and outlet ports for non-oxidizing gas; second chambers (80) each assembled to an underside in each of the first chambers (60) in a communicating fashion for receiving non-oxidizing gas from the first chambers (60), and including a plurality of holes (81) formed in an inclined face thereof corresponding to an outer peripheral face in each of the casting rolls (1 and 1a) in a longitudinal direction of the each casting roll (1 or 1a); and passages S formed between the meniscus shield (5) and the second chambers (80) and reaching the gas outlet ports of the first chambers for allowing contaminated gas containing evaporated metal components and non-oxidizing gas injected from the second chambers (80) to be outwardly exhausted.
    • 一种用于防止带状物的两边缘膨胀的装置,同时防止包括弯液面护罩(5)和多个堰(12)的双辊带式连铸机中的辊表面的污染。 该设备包括:在平行于铸辊(1)的纵向方向上布置在弯月面罩(5)的两侧的第一腔室(60),并具有用于非氧化气体的入口和出口; 每个第一室(60)中的每个第一室(60)中的每个第一室(60)中的第二室(80)以与所述第一室(60)接收非氧化性气体的连通方式,并且包括形成在倾斜 在每个铸辊(1和1a)中的每个铸辊(1或1a)的纵向方向上的外周面相对应的面; 以及形成在弯月面罩(5)和第二室(80)之间并且到达第一室的气体出口的通道S,用于允许含有蒸发的金属成分和从第二室(80)注入的非氧化性气体的污染气体 向外疲惫
    • 37. 发明授权
    • Electroluminescent display device and method of fabricating the same
    • 电致发光显示装置及其制造方法
    • US08278818B2
    • 2012-10-02
    • US11143952
    • 2005-06-03
    • Chang-Yong JeongTae-Wook KangChang-Soo KimYu-Sung Cho
    • Chang-Yong JeongTae-Wook KangChang-Soo KimYu-Sung Cho
    • H05B33/00
    • H01L27/3246H01L27/3283H01L51/5256
    • An electroluminescent (EL) display device and a method of fabricating the same are provided. The device includes a substrate; a plurality of pixel electrodes disposed on the substrate; a pixel defining layer disposed on the pixel electrodes and having an opening part exposing a predetermined part of each of the pixel electrodes; and at least one barrier layer comprised in and/or on the pixel defining layer. In this device, the pixel defining layer includes at least one barrier layer in order to reduce the amount of outgas from the pixel defining layer and prevent degradation of an emission portion due to the outgas. Also, the pixel defining layer is formed to a sufficiently small thickness to facilitate a subsequent process using a laser induced thermal imaging (LITI) process.
    • 提供一种电致发光(EL)显示装置及其制造方法。 该装置包括基板; 设置在所述基板上的多个像素电极; 设置在所述像素电极上并具有使每个所述像素电极的预定部分露出的开口部的像素限定层; 以及包含在像素限定层中和/或上的至少一个势垒层。 在该装置中,像素限定层包括至少一个阻挡层,以便减少来自像素限定层的排气量,并防止由于排出气体引起的排放部分的劣化。 此外,像素限定层形成为足够小的厚度以便于使用激光诱导热成像(LITI)工艺的后续处理。
    • 39. 发明授权
    • Organic light emitting device and method of fabricating the same
    • 有机发光装置及其制造方法
    • US08124962B2
    • 2012-02-28
    • US11269840
    • 2005-11-09
    • Tae-Wook Kang
    • Tae-Wook Kang
    • H01L29/08
    • H01L27/3244H01L51/5271H01L2251/5323
    • In an organic light emitting device and method of fabricating the same, a hole is formed in a reflecting layer formed below a first electrode or the reflecting layer itself is patterned to form a reflecting layer pattern, and an opening is formed in the reflecting layer positioned below the first electrode, so that light generated in an organic layer is transmitted toward the bottom as well as the top, and an aperture ratio of the opening may be adjusted to control the amount of the transmitted light and the reflected light. The organic light emitting device includes: a substrate; a first electrode; an organic layer having at least an organic emission layer; and a second electrode formed on the substrate. A reflecting layer is positioned below the first electrode, and has at least one hole or at least one island pattern formed therein. An aperture ratio of the opening may be adjusted so that a double-sided organic light emitting device capable of adjusting the amount of the reflected light and the transmitted light may be readily formed.
    • 在有机发光器件及其制造方法中,在形成在第一电极下方的反射层中形成孔,或者将反射层本身图案化以形成反射层图案,并且在反射层中形成开口 使得在有机层中产生的光朝向底部和顶部传递,并且可以调节开口的孔径比以控制透射光量和反射光的量。 有机发光器件包括:衬底; 第一电极; 至少具有有机发光层的有机层; 以及形成在所述基板上的第二电极。 反射层位于第一电极的下方,并且在其中形成有至少一个孔或至少一个岛状图案。 可以调节开口的孔径比,使得能够容易地形成能够调节反射光量和透射光的双面有机发光装置。
    • 40. 发明授权
    • Organic light emitting diode display having improved mechanical strength
    • 有机发光二极管显示器具有改善的机械强度
    • US08084941B2
    • 2011-12-27
    • US12558311
    • 2009-09-11
    • Hun KimTae-Wook KangZail LheeSeung-Yeon ChoMi-Sook SuhHyun-Chol Bang
    • Hun KimTae-Wook KangZail LheeSeung-Yeon ChoMi-Sook SuhHyun-Chol Bang
    • H01L51/50H01L51/52
    • H01L27/3276H01L51/5246
    • The present invention is related to an OLED display, and one aspect of the OLED display includes a substrate member, an insulating layer formed on the substrate member, a metal wire formed on the insulating layer and having a plurality of joining enhancement holes, a sealant formed on the metal wire, and a sealing member attached on the sealant. In some embodiments, the joining enhancement holes efficiently suppress stripping of the sealant from the metal wire, since the sealant can integrally bond with the interlayer insulating layer through the joining enhancement holes. This feature may compensate for any weak bonding adherence between the sealant and metal wire. In some embodiments, the area of the joining enhancement holes may range from about 5% to about 60% of the entire area of the metal wire.
    • 本发明涉及一种OLED显示器,并且OLED显示器的一个方面包括基板部件,形成在基板部件上的绝缘层,形成在绝缘层上并具有多个接合增强孔的金属线,密封剂 形成在金属线上,密封构件附着在密封剂上。 在一些实施例中,由于密封剂可以通过接合增强孔与层间绝缘层一体地结合,所以连接增强孔有效地抑制了从金属线剥离密封剂。 该特征可以补偿密封剂和金属丝之间的任何弱粘合粘附。 在一些实施例中,接合增强孔的面积可以在金属线的整个面积的约5%至约60%的范围内。