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    • 1. 发明申请
    • METHOD OF AND APPARATUS FOR APPLICATION OF LIQUID
    • 液体应用方法及装置
    • WO1994027737A1
    • 1994-12-08
    • PCT/JP1994000845
    • 1994-05-27
    • DAI NIPPON PRINTING CO., LTD.KOMATSU, TakayasuMIYAKAWA, ShunjiWATANABE, Kazuo
    • DAI NIPPON PRINTING CO., LTD.
    • B05C03/18
    • G03F7/16B05C5/0266B05C9/02B05D1/26Y10S118/12
    • There are provided an apparatus for and a method of forming a coating film of photosensitive resin on a large-sized glass substrate for LCD color filters such that the coating film is not affected by unevenness of a main surface of the substrate. A substrate (S) is sucked and held by a movable holder (8) with its coated main surface directed downward. Provided below the substrate (S) is an application head (H) having a straight slit (13), through which a coating liquid is discharged upward. When the substrate (S) is relatively moved obliquely upward with a particular clearance (I2) between it and the coating head (H), a coating liquid bead (B) is formed between the slit (13) and the substrate (S) and is moved obliquely downward along the substrate (S) to form a coating film (Rd). A meniscus (L2) of the coating liquid bead (B) facing a higher side of the substrate (S) has a greater height (h2) than that of a meniscus (L1) facing a lower side of the substrate such that the height of the meniscus facing the higher side of the substrate (S) is substantially greater than the thickness of a liquid coating film.
    • 提供了在用于LCD滤色器的大尺寸玻璃基板上形成感光性树脂涂膜的装置和方法,使得涂膜不受基板主表面的不平坦度的影响。 基板(S)由可动保持器(8)吸引并保持,其被涂覆的主表面向下。 在基板(S)的下方设置有具有直槽(13)的涂布头(H),涂布液向上方排出。 当衬底(S)在其与涂覆头(H)之间具有特定的间隙(I2)时倾斜向上移动时,在狭缝(13)和衬底(S)之间形成涂覆液珠(B),并且 沿着基板(S)倾斜向下移动以形成涂膜(Rd)。 面向基板(S)的较高侧的涂布液体珠(B)的弯液面(L2)的高度(h2)比面向基板的下侧的弯液面(L1)的高度(h2)高, 面对基板(S)的较高侧的弯月面基本上大于液体涂膜的厚度。
    • 3. 发明申请
    • COATING
    • 涂层
    • WO00004999A1
    • 2000-02-03
    • PCT/GB1999/002370
    • 1999-07-21
    • A61F2/84A61F2/06B05C3/09B05C9/12B05D1/18B05D7/22
    • B05D1/18B05C3/09B05C9/12B05D7/222Y10S118/12
    • An apparatus for coating tubular members (3), such as stents comprises a liquid reservoir (2) and a stent support member for supporting, in use, a tubular member. Support member dipping means (5, 8) places the support member in the liquid reservoir in use and draws the support member therefrom. Pressure differential generating means (6) generates a pressure differential. The stent support member is arranged to provide a central passageway through a stent placed thereon, the central passageway having a plurality of perforations formed therein, and the pressure differential generating means is arranged to generate, in use, a pressure differential between the passageway and the tubular member.
    • 用于涂覆诸如支架的管状构件(3)的装置包括液体储存器(2)和用于在使用中支撑管状构件的支架支撑构件。 支撑构件浸渍装置(5,8)将支撑构件放置在使用中的液体储存器中并从其中抽出支撑构件。 差压发生装置(6)产生压力差。 所述支架支撑构件被布置成提供通过其上放置的支架的中心通道,所述中心通道具有形成在其中的多个穿孔,并且所述压力差产生装置布置成在使用中产生所述通道和所述通道之间的压力差 管状构件。
    • 4. 发明申请
    • UV-CURABLE ACRYLIC COATING AND CURING OF FIBERGLASS SLEEEVING
    • 紫外线固化丙烯酸涂料和固化纤维束洗涤
    • WO1997028195A1
    • 1997-08-07
    • PCT/US1997001735
    • 1997-01-30
    • NATVAR COMPANY
    • NATVAR COMPANYMANGUM, Rufus, M.FAIRCLOTH, Elliott, S.MOORE, Tony
    • C08F02/48
    • C03C25/12B05D3/067B05D2256/00C03C25/16Y10S118/11Y10S118/12
    • A method and apparatus for coating and curing fiberglass sleeving (B) from a reel (8) with an ultraviolet light curable acrylic includes the steps of singeing the fiberglass sleeve at a singeing station (20) and thereafter cooling the sleeve at a cooling station (25). The fiberglass sleeve is then coated with an ultraviolet light curable acrylic resin by dipping in resin (40). Thereafter, the coated fiberglass sleeve is cured by passing it through a curing station (50), wherein the sleeve is subjected to ultraviolet light radiation about its entire circumference. The process is speed adjustable, and further, the intensity of the light emitted from the ultraviolet light source may be varied so that the system is tuned to cure fiberglass sleeves of any diameter up to approximately 1.00 inch. A coloring layer may be applied at pigment dip station (30), and after curing, the sleeve passes over a level cylindrical roller (60) and onto uptake reel (70).
    • 一种用紫外线固化丙烯酸酯从卷轴(8)上涂覆和固化玻璃纤维套管(B)的方法和装置包括以下步骤:在烧毛台(20)上将玻璃纤维套筒烧毛,然后在冷却站 25)。 然后通过浸渍在树脂(40)中,用紫外光固化的丙烯酸树脂涂覆玻璃纤维套筒。 此后,涂覆的玻璃纤维套筒通过使其穿过固化站(50)而固化,其中套筒围绕其整个圆周进行紫外线辐射。 该过程是速度可调节的,此外,可以改变从紫外光源发射的光的强度,使得系统被调谐以固化任何直径高达约1.00英寸的玻璃纤维套筒。 可以在颜料浸渍站(30)处施加着色层,并且在固化之后,套筒通过级别的圆柱形辊(60)和吸收卷轴(70)。