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    • 12. 发明授权
    • Hybrid air foil bearing and method of manufacture
    • 混合气垫轴承及其制造方法
    • US08500331B2
    • 2013-08-06
    • US12694262
    • 2010-01-26
    • Daejong KimAn Sung LeeYoung-Cheol Kim
    • Daejong KimAn Sung LeeYoung-Cheol Kim
    • F16C32/06F16C27/02
    • F16C17/024F16C43/02Y10T29/49639
    • An air foil bearing includes a top foil, one or more orifice tubes and two or more bump foil strips disposed within a housing. The top foil is forms a substantially circular shape having one or more sets of top foil orifice holes. Each set of top foil orifice holes has at least three top foil orifice holes along a circumference of the top foil. An orifice tube is provided for each set of top foil orifice holes. The orifice tube includes a flat side having a set of tube orifice holes connected to an outer surface of the top foil. The bump foil strip is attached to the outer surface of the top foil adjacent to each side of each orifice tube. Another embodiment uses a housing with an inner surface having a curved polygonal cross-sectional shape with an odd number of curved sides.
    • 一种空气箔轴承包括顶部箔片,一个或多个孔口管和设置在壳体内的两个或更多个凸起箔条。 顶部箔片形成具有一组或多组顶部箔孔孔的基本圆形形状。 每组顶部的箔片孔口沿着顶部箔片的圆周具有至少三个顶部箔片孔口孔。 为每组顶部的箔孔孔提供孔管。 孔口管包括具有连接到顶部箔的外表面的一组管孔的平坦侧。 凸块箔条附着在与每个孔管的每一侧相邻的顶部箔片的外表面上。 另一实施例使用具有弯曲多边形横截面形状的具有奇数个弯曲侧面的内表面的壳体。
    • 13. 发明授权
    • Integrated apparatus for supplying ink and regulating pressure
    • 用于提供墨水和调节压力的集成设备
    • US08388120B2
    • 2013-03-05
    • US12786595
    • 2010-05-25
    • Dong-Youn ShinJun-Hee LeeSu-A ParkJoon-Sik ParkWan-Doo Kim
    • Dong-Youn ShinJun-Hee LeeSu-A ParkJoon-Sik ParkWan-Doo Kim
    • B41J2/175
    • B41J2/17509
    • Disclosed is an integrated apparatus for supplying ink and regulating pressure, which comprises a chamber accommodating ink, a main chamber preliminarily storing ink to be supplied to the chamber, a nozzle communicating with the chamber and jetting ink transferred from the chamber to an outside, a first valve blocking or letting flow of ink between the main chamber and the chamber, a second valve blocking and letting flow of ink between the chamber and the nozzle, a piston placed above ink accommodated in the chamber and reciprocating rectilinearly while sealing ink inside the chamber, a piston driver providing a driving force to the piston, a sensor installed in the chamber and sensing pressure due to weight of ink, and a controller receiving a sensed signal from the sensor and outputting a signal for controlling the piston to the piston, wherein the piston moves down as a level of ink accommodated in the chamber is lowered when ink is discharged to the outside through the nozzle, and the piston moves up and the first valve and the second valve are respectively opened and closed when ink is filled in the chamber.
    • 公开了一种用于供应墨水和调节压力的集成装置,其包括容纳墨水的腔室,预先储存供应到腔室的墨水的主腔室,与腔室连通并将从腔室传送的墨水喷射到外部的喷嘴, 第一阀阻塞或使主要室和腔室之间的墨水流动,第二阀阻塞并使墨在腔室和喷嘴之间流动,将活塞放置在容纳在腔室中的墨水上方并直线往复运动同时密封腔室内的墨水 活塞驱动器,其向活塞提​​供驱动力,传感器安装在腔室中并感测由于油墨的重量而产生的压力;以及控制器,其接收来自传感器的感测信号并输出​​用于将活塞控制到活塞的信号,其中 当油墨通过喷嘴排出到外部时,活塞向下移动,因为容纳在腔室中的油墨水平降低 活塞向上移动,并且当墨水填充在腔室中时,第一阀门和第二阀门分别打开和关闭。
    • 14. 发明授权
    • Method for fabricating fine conductive patterns using surface modified mask template
    • 使用表面改性掩模模板制造精细导电图案的方法
    • US08241712B2
    • 2012-08-14
    • US12616853
    • 2009-11-12
    • Dong-Youn ShinTaik-Min Lee
    • Dong-Youn ShinTaik-Min Lee
    • B05D3/00C08J7/18G21H5/00
    • H05K3/1258B41M3/006C09D11/102C23C18/06C23C18/08H05K3/105H05K3/125H05K2203/107H05K2203/1173H05K2203/121
    • Disclosed is a method for fabricating fine conductive patterns using a surface modified mask template, the method including: depositing a high molecular substance on a substrate; applying a hydrophobic material onto the high molecular substance so that the hydrophobic material can infiltrate into the high molecular substance; forming a mask template by removing a part of the high molecular substance to form a recess where a region of the substrate is exposed to an outside; depositing conductive ink on the mask template; and performing annealing to abstract metal particles from a metallic compound dissolved in the conductive ink so that an insulating pattern can be formed in a region on which the high molecular substance is deposited, but a conductive pattern can be formed as the metal particles are abstracted from the conductive ink in the recess and cohere with each other.
    • 公开了一种使用表面改性掩模模板制造精细导电图案的方法,该方法包括:在基底上沉积高分子物质; 将疏水性材料施加到高分子物质上,使得疏水性材料可以渗透到高分子物质中; 通过去除一部分高分子物质形成掩模模板,以形成其中基板的区域暴露于外部的凹部; 在掩模模板上沉积导电油墨; 并且进行退火以从溶解在导电油墨中的金属化合物抽出金属颗粒,使得可以在沉积高分子物质的区域中形成绝缘图案,但是可以形成导电图案,因为金属颗粒被从 导电油墨在凹槽中并相互粘合。
    • 16. 发明申请
    • PREPARATION METHOD OF HYDROXYAPATITE COATING LAYER USING AEROSOL DEPOSITION AND HYDROTHERMAL TREATMENT, AND NANOSTRUCTURED HYDROXYAPATITE COATING LAYER PREPARED BY THE METHOD
    • 使用气溶胶沉积和热处理的羟基磷酸酯涂层的制备方法和由该方法制备的纳米结构的羟基封端层
    • US20110281127A1
    • 2011-11-17
    • US12871434
    • 2010-08-30
    • Byung-Dong HAHNDong-Soo Park
    • Byung-Dong HAHNDong-Soo Park
    • B32B15/04A61L27/32
    • A61L27/06A61L27/32A61L2420/02
    • A method of preparing a nano-structured hydroxyapatite [Ca10(PO4)6(OH)2, HA] coating layer with improved biocompatibility is provided. The preparation method includes: (S1) putting hydroxyapatite [Ca10(PO4)6(OH)2, HA] powder in a powder chamber, placing a metal substrate in a deposition chamber, and keeping the chamber in vacuum state by using a vacuum pump; (S2) injecting carrier gas into the powder chamber and mixing with hydroxyapatite powder; (S3) spraying the mixture of the powder and the carrier gas onto the surface of metal substrate in the deposition chamber through a nozzle and depositing hydroxyapatite coating layer on the metal substrate; (S4) hydrothermal-treating the deposited hydroxyapatite coating layer; and (S5) rinsing the hydrothermal-treated hydroxyapatite coating layer and drying the layer. Additionally, a thermal-treated, nano-structured hydroxyapatite [Ca10(PO4)6(OH)2, HA] coating layer with improved biocompatibility fabricated by the above preparation method is provided.
    • 提供了一种制备具有改善的生物相容性的纳米结构羟基磷灰石[Ca10(PO4)6(OH)2,HA]涂层的方法。 制备方法包括:(S1)将羟基磷灰石[Ca10(PO4)6(OH)2,HA]粉末置于粉末室中,将金属基材置于沉积室中,并通过使用真空泵将室保持在真空状态 ; (S2)将载气注入粉末室并与羟基磷灰石粉混合; (S3)通过喷嘴将粉末和载气的混合物喷射到沉积室中的金属基材的表面上,并将羟基磷灰石涂层沉积在金属基材上; (S4)对沉积的羟基磷灰石涂层进行水热处理; 和(S5)冲洗水热处理的羟基磷灰石涂层并干燥该层。 另外,提供了通过上述制备方法制造的具有改善的生物相容性的热处理的纳米结构的羟基磷灰石[Ca10(PO4)6(OH)2,HA]涂层。
    • 18. 发明申请
    • HYBRID AIR FOIL BEARING AND METHOD OF MANUFACTURE
    • 混合空气轴承及其制造方法
    • US20110033142A1
    • 2011-02-10
    • US12694262
    • 2010-01-26
    • Daejong KimAn Sung LeeYoung-Cheol Kim
    • Daejong KimAn Sung LeeYoung-Cheol Kim
    • F16C32/06B21D53/10
    • F16C17/024F16C43/02Y10T29/49639
    • An air foil bearing includes a top foil, one or more orifice tubes and two or more bump foil strips disposed within a housing. The top foil is forms a substantially circular shape having one or more sets of top foil orifice holes. Each set of top foil orifice holes has at least three top foil orifice holes along a circumference of the top foil. An orifice tube is provided for each set of top foil orifice holes. The orifice tube includes a flat side having a set of tube orifice holes connected to an outer surface of the top foil. The bump foil strip is attached to the outer surface of the top foil adjacent to each side of each orifice tube. Another embodiment uses a housing with an inner surface having a curved polygonal cross-sectional shape with an odd number of curved sides.
    • 一种空气箔轴承包括顶部箔片,一个或多个孔口管和设置在壳体内的两个或更多个凸起箔条。 顶部箔片形成具有一组或多组顶部箔孔孔的基本圆形形状。 每组顶部的箔片孔口沿着顶部箔片的圆周具有至少三个顶部箔片孔口孔。 为每组顶部的箔孔孔提供孔管。 孔口管包括具有连接到顶部箔的外表面的一组管孔的平坦侧。 凸块箔条附着在与每个孔管的每一侧相邻的顶部箔片的外表面上。 另一实施例使用具有弯曲多边形横截面形状的具有奇数个弯曲侧面的内表面的壳体。