Fabrication Method of Nanoimprint Mold Core
    21.
    发明申请
    Fabrication Method of Nanoimprint Mold Core 审中-公开
    纳米压印模芯的制作方法

    公开(公告)号:US20070166874A1

    公开(公告)日:2007-07-19

    申请号:US11626961

    申请日:2007-01-25

    CPC classification number: G02B6/124 B82Y10/00 B82Y20/00 B82Y30/00

    Abstract: A method for fabricating a nanoimprint mold core is disclosed. The method includes providing a substrate; forming on the substrate an amorphous thin film, which is transformed into a crystalline thin film upon receipt of energy, the crystalline thin film having physical and chemical characteristics different from those of the amorphous thin film; applying the energy onto a predetermined region of the amorphous thin film, to transform the amorphous thin film within the predetermined region into the crystalline thin film; etching the illuminated amorphous film, which has crystalline mark on amorphous film, and at least partially removing the area of remained amorphous thin films; performing an imprinting process on the substrate, which has the etched amorphous thin films formed; and performing a molding releasing process on the substrate, so as to obtain the nanoimprint mold core.

    Abstract translation: 公开了一种制造纳米压印模芯的方法。 该方法包括提供基板; 在基板上形成无定形薄膜,其在接收到能量时转变成晶体薄膜,该晶体薄膜具有与非晶薄膜不同的物理和化学特性; 将能量施加到非晶薄膜的预定区域上,将预定区域内的非晶薄膜转变成晶体薄膜; 蚀刻在非晶膜上具有结晶标记的照射非晶膜,并且至少部分去除剩余的非晶态薄膜的面积; 在形成有蚀刻的非晶质薄膜的基板上进行压印处理; 在基板上进行成型脱模工序,得到纳米压印模芯。

    Microfabrication process for making microstructures having high aspect ratio
    22.
    发明授权
    Microfabrication process for making microstructures having high aspect ratio 失效
    用于制造具有高纵横比的微结构的微加工方法

    公开(公告)号:US06251248B1

    公开(公告)日:2001-06-26

    申请号:US09422092

    申请日:1999-10-15

    Applicant: Ching-Bin Lin

    Inventor: Ching-Bin Lin

    CPC classification number: C25D1/00 C25D1/20

    Abstract: A microfabrication process for making a microstructure product comprises: micromachining a polymer substrate for forming a three-dimensional microstructure pattern with deep cavities; shrinking and minimizing the diameter or width of each cavity of the microstructure pattern by steadily swelling the polymer, which is prefixed on a cathode of an electroforming system, by saturating the electrolyte solution into the polymer; electroforming in the electroforming system electrically connected with an anode and the cathode for filling metal in the cavities in the polymer; and desorption of the electrolyte from the polymer to shrink the polymer to be separated from an electroformed microstructure product, and demolding for obtaining the microstructure product having a high aspect ratio of 100 or even higher. The diameter or width of each cavity is shrunk to be smaller, thereby increasing the aspect ratio of the microstructure product.

    Abstract translation: 用于制造微结构产品的微加工方法包括:微加工聚合物基材以形成具有深空腔的三维微结构图案; 通过使电解质溶液饱和到聚合物中,使聚合物稳定地膨胀并在电铸系统的阴极上预先固定,从而使微结构图案的每个空腔的直径或宽度最小化; 在与阳极和阴极电连接的电铸系统中电铸在聚合物中的空腔中填充金属; 并从聚合物中解吸电解质以收缩待分离的电铸微结构产品的聚合物,以及脱模以获得具有100或更高的高纵横比的微结构产品。 每个空腔的直径或宽度收缩较小,从而增加微结构产品的纵横比。

    Process and apparatus for manufacturing aluminum laminally filled
plastic pellets for shielding electromagnetic interference
    23.
    发明授权
    Process and apparatus for manufacturing aluminum laminally filled plastic pellets for shielding electromagnetic interference 失效
    制造用于屏蔽电磁干扰的铝层压填充塑料颗粒的方法和设备

    公开(公告)号:US5746956A

    公开(公告)日:1998-05-05

    申请号:US743447

    申请日:1996-11-01

    CPC classification number: B32B37/153 B29B9/04 B29C70/885 B32B2311/24

    Abstract: The present invention provides novel kind of aluminum laminally filled plastic pellets and a process and apparatus for manufacturing the plastic pellets. The process includes coating the upper and lower surfaces of each of the substantially parallel lined aluminum foil layers with a coupling agent; drying the aluminum foil layers; introducing a molten plastic matrix to the space between each two aluminum foil layers and the outer surfaces of the most outside two aluminum foil layers to moisturize and bind the aluminum foil layers; reducing the thickness of the aluminum foil layers to form a continuous laminally filled plastic composite plate; and cooling and cutting the composite plate into aluminum laminally filled plastic pellets of a predetermined size. The aluminum contained in the plastic pellet maintains a high aspect ratio, therefore, reducing the loading amount of the aluminum required to provide good EMI shielding of the plastic pellets, while not adversely affeting the mechanical properties of the EMI plastic product.

    Abstract translation: 本发明提供了新型的层状铝填充塑料颗粒和用于制造塑料颗粒的方法和装置。 该方法包括用偶联剂涂覆每个基本上平行的内衬铝箔层的上表面和下表面; 干燥铝箔层; 将熔融塑料基体引入到两个铝箔层之间的空间和最外侧的两个铝箔层的外表面,以使铝箔层保湿和粘合; 减少铝箔层的厚度,形成连续的层叠填充塑料复合板; 并将复合板冷却并切割成预定尺寸的铝层压填充的塑料颗粒。 包含在塑料颗粒中的铝保持高纵横比,因此,减少了为塑料颗粒提供良好的EMI屏蔽所需的铝的负载量,同时不会不利地影响EMI塑料制品的机械性能。

    Process for making metallized plastic molding pellets for shielding
electromagnetic interference
    24.
    发明授权
    Process for making metallized plastic molding pellets for shielding electromagnetic interference 失效
    制造用于屏蔽电磁干扰的金属化塑料成型颗粒的方法

    公开(公告)号:US5531851A

    公开(公告)日:1996-07-02

    申请号:US431137

    申请日:1995-04-28

    Abstract: A process for making metallized plastic molding pellets comprising: first metallizing a laminated plastic sheet by sandwiching an electrically conductive metal foil in between two plastic films; secondly slicing the metallized laminated plastic sheet into a plurality of metallized plastic strips; thirdly wetting and binding the metallized plastic strips, which are radially arranged, with a thermoplastic resin matrix to form a metallized plastic bar by pultrusion processing; and finally cutting the pultruded metallized bar to obtain homogeneously metallized plastic pellets for making effective EMI shields.

    Abstract translation: 一种用于制造金属化塑料模制粒料的方法,包括:首先通过将导电金属箔夹在两个塑料膜之间来对金属化层压塑料片进行金属化; 其次将金属化层压塑料片切割成多个金属化塑料条; 第三次将热塑性树脂基体径向布置的金属化塑料条进行润湿和粘合,通过拉挤成型加工形成金属化塑料棒; 并最终切割拉挤的金属化棒以获得均匀金属化的塑料颗粒,以制造有效的EMI屏蔽。

    Cleaner structure for toilet tank
    25.
    发明授权
    Cleaner structure for toilet tank 有权
    马桶水箱清洁结构

    公开(公告)号:US08806668B2

    公开(公告)日:2014-08-19

    申请号:US13173318

    申请日:2011-06-30

    CPC classification number: E03D9/02 E03D9/038

    Abstract: A cleaner structure includes a main body, a forced element and an elastic element. The main body includes a first casing, a floating element, a second casing, first perforations and second perforations. The floating element is disposed within the first casing. The second casing is connected with the first casing for storing a cleaning agent. The elastic element is connected with the first casing and the forced element. During the water level of the liquid inside the toilet tank is changed from a low level to a high level, the second casing is at least partially immersed in the liquid, so that the cleaning agent is released to the liquid.

    Abstract translation: 清洁结构包括主体,强制元件和弹性元件。 主体包括第一壳体,浮动元件,第二壳体,第一穿孔和第二穿孔。 浮动元件设置在第一壳体内。 第二壳体与用于存储清洁剂的第一壳体连接。 弹性元件与第一壳体和强制元件连接。 在马桶水箱内的液体的水位从低位变化到高水位的同时,第二壳体至少部分地浸没在液体中,使清洗剂释放到液体中。

    Optical film having multi-story prisms and manufacturing process thereof
    28.
    发明授权
    Optical film having multi-story prisms and manufacturing process thereof 失效
    具有多层棱镜的光学薄膜及其制造方法

    公开(公告)号:US07529048B2

    公开(公告)日:2009-05-05

    申请号:US11366870

    申请日:2006-03-03

    Applicant: Ching-Bin Lin

    Inventor: Ching-Bin Lin

    CPC classification number: G02B5/045 G02B5/04

    Abstract: An optical film includes a supporting layer and a structured-surface layer having a plurality of prims juxtapositionally formed on the supporting layer, each prim including a lower prism element bonded with the supporting layer and at least one upper prism element integrally superimposed on the lower prism element to increase the prism height in order to pick up sideward refracted light to reduce light loss in order to enhance brightness of the optical film.

    Abstract translation: 光学膜包括支撑层和结构化表面层,其具有并置形成在支撑层上的多个原子,每个基体包括与支撑层结合的下部棱镜元件和与下部棱镜一体地叠加的至少一个上部棱镜元件 元件以增加棱镜高度,以便拾取侧向折射光以减少光损失,以增强光学膜的亮度。

    Optical film having light-concentrating and light-scattering structured layer
    29.
    发明申请
    Optical film having light-concentrating and light-scattering structured layer 审中-公开
    具有光聚集和光散射结构层的光学膜

    公开(公告)号:US20090080078A1

    公开(公告)日:2009-03-26

    申请号:US11903471

    申请日:2007-09-24

    Applicant: Ching-Bin Lin

    Inventor: Ching-Bin Lin

    CPC classification number: B29D11/0074 G02B5/0231 G02B5/0242 G02B5/0278

    Abstract: An optical film comprises: a transparent substrate; and a hybrid structured layer formed on the transparent substrate and including an upper structured portion composed of a plurality of light-concentrating units, such as prisms, formed on an upper portion of the hybrid structured layer for light concentrating, and a light scattering portion formed on a lower or bottom portion of the hybrid structured layer for light diffusing, thereby forming an optical film for simultaneously enhancing the brightness and light uniformity of the optical film and the optical devices made therefrom.

    Abstract translation: 光学膜包括:透明基板; 以及形成在所述透明基板上的混合结构化层,并且包括形成在所述用于聚光的所述混合结构化层的上部的多个聚光单元(例如棱镜)构成的上部结构部分和形成的光散射部分 在用于光漫射的混合结构层的下部或底部上,由此形成用于同时提高光学膜及由其制成的光学器件的亮度和光均匀性的光学膜。

    Light guide means as dually effected by light concentrating and light diffusing
    30.
    发明申请
    Light guide means as dually effected by light concentrating and light diffusing 审中-公开
    导光装置通过光聚焦和光漫射双重影响

    公开(公告)号:US20080151375A1

    公开(公告)日:2008-06-26

    申请号:US11644667

    申请日:2006-12-26

    Applicant: Ching-Bin Lin

    Inventor: Ching-Bin Lin

    CPC classification number: G02B6/0038 G02B6/0036 G02B6/0041

    Abstract: A light guide device comprises: a light guide plate made of transparent materials; and a light concentrating and diffusing structural portion integrally formed on an upper or outer portion of the light guide plate adjacent to a light-outgoing surface of the light guide plate in order to enhance the light concentrating effect and the light diffusing effect of the light guide plate.

    Abstract translation: 导光装置包括:由透明材料制成的导光板; 以及与导光板的出光面相邻的导光板的上部或外部一体地形成的聚光扩散结构部,以增强导光板的聚光效果和光漫射效果 盘子。

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