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    • 31. 发明申请
    • METHOD OF MANUFACTURING A CATHODE RAY TUBE (CRT) HAVING A COLOR FILTER
    • 制造具有彩色滤光片的阴极射线管(CRT)的方法
    • WO2004084252A1
    • 2004-09-30
    • PCT/US2003/040612
    • 2003-12-19
    • THOMSON LICENSING S.A.LIANG, Kangning
    • LIANG, Kangning
    • H01J9/227
    • H01J29/898H01J9/20
    • A method of manufacturing a cathode ray tube (CRT) (10) having a color filter luminescent screen (22) assembly is disclosed. The luminescent screen assembly is formed on an interior surface of a faceplate panel (12) of the CRT tube. The luminescent screen assembly includes a patterned light-absorbing matrix (23) that defines a plurality of sets of fields corresponding to one of a blue region, a red region and a green region. A color filter is formed in one of the plurality of sets of fields. The color filter is formed by applying a photosensitive material layer (46) on the inner surface of the faceplate panel and exposing one of the sets of fields corresponding to the blue region, the red region or the green region, to harden the photosensitive material in such region. A pigment layer, having a color that corresponds to the color of the region of hardened photosensitive material, is then applied over the exposed photosensitive material layer. After the pigment layer is applied, the unhardened photosensitive material layer is removed to form the color filter.
    • 公开了一种制造具有滤色器荧光屏(22)组件的阴极射线管(CRT)(10)的方法。 荧光屏组件形成在CRT管的面板(12)的内表面上。 荧光屏组件包括限定对应于蓝色区域,红色区域和绿色区域中的一个的多组场的图案化光吸收矩阵(23)。 彩色滤光片形成在多组场之一中。 滤色器是通过在感光材料层(46)上施加感光材料层(46)而形成的,该感光材料层(46)暴露在与蓝色区域,红色区域或绿色区域对应的一组场中,以使感光材料硬化 这样的地区。 然后将具有对应于硬化感光材料区域的颜色的颜色的颜料层施加到曝光的感光材料层上。 在施加颜料层之后,去除未硬化的感光材料层以形成滤色器。
    • 34. 发明申请
    • MASKED VAPOUR DEPOSITION IN LIGHT BULBS
    • 在浅泡中掩盖蒸气沉积
    • WO02043099A1
    • 2002-05-30
    • PCT/US2001/047787
    • 2001-11-13
    • C03C17/00C03C17/09C23C14/04H01J9/20H01J9/46H01J9/48
    • H01J9/48C03C17/004C03C17/09C03C2217/256C03C2218/152C23C14/042C23C14/046H01J9/20H01J9/46
    • Apparatus constructed in accordance with an exemplary embodiment of the invention coats an interior surface of a light bulb (54). It includes a support (52) for positioning a light bulb (54) that includes a light transmitting portion. A fixture positions a deposition material (M) and a shield (112) into a position within an interior region of the light bulb (54) for selectively coating an interior surface (116) of the light transmitting portion of the light bulb (54). A control adjusts a position of the shield (112), moving it into proximity to the bulb's inner surface (116) to control a target region of coating of the deposition material (M) onto the interior surface (116) of said light bulb (54). An energy source (122) applies energy to the deposition material (M) to vaporize the deposition material (M) and thereby coat the target region of the interior surface (116) of said light bulb (54).
    • 根据本发明的示例性实施例构造的装置涂覆电灯泡(54)的内表面。 其包括用于定位包括光透射部分的灯泡(54)的支撑件(52)。 夹具将沉积材料(M)和屏蔽件(112)定位在灯泡(54)的内部区域内的位置,以选择性地涂覆灯泡(54)的透光部分的内表面(116) 。 控制器调节屏蔽件(112)的位置,将其移动到灯泡的内表面(116)附近,以将沉积材料(M)的涂覆目标区域控制到所述灯泡的内表面(116)上 54)。 能量源(122)向沉积材料(M)施加能量以蒸发沉积材料(M),从而涂覆所述灯泡(54)的内表面(116)的目标区域。
    • 35. 发明申请
    • THIN FILM PRODUCING METHOD AND LIGHT BULB HAVING SUCH THIN FILM
    • 薄膜生产方法和具有这种薄膜的灯泡
    • WO02021572A1
    • 2002-03-14
    • PCT/JP2001/007666
    • 2001-09-04
    • C23C14/00C23C14/34H01J9/20H01J61/35H01K1/32H01K3/00
    • C23C14/345C23C14/0036C23C14/34H01J9/20H01J61/35H01K1/325H01K3/005
    • In forming an optical thin film on the bulb surface of a light source such as a light bulb or a discharge lamp, a thin film whose interface/surface is less rough is formed on a rotary elliptic base disk. In forming a thin film by sputtering on a rotary elliptic base disk (2) rotating around its own axis in the vacuum chamber (4) of a film forming device, the gas pressure is set at 0.04 5.0 Pa, or a mixture of Ar gas and N2 gas is used as the sputtering gas and its partial pressure ratio is Ar gas 100:N2 gas 1-6, or a mixture of Ar gas, N2 gas and O2 gas is used whose partial pressure ratio is Ar gas 100:N2 gas 1 6:O2 gas 6. And at the start of thin film formation, the input power is at a maximum throughout the sputtering process, or a negative bias is applied to the subject base disk, whereby the thin film interface or surface is less rough and the film thickness distribution is lessened.
    • 在诸如灯泡或放电灯的光源的灯泡表面上形成光学薄膜时,在旋转的椭圆形基盘上形成界面/表面不粗糙的薄膜。 在通过溅射在薄膜形成装置的真空室(4)中围绕其自身轴线旋转的旋转椭圆形基盘(2)上形成薄膜时,将气体压力设定为0.04±5.0Pa,或将Ar气体 使用N 2气体作为溅射气体,其分压比为Ar气100:N 2气1-6,或者使用Ar气,N 2气和O 2气体的混合气,其分压比为Ar气100N 2气 而在薄膜形成开始时,输入功率在整个溅射过程中处于最大值,或者负偏压被施加到被测基底盘,由此薄膜界面或表面不粗糙 并且膜厚度分布减小。
    • 36. 发明申请
    • MEMBER FOR LINKING TOGETHER ARTICLES DURING COATING AND ACCORDING PROCESS
    • 在涂料和加工过程中连接物品的会员
    • WO02016049A1
    • 2002-02-28
    • PCT/GB2001/003842
    • 2001-08-28
    • B05C3/09B05C3/12B05B15/04B05C13/02
    • H01J9/48B05C3/09B05C3/12H01J5/48H01J9/20H01J61/35
    • The invention relates to a linkage member (10) for linking articles together during a process for coating the articles. The linkage member (10) has a first and second end (12), each end (12) of which is configured to receive and about end portions of successive articles to be coated and to prevent coating of the end portions. Each linkage member (10) is primarily formed from a material such as a perfluorinated polymer, which imparts low thermal conductivity to the linkage member (10). An outer layer of conductive material, such as steel, can be provided to enable heat to be transferred rapidly across the surface of the linkage member (10). The linkage member (10) can be substantially cylindrical in shape with a typical diameter of 15-30 mm and height of 12-15 mm.
    • 本发明涉及一种用于在物品涂覆过程中将制品连接在一起的连接件(10)。 连杆构件(10)具有第一和第二端(12),其每个端部(12)构造成容纳待连接的待涂覆物品的端部和大致端部,并且防止端部的涂覆。 每个连杆构件(10)主要由诸如全氟化聚合物的材料形成,其向连接构件(10)赋予低导热性。 可以提供诸如钢的导电材料的外层,以使得能够快速地转移穿过连接构件(10)的表面。 连杆构件(10)可以是基本圆柱形的,典型直径为15-30mm,高度为12-15mm。