Seamless knit belt
    154.
    发明授权
    Seamless knit belt 失效
    无缝针织带

    公开(公告)号:US08607593B2

    公开(公告)日:2013-12-17

    申请号:US12660488

    申请日:2010-02-26

    Applicant: Eun Kyung Lee

    Inventor: Eun Kyung Lee

    CPC classification number: D04B1/225 D04B1/12

    Abstract: A method for making a seamless knit belt including forming two longitudinal rib sections that are formed from a different material than the body of the belt. The rib sections are formed during the tubular knitting process and then the body of the knit composite is run through a polymeric treating system. After the body is treated, the rib sections are trimmed from the edges and the resulting product is a coated seamless knit belt.

    Abstract translation: 一种用于制造无缝针织带的方法,包括形成由与带的主体不同的材料形成的两个纵向肋部分。 在管状编织过程中形成肋部分,然后针织复合材料的主体穿过聚合物处理系统。 在处理身体后,从边缘修剪肋部分,并且所得到的产品是涂覆的无缝针织带。

    Method of manufacturing silicon optoelectronic device, silicon optoelectronic device manufactured by the method, and image input and/or output apparatus using the silicon optoelectronic device
    156.
    发明授权
    Method of manufacturing silicon optoelectronic device, silicon optoelectronic device manufactured by the method, and image input and/or output apparatus using the silicon optoelectronic device 有权
    制造硅光电子器件的方法,通过该方法制造的硅光电子器件,以及使用硅光电子器件的图像输入和/或输出装置

    公开(公告)号:US08354286B2

    公开(公告)日:2013-01-15

    申请号:US10758136

    申请日:2004-01-16

    Abstract: A method of manufacturing a silicon optoelectronic device, a silicon optoelectronic device manufactured by the method, and an image input and/or output apparatus including the silicon optoelectronic device are provided. The method includes preparing an n- or p-type silicon-based substrate, forming a microdefect pattern along a surface of the substrate by etching, forming a control film with an opening on the microdefect pattern, and forming a doping region on the surface of the substrate having the microdefect pattern in such a way that a predetermined dopant of the opposite type to the substrate is injected onto the substrate through the opening of the control film to be doped to a depth so that a photoelectric conversion effect leading to light emission and/or reception by quantum confinement effect in the p-n junction occurs. The silicon optoelectronic device has superior light-emitting efficiency, can be used as at least one of a light-emitting device and a light-receiving device, and has high wavelength selectivity. In addition, the silicon optoelectronic device panel having the two-dimensional array of the silicon optoelectronic devices can be applied in the image input and/or output apparatus capable of directly displaying an image and/or inputting optical information in a screen.

    Abstract translation: 提供一种制造硅光电子器件的方法,通过该方法制造的硅光电子器件,以及包括硅光电子器件的图像输入和/或输出设备。 该方法包括制备n型或p型硅基衬底,通过蚀刻形成沿衬底表面的微观图案,在微缺陷图案上形成具有开口的控制膜,并在 具有微观图案的衬底,使得通过控制膜的开口将与衬底相反类型的预定掺杂剂注入到衬底上以被掺杂到深度,使得导致发光的光电转换效应和 /或在pn结中发生量子限制效应的接收。 硅光电子器件具有优异的发光效率,可以用作发光器件和光接收器件中的至少一种,并且具有高波长选择性。 此外,具有硅光电子器件的二维阵列的硅光电子器件面板可以应用于能够直接在屏幕中显示图像和/或输入光学信息的图像输入和/或输出设备。

    Reinforced belt for powerturn applications
    158.
    发明授权
    Reinforced belt for powerturn applications 有权
    强力皮带用于动力应用

    公开(公告)号:US08192317B2

    公开(公告)日:2012-06-05

    申请号:US11603739

    申请日:2006-11-22

    CPC classification number: B65G15/34 B65G15/02 Y10T442/3179 Y10T442/3472

    Abstract: A reinforced conveyor belt has a plurality of fabric plies. One of the plies is an interwoven ply comprised of two layers of weft cords and a plurality of warp cords interweaving through the two layers of weft cords. Each warp cord has the following repeating weave pattern of passing over at least two but not more than five weft cords in the first weft layers, passing between the two weft layers for a distance of at least two weft cords, and passing under at least two but nor more than five weft cords in the second weft layer.

    Abstract translation: 增强输送带具有多个织物层。 其中一层是由两层纬纱线组成的交织层,和穿过两层纬纱线的多根经线。 每个经线具有以下重复编织图案,其在第一纬纱层中穿过至少两根但不超过五根纬纱线,在两根纬纱层之间穿过至少两根纬线的距离,并穿过至少两根纬纱 但在第二纬纱层中也不得超过五根纬线。

    Optical film having graded refractive index and method of manufacturing the same
    159.
    发明授权
    Optical film having graded refractive index and method of manufacturing the same 有权
    具有分级折射率的光学薄膜及其制造方法

    公开(公告)号:US08053070B2

    公开(公告)日:2011-11-08

    申请号:US12042843

    申请日:2008-03-05

    Abstract: Disclosed are an optical film having a graded refractive index and a method of manufacturing the same. The optical film includes one or more antireflection films composed of a mesoporous material having a plurality of pores of a uniform size, and the pores of the mesoporous material are filled with air or a filler having a refractive index different from that of the mesoporous material, and thus the volume ratio of mesoporous material to filler in the pores thereof is controlled, thereby obtaining a desired magnitude of effective refractive index and ensuring a refractive index distribution in which the refractive indexes sequentially change, resulting in high antireflection performance. The method of manufacturing the optical film may be conducted using a nanowire growing technique, thus making it easy to realize mass production.

    Abstract translation: 公开了具有渐变折射率的光学膜及其制造方法。 光学膜包括由具有多个尺寸均匀的孔的介孔材料构成的一个或多个抗反射膜,并且中空材料的孔填充有空气或具有与介孔材料的折射率不同的折射率的填料, 从而控制了介孔材料与填料在其孔中的体积比,从而获得有效折射率的期望量值,并确保折射率依次变化的折射率分布,导致高抗反射性能。 可以使用纳米线生长技术进行制造光学膜的方法,从而容易实现批量生产。

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