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    • 1. 发明申请
    • AUTOMATED PIPE TRIPPING APPARATUS AND METHODS
    • 自动管道搬运装置及方法
    • WO2014066368A3
    • 2014-10-23
    • PCT/US2013066145
    • 2013-10-22
    • PILGRIM RICK
    • PILGRIM RICK
    • B25B17/00E21B19/00E21B19/18E21B19/22
    • E21B19/20E21B3/02E21B17/00E21B17/01E21B19/06E21B19/08E21B19/081E21B19/083E21B19/084E21B19/086E21B19/10E21B19/161E21B21/08E21B44/02
    • An automated pipe tripping apparatus includes an outer frame and an inner frame. The inner frame includes a tripping slips and iron roughneck. The automated pipe tripping apparatus may, in concert with an elevator and drawworks, trip in a tubular string in a continuous motion. The tripping slips and iron roughneck, along with the inner frame, may travel vertically within the outer frame. The weight of the tubular string is transferred between the tripping slips and the elevator. The iron roughneck may make up or break out threaded connections between tubular segments, the upper tubular segment supported by the elevator and the lower by the tripping slips. An automated pipe handling apparatus may remove or supply sections of pipe from or to the elevator. A control system may control both the automated pipe tripping apparatus and the elevator and drawworks.
    • 一种自动管道脱扣装置,包括外框架和内框架。 内框架包括一个跳闸滑块和铁撬。 自动管道脱扣装置可以与电梯和绞车一起以连续运动的方式跳入管状串中。 绊倒和熨斗粗ck以及内框架可能在外框架内垂直移动。 管状串的重量在跳闸滑块和电梯之间传递。 熨斗粗加工机构可以组装或拆开管状部件之间的螺纹连接,上部管状部分由电梯支撑,下部由折叠滑动件支撑。 自动管道处理设备可以从电梯或从电梯中提取管道的部分。 控制系统可以控制自动管道跳闸装置和电梯和绞车。
    • 3. 发明申请
    • AUTOMATED PIPE TRIPPING APPARATUS AND METHODS
    • 自动管道装置和方法
    • WO2014066368A2
    • 2014-05-01
    • PCT/US2013/066145
    • 2013-10-22
    • PILGRIM, Rick
    • PILGRIM, Rick
    • E21B19/08
    • E21B19/20E21B3/02E21B17/00E21B17/01E21B19/06E21B19/08E21B19/081E21B19/083E21B19/084E21B19/086E21B19/10E21B19/161E21B21/08E21B44/02
    • An automated pipe tripping apparatus includes an outer frame and an inner frame. The inner frame includes a tripping slips and iron roughneck. The automated pipe tripping apparatus may, in concert with an elevator and drawworks, trip in a tubular string in a continuous motion. The tripping slips and iron roughneck, along with the inner frame, may travel vertically within the outer frame. The weight of the tubular string is transferred between the tripping slips and the elevator. The iron roughneck may make up or break out threaded connections between tubular segments, the upper tubular segment supported by the elevator and the lower by the tripping slips. An automated pipe handling apparatus may remove or supply sections of pipe from or to the elevator. A control system may control both the automated pipe tripping apparatus and the elevator and drawworks.
    • 自动化的管子跳闸装置包括外框架和内框架。 内部框架包括一个跳闸滑车和铁舷梯。 自动化的管子跳闸装置可以与电梯和绞车一起以连续运动的方式在管柱中跳闸。 绊倒滑车和铁凿子连同内框一起可以在外框内垂直移动。 管柱的重量在跳闸卡瓦和升降机之间传递。 铁管道可能会形成或破坏管状部分之间的螺纹连接,管状部分由电梯支撑,下部管状部分由跳闸滑道支撑。 自动化管道处理设备可以从电梯移除或向电梯供应管段。 控制系统可以控制自动化管道跳闸装置和电梯以及绞车。
    • 4. 发明申请
    • TOWER
    • WO98048142A1
    • 1998-10-29
    • PCT/NO1998/000130
    • 1998-04-23
    • B66F19/00E21B15/00E21B19/081E21B19/083B66F3/06E21B19/08
    • E21B15/00E21B19/081Y10S254/06
    • A derrick, especially a drilling rig derrick, including a derrick structure and lifting tackle for a load, for example, a drill string, in the derrick structure. The lifting tackle includes guideways in parallel relation which each includes a vertical main guide rail (4, 7), a storage guide rail (5, 8) parallel thereto, and in a lower portion of the derrick a connecting guide portion (6, 9) between the two said rails, a rack (10, 11), slidably arranged in each guideway, which racks (10, 11) are divided into successive, preferably hingedly interconnected rack segments (12, 13) designed to bear against one another when the rack (10, 11) or when a part thereof is in the vertical main guide rail (4, 7), the main guide rail (4, 7) being designed for horizontal support of the rack segments (12, 13), a load-bearing yoke (22) supported on the racks (10, 11) in the respective vertical main guide rails (4, 7), and a driving gear (25) including a driving gearwheel (26, 27, 28) in driving engagement with the racks (12, 13) in the respective vertical guide rails (4, 7).
    • 井架,特别是钻机井架,其包括用于井架结构中的负载(例如钻柱)的井架结构和起重滑车。 起重滑车包括平行关系的导轨,每个导轨均包括垂直主导轨(4,7),与其平行的存放导轨(5,8),并且在井架的下部中,连接导向部分 )在两个所述轨道之间,可滑动地布置在每个导轨中的齿条(10,11),所述齿条(10,11)被分成连续的,优选地铰接的互连的齿条段(12,13),其被设计为当 所述支架(10,11)或其一部分位于所述垂直主导轨(4,7)中时,所述主导轨(4,7)设计成用于水平支撑所述齿条段(12,13),所述主导轨 支撑在相应垂直主导轨(4,7)中的机架(10,11)上的承载轭(22)和驱动齿轮(25),驱动齿轮(25)包括驱动齿轮(26,27,28) 在各个垂直导轨(4,7)中具有齿条(12,13)。