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    • 11. 发明申请
    • Arrangement in fibre process
    • 纤维工艺的布置
    • US20060144199A1
    • 2006-07-06
    • US10512489
    • 2003-06-18
    • Paavo Veijanen
    • Paavo Veijanen
    • B26D1/00
    • C03B37/16B65H54/86B65H67/04B65H2701/32C03B37/03G02B6/4479Y10T83/04
    • An arrangement in a fibre process, which arrangement is equipped with control and pulling means for directing fibre along a desired run and with means equipped with gripping surfaces (7, 8) for gripping the fibre or the like (1), between which gripping surfaces (7, 8), the fibre or the like (1) is arranged to run without touching the gripping surfaces before the gripping step, in which the gripping surfaces (7, 8) are arranged to press against each other. On both sides of the fibre-gripping surfaces (7, 8), control means (10, 11, 12, 13) are arranged to prevent a random contact between the fibre or the like (1) and the gripping surfaces (7, 8).
    • 在纤维工艺中的布置,该布置配备有用于沿着期望的行程引导纤维的控制和牵引装置,以及装备有用于夹紧纤维等的夹紧表面(7,8)的装置,夹紧表面 (7,8)中,纤维等(1)布置成在抓握表面(7,8)布置成彼此挤压的夹持步骤之前不接触抓握表面而运行。 在光纤夹持表面(7,8)的两侧,设置有控制装置(10,11,12,13),以防止纤维等(1)和夹持表面(7,8)之间的随机接触 )。
    • 13. 发明授权
    • Drive control system for a fiber-based plasma display
    • 用于光纤等离子体显示器的驱动控制系统
    • US06946803B2
    • 2005-09-20
    • US10024931
    • 2001-12-19
    • Chad Byron Moore
    • Chad Byron Moore
    • C03B37/025C03B37/026C03B37/03C03B37/14C03B37/15C03B37/16C03C17/00C03C27/06G02F1/133G09G3/28G09G3/36H01J9/24H01J11/00
    • H01J11/00C03B37/025C03B37/026C03B37/03C03B37/14C03B37/15C03B37/16C03C17/007C03C27/06G02F1/13334H01J9/241H01J2211/36H01J2211/38
    • A full color fiber plasma display device includes two glass plates sandwiched around a top fiber array and a bottom fiber array. The top and bottom fiber arrays are substantially orthogonal and define a structure of the display, with the top fiber array disposed on a side facing towards a viewer. The top fiber array includes identical top fibers, each top fiber including two sustain electrodes located near a surface of the top fiber on a side facing away from the viewer. A thin dielectric layer separates the sustain electrodes from the plasma channel formed by a bottom fiber array. The bottom fiber array includes three alternating bottom fibers, each bottom fiber including a pair of barrier ribs that define the plasma channel, an address electrode located near a surface of the plasma channel, and a phosphor layer coating on the surface of the plasma channel, wherein a luminescent color of the phosphor coating in each of the three alternating bottom fibers represents a subpixel color of the plasma display. Each subpixel is formed by a crossing of one top fiber and one corresponding bottom fiber. The plasma display is hermetically sealed with a glass frit. The sustain and address electrodes are brought out through the glass frit for direct connection to a drive control system.
    • 全色光纤等离子体显示装置包括夹在顶部光纤阵列和底部光纤阵列之间的两个玻璃板。 顶部和底部光纤阵列基本上是正交的并且限定了显示器的结构,顶部光纤阵列设置在面向观察者的一侧。 顶部光纤阵列包括相同的顶部光纤,每个顶部光纤包括两个维持电极,位于靠近观察者的一侧的顶部光纤的表面附近。 薄介电层将维持电极与由底部光纤阵列形成的等离子体通道分离。 底部纤维阵列包括三个交替的底部纤维,每个底部纤维包括限定等离子体通道的一对阻挡肋,位于等离子体通道表面附近的寻址电极和在等离子体通道的表面上的荧光体层, 其中,所述三个交替的底部纤维中的每一个中的所述荧光体涂层的发光颜色表示所述等离子体显示器的子像素颜色。 每个子像素由一个顶部光纤和一个对应的底部光纤的交叉形成。 等离子体显示器用玻璃料气密密封。 维持电极和寻址电极通过玻璃料引出,用于直接连接到驱动控制系统。
    • 18. 发明申请
    • Apparatus for guiding continuous fibers
    • 用于引导连续纤维的装置
    • US20030046961A1
    • 2003-03-13
    • US09952745
    • 2001-09-13
    • Michael H. Jander
    • C03B037/16
    • B65H51/14C03B37/03C03B37/16Y10T83/4795Y10T83/4838
    • The present invention is directed towards an apparatus for guiding continuous materials. In one embodiment of the invention, the apparatus comprises first and second conveyors, each comprising a continuous conveyor belt carried by a set of pulleys including a drive pulley and an idler pulley. The conveyor belts have opposing inner surfaces that are oriented to travel substantially parallel to one another to sandwich continuous materials therebetween. The ratio of the diameters of the idler pulleys to the drive pulleys is greater than about 8:1. In another embodiment of the invention, a chopper is provided. The chopper comprises a cutting roll and a cot member defining a nip region therebetween. The cutting roll has an axis of rotation that is aligned substantially parallel to an axis of rotation of a cot member. The small turning radii permit the conveyor belts to extend within the nip region.
    • 本发明涉及一种用于引导连续材料的装置。 在本发明的一个实施例中,该装置包括第一和第二输送机,每个输送机包括由包括驱动滑轮和惰轮的一组滑轮承载的连续输送带。 输送带具有相对的内表面,该内表面被定向成基本上彼此平行地行进以夹持其间的连续材料。 惰轮与驱动皮带轮的直径之比大于约8:1。 在本发明的另一个实施例中,提供了一个斩波器。 切碎机包括切割辊和在其之间限定夹持区域的婴儿床。 切割辊具有基本上平行于婴儿床的旋转轴线对齐的旋转轴线。 小的转动半径允许输送带在压区内延伸。
    • 19. 发明授权
    • Lost glass process used in making display
    • 丢失的玻璃工艺用于制作展示
    • US06431935B1
    • 2002-08-13
    • US09299394
    • 1999-04-26
    • Chad Byron Moore
    • Chad Byron Moore
    • H01J924
    • H01J11/00C03B37/025C03B37/026C03B37/03C03B37/14C03B37/16C03C27/06G02F1/13334H01J9/241H01J2211/36H01J2211/38
    • A process for the fabrication of a fiber-based information display using a lost glass process includes drawing a fiber from a preform composed of at least two different glass compositions, where one of the compositions is a dissolvable glass, and removing the dissolvable glass with a liquid solution to change a cross-sectional shape of the drawn fiber. The lost glass process can be used to create an exposed wire electrode, where the drawn fiber contains a wire electrode that is exposed when the dissolvable glass is removed. The lost glass process can also be used to hold the shape and a tight tolerance of the drawn fiber. The cross-sectional shape of the fibers created using the lost glass process are suitable for use in an information display, such as plasma emissive displays, plasma addressed liquid crystal displays, and field emissive displays.
    • 用于制造使用失去玻璃工艺的基于纤维的信息显示的方法包括从由至少两种不同的玻璃组合物组成的预制件中拉伸纤维,其中一种组合物是可溶解的玻璃,并且用 液体溶液以改变拉伸纤维的横截面形状。 可以使用失去的玻璃工艺来产生暴露的线电极,其中拉伸的纤维包含当去除可溶解玻璃时暴露的线电极。 丢失的玻璃工艺也可以用于保持拉伸的纤维的形状和紧的公差。 使用失落玻璃工艺制造的纤维的横截面形状适用于诸如等离子体发射显示器,等离子体寻址液晶显示器和场发射显示器之类的信息显示。
    • 20. 发明授权
    • Fiberglass cutting apparatus and method
    • 玻璃纤维切割设备及方法
    • US5954278A
    • 1999-09-21
    • US52587
    • 1998-03-31
    • Bobby Ben BennettJames Charles Haas
    • Bobby Ben BennettJames Charles Haas
    • C03B37/16D01G1/04B02C18/06
    • C03B37/16D01G1/04
    • Fiberglass filament waste is cut into segments with an apparatus comprised of a feeder that includes a cutting roller having a rotatable shaft with a plurality of spaced circular cutting blades mounted thereon, and a waste feeder having a discharge opening adjacent said roller for conveying said waste into engagement with the periphery of the blades, the feeder including at first and second spaced surfaces extending from a waste inlet opening to a waste discharge opening, at least one of the surfaces being pivotal adjacent the waste inlet opening to expand the discharge opening under pressure from waste being conveyed between the surfaces. At least one of the surfaces, which may be a surface of a conveyor belt, is moveable toward the discharge opening, while the other surface may be stationary, or move toward the discharge opening. In one embodiment, the lower surface moves toward the discharge opening, while the upper surface moves away from the discharge opening to equalize the volume of waste being fed. A slotted stationary plate supports the waste during cutting.
    • 玻璃纤维细丝废料被切割成具有包括进料器的设备的设备,该设备包括具有安装在其上的多个间隔开的圆形切割刀片的可旋转轴的切割辊,以及与所述辊子相邻的排出口,用于将废物输送到 与叶片的周边接合,所述进料器包括从废物入口开口延伸到废物排放口的第一和第二隔开表面,至少一个表面在废物入口开口附近枢转,以在压力下膨胀排出口 废物在表面之间传送。 可以是输送带表面的表面中的至少一个能够朝向排出口移动,而另一个表面可以是静止的,或者朝向排出口移动。 在一个实施例中,下表面朝向排出口移动,同时上表面远离排放口移动以均衡所供给的废物的体积。 开槽固定板在切割过程中支撑废物。