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    • 1. 发明专利
    • 酸素混合化粧品容器
    • JP2019511948A
    • 2019-05-09
    • JP2018562483
    • 2016-03-25
    • ノ イェ ウNOH, Ye Wooノ ギ ウNOH, Ki Woo
    • ノ イェ ウノ ギ ウ
    • B65D81/32A61K8/02A61K8/19A45D34/00
    • 本発明は、酸素カプセルと、化粧品容器本体の下部に設けられる酸素供給キャップの構造を改善して、酸素供給キャップの結合時、酸素を同時に噴き出させ、また、酸素供給キャップの構成品を単純化して、原価を節減するとともに、組立性を向上させ、さらに、酸素供給キャップに取り付けられる酸素カプセルを容易に入れ替えることができるようにした酸素混合化粧品容器に関する。本発明は、化粧品が収容される上部が開放した貯蔵空間(11)を有する本体(10)と、前記本体(10)の上部に結合され、ノズル(21a)が形成されたポンピング部(21)を有する蓋(20)と、前記本体(10)の下部の中央に気密に取り付けられ、下部に突出した破裂棒(31)を有する弁(30)と、前記弁(30)の破裂棒(31)で破裂される破裂膜(41)を有し、本体(10)の貯蔵空間(11)に酸素を供給する酸素カプセル(40)と、を備え、前記本体(10)の下部に本体(10)よりも小さな外径を有して一体で形成され、弁(30)の下部と酸素カプセル(40)の上部を取り囲む連結管(50)と、前記連結管(50)に分離可能に結合され、酸素を噴き出させるように、内周の下部に放射状に突出した多数の固定片(61)を介して酸素カプセル(40)が挟み込まれるカプセル取付部(62)を有する酸素供給キャップ(60)と、をさらに備える。 【選択図】図2
    • 3. 发明公开
    • OXYGEN-MIXING COSMETIC CONTAINER
    • EP3434141A1
    • 2019-01-30
    • EP16895573.0
    • 2016-03-25
    • Noh, Ye WooNoh, Ki Woo
    • Noh, Ye WooNoh, Ki Woo
    • A45D34/00A45D33/02B65D51/28
    • The present invention relates to an oxygen-mixing cosmetic container wherein the structure of an oxygen supply cap, which is installed beneath an oxygen cap and a cosmetic container body, is improved such that, when the oxygen supply cap is coupled, oxygen is ejected simultaneously, components of the oxygen supply cap are simplified such that, besides reducing the material cost, the same can be assembled more efficiently, and the oxygen capsule, which is mounted on the oxygen supply cap, can be easily replaced. The present invention comprises: a body (10) having a storing space (11), the upper portion of which is open, such that a cosmetic is contained therein; a cap (20) coupled to the upper portion of the body (10), the cap (20) having a pumping portion (21) in which a nozzle (21a) is formed; a valve (30) hermetically mounted at the center of the lower portion of the body (10), the valve (30) having a fracture rod (31) that protrudes downward; and an oxygen capsule (40) having a fracture film (41), which is fractured by the fracture rod (31) of the valve (30), so as to supply oxygen into the storing space (11) of the body (10). The present invention further comprises: a connecting tube (50) integrally formed on the lower portion of the body (10) so as to have an outer diameter smaller than that of the body (10), thereby surrounding the lower portion of the valve (30) and the upper portion of the oxygen capsule (40); and an oxygen supply cap (60) separably coupled to the connecting tube (50), the oxygen supply cap (60) having a capsule mounting portion (62) to which the oxygen capsule (40) is fitted through multiple fixing pieces (61) radially protruding from the inner-diameter lower portion such that oxygen is ejected.
    • 6. 发明申请
    • HERMETICALLY SEALED PACKAGE CONTAINER FOR OPTICAL MODULE
    • 用于光学模块的密封封装容器
    • WO2003025652A1
    • 2003-03-27
    • PCT/KR2002/001729
    • 2002-09-16
    • RAPIDUS, INC.YOO, Myoung KiLEE, Seung IckHAN, Ki WooWON, Dong Mook
    • YOO, Myoung KiLEE, Seung IckHAN, Ki WooWON, Dong Mook
    • G02B6/42
    • G02B6/4201G02B6/4248G02B6/4251G02B6/4253G02B6/4255G02B6/4267G02B6/4268G02B6/4271G02B6/428
    • In order to minimize thermal deformation of a package caused by joining, brazing or soldering process between different materials, exterior environments or on/off operation of an optical module, the present invention provides a hermetically sealed package container for optical module, comprising; a heat-dissipating bottom plate which an optical-semiconductor element including laser diode element, photodiode element and printed circuit board, and an electronic cooling element installed directly under the optical-semiconductor element for cooling the optical-semiconductor element are installed, wherein the bottom plate is made from tungsten-copper composite material and dissipates heat from the optical-semiconductor element and/or the electronic cooling element outside of the bottom surface of the package; a heat-dissipating frame perpendicular to the bottom plate for constituting the package wherein the frame is made from tungsten-copper composite material to form a one-body with the bottom plate and dissipates heat from the optical-semiconductor element and/or the electronic cooling element outside of the side surface of the package; a ceramic part for insulating the frame and/or the bottom plate from a lead frame incoming from outside for actuating the optical-semiconductor element; a pipe installed in the frame for transmitting/receiving optical signals from outside.
    • 为了最小化由不同材料之间的接合,钎焊或焊接工艺导致的包装材料的热变形,外部环境或光学模块的开/关操作,本发明提供一种用于光学模块的气密密封包装容器,包括: 安装了包括激光二极管元件,光电二极管元件和印刷电路板的光半导体元件和直接安装在用于冷却光半导体元件的光半导体元件下方的电子冷却元件的散热底板,其中底部 板由钨铜复合材料制成,并且从封装的底表面外部的光半导体元件和/或电子冷却元件散发热量; 用于构成封装的垂直于底板的散热框架,其中框架由钨 - 铜复合材料制成,以与底板形成一体并且散发来自光半导体元件的热量和/或电子冷却 元件外侧的表面; 用于使框架和/或底板与从外部进入的引线框架绝缘以致动光学半导体元件的陶瓷部件; 安装在框架中的用于从外部发送/接收光信号的管道。
    • 7. 发明申请
    • ELECTROSTATIC SPINNING EQUIPMENT AND METHOD OF PREPARING NANO FIBER USING THE SAME
    • 静电纺丝设备及其制备使用该纳米纤维的纳米纤维的方法
    • WO2005042813A1
    • 2005-05-12
    • PCT/KR2004/002765
    • 2004-10-29
    • CLEAN AIR TECHNOLOGY CORP.KIM, Sung-chulPARK, Ki-woo
    • KIM, Sung-chulPARK, Ki-woo
    • D01D5/00
    • D01D5/0069D01D5/0076D01D5/18
    • The present invention relates to an electrostatic spinning apparatus and a method for producing nanofibers using the same, and more particularly to an electrostatic spinning apparatus, which has the following advantages, as well as a method for producing nanofibers using the same: the generation of arc under high applied voltage between a nozzle and a collection electrode can minimized; mass production is possible; a film with a large width can be formed or a nonofiber surface with large width can be coated; a film with large width can be produced in one step; and discharge efficiency is increased so as to inlarge the spinning area of a polymer solution. In order to make the electrostatic spinning apparatus suitable for the mass production of nanofibers, the electrostatic spinning apparatus comprises an improved nozzle shape, a wire conductor, and a collection electrode coated with dielectric material.
    • 静电纺丝装置及其制造方法技术领域本发明涉及静电纺丝装置及使用该静电纺丝装置的纳米纤维的制造方法,更具体地说涉及具有以下优点的静电纺丝装置以及使用其的纳米纤维的制造方法: 在喷嘴和收集电极之间的高施加电压下可以最小化; 批量生产是可能的; 可以形成宽度大的膜,或者可以涂覆宽幅宽的无纺布表面; 一步可以生产出宽大的薄膜; 并且提高了排出效率,从而扩大了聚合物溶液的纺丝面积。 为了使静电纺丝装置适合于大量生产纳米纤维,静电纺丝装置包括改进的喷嘴形状,导线导体和涂有电介质材料的收集电极。