Process and apparatus for manufacturing aluminum laminally filled
plastic pellets for shielding electromagnetic interference
    1.
    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
    2.
    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。

    Two-in-one light guide means
    3.
    发明申请
    Two-in-one light guide means 审中-公开
    二合一导光装置

    公开(公告)号:US20080123192A1

    公开(公告)日:2008-05-29

    申请号:US11605174

    申请日:2006-11-29

    Applicant: Ching-Bin Lin

    Inventor: Ching-Bin Lin

    CPC classification number: G02B5/045 G02B5/0215 G02B5/0284 G02B6/0038

    Abstract: A light guide device includes a light guide plate; and a reflection member, having reflective diffusing structure formed on the reflection member, and integrally formed in a lower or bottom portion of the light guide plate in order for preventing light loss, for increasing light output efficiency and for lowering production cost.

    Abstract translation: 导光装置包括导光板; 以及反射构件,其具有形成在反射构件上的反射扩散结构,并且一体地形成在导光板的下部或底部,以防止光损失,从而提高光输出效率并降低生产成本。

    Multiple-layer optical film intermediated with corrugated pattern layer and process thereof
    4.
    发明申请
    Multiple-layer optical film intermediated with corrugated pattern layer and process thereof 审中-公开
    波纹图案层中间层的多层光学膜及其工艺

    公开(公告)号:US20070279751A1

    公开(公告)日:2007-12-06

    申请号:US11447515

    申请日:2006-06-05

    Applicant: Ching-Bin Lin

    Inventor: Ching-Bin Lin

    CPC classification number: G02B5/124

    Abstract: A multiple-layer optical film comprises: a base layer; a middle alternating protrusion and recess pattern layer formed on the base layer; and an upper prismatic layer formed on the middle pattern layer, thereby forming a multiple-layer optical layer having its optical property and mechanical property simultaneously enhanced as effected by the middle pattern layer as interlocked in between the upper prismatic layer and the base layer.

    Abstract translation: 多层光学膜包括:基底层; 形成在所述基底层上的中间交替突起和凹陷图案层; 以及形成在中间图案层上的上部棱镜层,从而形成具有由中间图案层同时增强的其光学性质和机械性能的多层光学层,如在上部棱镜层和基底层之间互锁。

    Synergetically enhanced optical film and process for making same
    5.
    发明申请
    Synergetically enhanced optical film and process for making same 审中-公开
    协同增强的光学薄膜和制造方法

    公开(公告)号:US20070195421A1

    公开(公告)日:2007-08-23

    申请号:US11358349

    申请日:2006-02-22

    Applicant: Ching-Bin Lin

    Inventor: Ching-Bin Lin

    CPC classification number: G02B5/045 B29D11/0074

    Abstract: An optical film includes: a structured-surface layer and a supporting layer bonded with the structured-surface layer, wherein the structured-surface layer includes a plurality of upper prismatic or structured protrusions formed on an upper portion of the structured-surface layer and having a plurality of lower prismatic protrusions or lower protrusions formed on a bottom portion of the structured-surface layer. The supporting layer is recessed with a plurality of notches to be engaged with the lower protrusions of the structured-surface layer to thereby firmly interlock the structured-surface layer with the supporting layer to increase the film strength and also to increase the brightness of the optical film.

    Abstract translation: 光学膜包括:结构化表面层和与所述结构化表面层结合的支撑层,其中所述结构化表面层包括形成在所述结构化表面层的上部上的多个上部棱柱形或结构化突起,并且具有 形成在结构化表面层的底部上的多个下棱柱形突起或下突起。 支撑层凹陷有多个凹口以与结构化表面层的下突起接合,从而将结构化表面层与支撑层牢固地互锁,以增加膜强度并且还增加光学器件的亮度 电影。

    Microfabrication process for making microstructures as geometrically miniaturized from three-dimensional orientations
    6.
    发明授权
    Microfabrication process for making microstructures as geometrically miniaturized from three-dimensional orientations 失效
    用于使微结构从三维取向几何尺寸变小的微加工工艺

    公开(公告)号:US06221227B1

    公开(公告)日:2001-04-24

    申请号:US09454066

    申请日:1999-11-02

    CPC classification number: C25D1/003 C25D1/20

    Abstract: A microfabrication process comprises the swelling of at least a hydrophilic polymer in order for shrinking each cavity size of a micromachined microstructure pattern from three-dimensional orientations, whereby upon filling or deposition of metal into each cavity of the pattern when performing an electroforming step, a supermini microstructure with slim, fine, thin and small size can be obtained as geometrically miniaturized from three-dimensional orientations.

    Abstract translation: 微加工方法包括使至少亲水性聚合物溶胀,以便从三维取向收缩微加工微结构图案的每个腔体尺寸,由此当进行电铸步骤时将金属填充或沉积到图案的每个腔中时, 从三维取向几何尺寸可以获得具有纤细,细,薄和小尺寸的超微结构。

    Process for making metal-matrix composites reinforced by ultrafine
reinforcing materials products thereof
    7.
    发明授权
    Process for making metal-matrix composites reinforced by ultrafine reinforcing materials products thereof 失效
    通过超细增强材料制成金属基复合材料的方法

    公开(公告)号:US5401338A

    公开(公告)日:1995-03-28

    申请号:US103049

    申请日:1993-07-28

    Applicant: Ching-Bin Lin

    Inventor: Ching-Bin Lin

    CPC classification number: C22B9/05 B22D1/00

    Abstract: A process for making metal-matrix composite includes adding ultrafine reinforcing material having a particle size as fine as 0.05 .mu.m into the metal alloy matrix in a refining furnace to be homogeneously dispersed in the matrix for producing metal-matrix composite by a refining process, which is degassed to remove gases to eliminate porosity in the composite, thereby producing metal-matrix composite having improved mechanical properties.

    Abstract translation: 制造金属基复合体的方法包括在精炼炉中将金属合金基体中的粒径为0.05μm的超细增强材料加入到精炼炉中均匀分散在基体中,通过精制工艺制造金属基质复合体, 其被脱气以除去气体以消除复合材料中的孔隙,从而产生具有改善的机械性能的金属基复合材料。

    Optical device having light diffusing paper incorporated therewith
    8.
    发明申请
    Optical device having light diffusing paper incorporated therewith 审中-公开
    具有结合光漫射纸的光学装置

    公开(公告)号:US20090279018A1

    公开(公告)日:2009-11-12

    申请号:US12151493

    申请日:2008-05-08

    Applicant: Ching-Bin Lin

    Inventor: Ching-Bin Lin

    CPC classification number: G02B6/0051

    Abstract: An optical device includes a light diffusing paper as integrally formed, secured, bonded or adhered to a surface of an optical element, which includes: an optical film, a brightness enhancement film (BEF), a display, a light guide, to thereby form an optical device with increased light uniformity.

    Abstract translation: 光学装置包括一体形成的光漫射纸,固定,粘合或粘附到光学元件的表面,其包括:光学膜,亮度增强膜(BEF),显示器,导光体,从而形成 具有增加的光均匀性的光学装置。

    Nano water paint having nano particles surfaced with self-assembly monolayers
    9.
    发明申请
    Nano water paint having nano particles surfaced with self-assembly monolayers 审中-公开
    具有纳米颗粒的纳米水漆用自组装单层表面

    公开(公告)号:US20060063873A1

    公开(公告)日:2006-03-23

    申请号:US10942512

    申请日:2004-09-17

    CPC classification number: C08K9/04 C08K3/22 C08K9/02 C09D5/028 C09D7/62

    Abstract: A process for preparing nano water paint comprising the steps of: A. Modifying the chemical property on the surface of nano particles by hydroxylation for forming hydroxyl groups at high density on the surface of the nano particles; B. Forming self-assembly monolayers of low surface energy compounds on the nano particles by substituting the self-assembly monolayers for the hydroxyl groups on the nano particles for disintegrating the clusters of nano particles and for forming the self-assembly monolayers homogeneously on the surface of the nano particles; and C. Blending or mixing the nano particles having self-assembly monolayers formed thereon with organic paint to form nano water paint.

    Abstract translation: 一种制备纳米水涂料的方法,包括以下步骤:A.通过羟基化改性纳米颗粒表面的化学性质,以在纳米颗粒的表面上以高密度形成羟基; B.通过用自组装单层代替纳米颗粒上的羟基来形成纳米颗粒上的低表面能化合物的自组装单层,以分散纳米颗粒簇并在表面上均匀形成自组装单层 的纳米颗粒; 和C.将其上形成有自组装单层的纳米颗粒与有机涂料混合或混合以形成纳米水漆。

    Guidably-recirculated heat dissipating means for cooling central processing unit
    10.
    发明授权
    Guidably-recirculated heat dissipating means for cooling central processing unit 失效
    用于冷却中央处理单元的引导式循环散热装置

    公开(公告)号:US06466442B2

    公开(公告)日:2002-10-15

    申请号:US09773327

    申请日:2001-01-29

    Applicant: Ching-Bin Lin

    Inventor: Ching-Bin Lin

    Abstract: A heat dissipating device includes: a barrel having a plurality of fins formed on the barrel and having a buckle for fastening the barrel to a base board of a central processing unit (CPU) to conduct heat from CPU towards the barrel; a cooling fan contiguous to the fins and the barrel for cooling the fins and the barrel; a vaporizable coolant filled in the barrel; a guiding device provided in the barrel for guiding and ejecting the vapor as vaporized from a liquid coolant when absorbing the heat from CPU towards a cooled inside wall of the barrel to be condensed as a liquid coolant; and a capillary device formed on the inside wall for capillarily osmetically draining the liquid coolant towards a bottom of the barrel for enhancing a liquid-vapor two phase recirculation of the coolant for efficiently dissipating heat from the CPU.

    Abstract translation: 散热装置包括:筒体,其具有形成在筒体上的多个翅片,并具有用于将筒体紧固到中央处理单元(CPU)的基板的带扣,以将热量从CPU传导到筒体; 与翅片相邻的冷却风扇和用于冷却翅片和筒体的筒体; 填充在桶中的可蒸发的冷却剂; 引导装置,其设置在所述筒体中,用于当将液体冷却剂从所述液体冷却剂吸收到所述筒体的冷却内壁中以从所述液体冷却剂中蒸发时引导和喷出; 以及形成在内壁上的毛细管装置,用于将液体冷却剂密封地排出到筒的底部,用于增强冷却剂的液体 - 蒸汽两相再循环,以有效地从CPU散热。

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