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    • 2. 发明授权
    • Method for manufacturing an water hammer arrester
    • 水锤避雷器的制造方法
    • US6154961A
    • 2000-12-05
    • US312490
    • 1999-05-17
    • Kwang-Jin ParkChang-Joon Park
    • Kwang-Jin ParkChang-Joon Park
    • F16L55/045B23P15/00F16L55/053B23P17/00
    • F16L55/053B23P15/00Y10T29/49428
    • Methods for manufacturing a water hammer arrester having an endurance against pressure of a fluid as well as excellent productivity. There is provided Methods for manufacturing a water hammer arrester comprising steps of: deforming plastically an end of a work piece for a housing to close it by pressing the end toward a center thereof while the work piece is rotated at high speed, the work piece is a brass pipe having predetermined length; forming a housing by cutting a closed part in prescribed thickness; filling up a gas and inserting a piston within the housing to prevent the gas from leaking; forming a connecting part having smaller diameter than the housing by pressing an outside of an open end of the housing provided with poured gas and the piston; and mounting a connector to the connecting part.
    • 制造具有抗流体压力耐久性的水锤避雷器的方法以及优异的生产率。 提供了一种制造水锤避雷器的方法,包括以下步骤:在工件高速旋转的同时,通过将端部朝向其中心挤压端部而使其外壳的工件的端部塑性变形以将其闭合,工件是 具有预定长度的黄铜管; 通过切割规定厚度的封闭部分形成壳体; 填充气体并将活塞插入壳体内以防止气体泄漏; 通过挤压设置有倾倒气体的壳体的开口端的外侧和活塞,形成具有比壳体小的直径的连接部分; 并将连接器安装到连接部件上。
    • 5. 发明授权
    • Solid oxide fuel cell stack
    • 固体氧化物燃料电池堆
    • US08697307B2
    • 2014-04-15
    • US13328620
    • 2011-12-16
    • Kwang-Jin ParkHyun SohTae-Ho Kwon
    • Kwang-Jin ParkHyun SohTae-Ho Kwon
    • H01M8/24H01M8/02
    • H01M8/2432H01M8/02H01M8/0202H01M8/0206H01M8/0252H01M8/0271H01M8/243H01M8/2465
    • A solid oxide fuel cell stack includes a cell array in which M interconnector unit solid oxide fuel cells are connected in parallel to form a bundle, and N bundles are connected in series; a first plate-shaped current collecting member connected to a first bundle of the N bundles, the first current collecting member including a first terminal, and a second plate-shaped current collecting member connected to an Nth bundle of the N bundles, the second current collecting member including a second terminal; and a first elastic insulating member adjacent to the first current collecting member, the first insulating member having a first opening, a second elastic insulating member adjacent to the second current collecting member, the second insulating member having another first opening, and the first terminal passes through the first opening and the second terminal portion through the other first opening.
    • 一种固体氧化物燃料电池堆包括M个互连单元固体氧化物燃料电池并联连接以形成束的单电池阵列,并且N束串联连接; 连接到所述N束的第一束的第一板状集流构件,所述第一集电构件包括第一端子,以及与所述N束的第N束连接的第二板状集流构件,所述第二电流 收集构件,包括第二端子; 以及与所述第一集电构件相邻的第一弹性绝缘构件,所述第一绝缘构件具有第一开口,与所述第二集流构件相邻的第二弹性绝缘构件,所述第二绝缘构件具有另一第一开口,并且所述第一端子通过 通过第一开口和第二端子部分穿过另一个第一开口。
    • 6. 发明申请
    • SOLID OXIDE FUEL CELL STACK
    • 固体氧化物燃料电池堆
    • US20130045435A1
    • 2013-02-21
    • US13328620
    • 2011-12-16
    • Kwang-Jin ParkHyun SohTae-Ho Kwon
    • Kwang-Jin ParkHyun SohTae-Ho Kwon
    • H01M8/24H01M2/24
    • H01M8/2432H01M8/02H01M8/0202H01M8/0206H01M8/0252H01M8/0271H01M8/243H01M8/2465
    • A solid oxide fuel cell stack includes a cell array in which M interconnector unit solid oxide fuel cells are connected in parallel to form a bundle, and N bundles are connected in series; a first plate-shaped current collecting member connected to a first bundle of the N bundles, the first current collecting member including a first terminal, and a second plate-shaped current collecting member connected to an Nth bundle of the N bundles, the second current collecting member including a second terminal; and a first elastic insulating member adjacent to the first current collecting member, the first insulating member having a first opening, a second elastic insulating member adjacent to the second current collecting member, the second insulating member having another first opening, and the first terminal passes through the first opening and the second terminal portion through the other first opening.
    • 一种固体氧化物燃料电池堆包括M个互连单元固体氧化物燃料电池并联连接以形成束的单电池阵列,并且N束串联连接; 连接到所述N束的第一束的第一板状集流构件,所述第一集电构件包括第一端子,以及与所述N束的第N束连接的第二板状集流构件,所述第二电流 收集构件,包括第二端子; 以及与所述第一集电构件相邻的第一弹性绝缘构件,所述第一绝缘构件具有第一开口,与所述第二集流构件相邻的第二弹性绝缘构件,所述第二绝缘构件具有另一第一开口,并且所述第一端子通过 通过第一开口和第二端子部分穿过另一个第一开口。
    • 7. 发明授权
    • Heat controllable visualization apparatus for transparent PEMFC
    • 用于透明PEMFC的热控制可视化装置
    • US08367262B2
    • 2013-02-05
    • US12917786
    • 2010-11-02
    • Joongmyeon BaeDong-ryul LeeKwang-Jin Park
    • Joongmyeon BaeDong-ryul LeeKwang-Jin Park
    • H01M8/04
    • H01M8/0267H01M8/0258H01M8/0263H01M8/0273H01M8/04067H01M8/04074H01M8/04365H01M8/04723H01M2008/1095
    • Provided is a visualization apparatus for a transparent PEMFC using a transparent window having conditions approximating a real PEMFC. More specifically, the present invention includes a heat-exchange passage heat exchanging a transparent plate of a visualization apparatus with a current collector plate in order to control heat. In order to achieve the above object, the present invention includes: current collector plates each provided at both surfaces of a membrane electrode assembly of a fuel cell and formed with a channel in which reaction gas and products flow; transparent plates provided at an outer surface of the current collector plates and provided with a heat-exchange passage having a fluid flowing therein to be heat-exchanged with the current collector plates; and fixing frames having a visualization window for observing the current collector plates and provided at the outer side of the transparent plates.
    • 提供了一种使用具有接近实际PEMFC的条件的透明窗口的透明PEMFC的可视化装置。 更具体地,本发明包括热交换通道,用于将可视化装置的透明板与集电板热交换以控制热量。 为了实现上述目的,本发明包括:各自设置在燃料电池的膜电极组件的两个表面上且形成有反应气体和产物流动的通道的集电板; 设置在集电板的外表面的透明板,具有流过流体的热交换通路与集电板进行热交换; 以及具有用于观察集电板并设置在透明板的外侧的可视化窗口的固定框架。