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    • 63. 发明申请
    • PIPELINE AND METHODS
    • 管道和方法
    • US20150184788A1
    • 2015-07-02
    • US14408486
    • 2013-05-09
    • TECHNIP NORGE AS
    • Sven Morten HesjevikErik LevoldPer Egil Kvaale
    • F16L58/00F17D5/06B63B35/03F16L1/12F16L1/235B23P11/02C23F13/20
    • F16L58/00B23P11/025B63B35/03C23F13/10C23F13/20C23F2201/00C23F2213/20C23F2213/31C23F2213/32F16L1/123F16L1/235F17D5/06Y10T29/49117
    • A pipeline comprising one or more pipes, the pipeline having: one or more sacrificial anodes (20) thereon to provide cathodic protection; one or more pre-formed metallic rings (12) around at least one pipe; and one or more electrical connections (14) attached to the or each metallic ring and to at least one sacrificial anode to allow an electrical current to flow between the pipeline and one or more of the sacrificial anodes. Because the or each metallic ring has a ‘one-piece’ form, it can be fitted to the pipe without welding, avoiding the problems associated with welding discussed above. A one-piece ring also has no obvious weaknesses, so that there is greater assurance of its fixing to or with the pipe, and the ring is more compliant with any working on the pipe, in particular bending, compared with sleeves or other types of long sections.
    • 一种管道,其包括一个或多个管道,所述管道具有:其上具有或多个牺牲阳极(20)以提供阴极保护; 围绕至少一个管道的一个或多个预成型金属环(12); 以及连接到该金属环或每个金属环的一个或多个电连接(14)和至少一个牺牲阳极,以允许电流在管线与一个或多个牺牲阳极之间流动。 由于金属环或每个金属环都具有“一体式”形式,因此可以在不进行焊接的情况下将其安装到管道上,从而避免与上述焊接相关的问题。 一体式环也没有明显的弱点,因此与管子的固定有更大的保证,并且与套管或其他类型的管相比,环更适合管道上的任何工作,特别是弯曲 长节。
    • 65. 发明申请
    • SYSTEMS AND METHODS FOR IMPRESSED CURRENT CATHODIC PROTECTION
    • 降低电流阴极保护的系统和方法
    • US20140318984A1
    • 2014-10-30
    • US14264982
    • 2014-04-29
    • Transistor Devices, Inc. d/b/a TDI Power
    • Gary MulcahyJohn Santini
    • C23F13/04C23F13/20
    • C23F13/04
    • In some embodiments, an ICCP system includes an AC-DC rectifier receiving AC power from an AC power source and providing a DC output having a constant voltage or a constant current, a cathode connection electrically coupling the AC-DC rectifier to a structure to be protected by the ICCP system, current-emitting anodes arranged in parallel and receiving the DC output from the AC-DC rectifier, and a controller communicating with the AC-DC rectifier to set a maximum value for the constant voltage or constant current of the DC output. In other embodiments, an ICCP system includes a converter assembly including an AC-DC rectifier and a rectifier chassis enclosing and environmentally sealing the AC-DC rectifier. The ICCP system also includes an environmentally-sealed controller communicating with the AC-DC rectifier and an environmentally-protected Input-Output connection assembly. Junctions electrically connect the converter assembly, the environmentally-sealed controller, and the environmentally-protected connection assembly.
    • 在一些实施例中,ICCP系统包括从AC电源接收AC电力并提供具有恒定电压或恒定电流的DC输出的AC-DC整流器,将AC-DC整流器电耦合到结构的阴极连接 由ICCP系统保护,电流发射阳极并联布置并接收来自AC-DC整流器的DC输出,以及控制器与AC-DC整流器通信,以设置DC的恒定电压或恒定电流的最大值 输出。 在其它实施例中,ICCP系统包括包括AC-DC整流器的转换器组件和封装并环境地密封AC-DC整流器的整流器底座。 ICCP系统还包括与AC-DC整流器和环境保护的输入 - 输出连接组件通信的环境密封控制器。 接头电连接转换器组件,环境密封的控制器和环境保护的连接组件。
    • 66. 发明授权
    • Sacrificial anode system
    • 牺牲阳极系统
    • US08636877B2
    • 2014-01-28
    • US13024946
    • 2011-02-10
    • Joseph Palmer
    • Joseph Palmer
    • C23F13/10C23F13/06C23F13/12C23F13/16C23F13/18C23F13/20
    • C23F13/22C23F13/18C23F2213/32
    • A sacrificial anode system and associated surface pipe system maintenance method designed to protect surface pipes and associated parts. According to a first aspect of the present invention, the sacrificial anode system is installable at an interface between a first pipe and a second pipe and comprises an insertion sleeve shaped to fit along an inner surface of the first pipe, a flange attached to the insertion sleeve and shaped to rest against an end surface of the first pipe, a sacrificial anode to be positioned within the first pipe, and a stem linking the sacrificial anode to the insertion sleeve. According to a second aspect of the present invention, a method for maintaining a surface pipe system is also provided.
    • 牺牲阳极系统和相关的表面管道系统维护方法,旨在保护地面管道及相关部件。 根据本发明的第一方面,牺牲阳极系统可安装在第一管和第二管之间的界面处,并且包括成形为沿着第一管的内表面装配的插入套筒,附接到插入件的凸缘 套筒并成形以抵靠第一管的端表面,待定位在第一管内的牺牲阳极,以及将牺牲阳极连接到插入套筒的杆。 根据本发明的第二方面,还提供了一种用于维护表面管道系统的方法。
    • 67. 发明授权
    • Treatment process for concrete
    • 混凝土处理工艺
    • US08349166B2
    • 2013-01-08
    • US13052670
    • 2011-03-21
    • Gareth GlassAdrian RobertsNigel Davison
    • Gareth GlassAdrian RobertsNigel Davison
    • C23F13/04C23F13/06C23F13/20
    • C23F13/02C23F13/06C23F13/16C23F2201/02C23F2213/21C23F2213/31E04C5/015
    • A single anode system used in multiple electrochemical treatments to control steel corrosion in concrete. The anode system comprises a sacrificial metal that is capable of supporting high impressed anode current densities with an impressed current anode connection detail and a porous embedding material containing an electrolyte. Initially current is driven from the sacrificial metal (1) to the steel (10) using a power source (5) for converting oxygen and water (14) into hydroxyl ions (15) on the steel and drawing chloride ions (16) into the porous material (2) around the anode such that corroding sites are moved from the steel to the anode restoring steel passivity and activating the anode. Cathodic prevention is then applied. This is preferably a sacrificial cathodic prevention which is applied by disconnecting the power source and connecting the activated sacrificial node directly to the steel.
    • 用于多种电化学处理的单阳极系统来控制混凝土中的钢腐蚀。 阳极系统包括牺牲金属,其能够利用外加电流阳极连接细节和包含电解质的多孔嵌入材料来支持高的外加阳极电流密度。 最初,使用用于将氧和水(14)转化成钢上的羟基离子(15)并将氯离子(16)转化为电源(5)的电源(5)将电流从牺牲金属(1)驱动到钢(10) 多孔材料(2),使得腐蚀部位从钢移动到阳极,恢复钢的钝性并激活阳极。 然后应用阴极预防。 这优选是牺牲阴极防止,其通过断开电源并将激活的牺牲节点直接连接到钢来应用。
    • 70. 发明授权
    • Sacrificial anode assembly
    • 牺牲阳极组件
    • US07704372B2
    • 2010-04-27
    • US11587647
    • 2005-04-29
    • Gareth K. GlassAdrian C. RobertsNigel Davison
    • Gareth K. GlassAdrian C. RobertsNigel Davison
    • C23F13/02C23F13/04C23F13/08C23F13/14C23F13/20
    • E04C5/015C23F13/06C23F13/10C23F2201/02C23F2213/21
    • A sacrificial anode assembly for cathodically protecting and/or passivating a metal section, comprising: (a) a cell, which has an anode and a cathode arranged so as to not be in electronic contact with each other but so as to be in ionic contact with each other such that current can flow between the anode and the cathode; (b) a connector attached to the anode of the cell for electrically connecting the anode to the metal section to be cathodically protected; and (c) a sacrificial anode electrically connected in series with the cathode of the cell; wherein the cell is otherwise isolated from the environment such that current can only flow into and out of the cell via the sacrificial anode and the connector. The invention also provides a method of cathodically protecting metal in which such a sacrificial anode assembly is cathodically attached to the metal via the connector of the assembly, and a reinforced concrete structure wherein some or all of the reinforcement is cathodically protected by such a method.
    • 一种用于阴极保护和/或钝化金属部分的牺牲阳极组件,包括:(a)电池,其具有布置成不彼此电子接触但被离子接触的阳极和阴极 使得电流可以在阳极和阴极之间流动; (b)附接到电池的阳极的连接器,用于将阳极电连接到金属部分以进行阴极保护; 和(c)与电池的阴极电连接的牺牲阳极; 其中电池另外从环境分离,使得电流仅能够经由牺牲阳极和连接器流入和流出电池。 本发明还提供一种阴极保护金属的方法,其中这种牺牲阳极组件经由组件的连接器阴极连接到金属,以及钢筋混凝土结构,其中部分或全部加强件被这种方法阴极保护。