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    • 1. 发明申请
    • Wellsite Systems Utilizing Deployable Structure
    • 使用可部署结构的井场系统
    • US20090159295A1
    • 2009-06-25
    • US12034191
    • 2008-02-20
    • Julio C. GuerreroHitoshi TashiroBartley PattonHubertus V. ThomeerRobin Mallalieu
    • Julio C. GuerreroHitoshi TashiroBartley PattonHubertus V. ThomeerRobin Mallalieu
    • E21B23/01
    • E21B23/14E21B4/18E21B2023/008
    • An apparatus for deploying an instrument usable with a well comprises at least one reversibly expandable structure, at least one actuator operable to change a perimeter dimension of the at least one reversibly expandable structure, at least one instrument disposed interior of the at least one reversibly expandable structure, and having an axial dimension, and tractoring fluid disposed between the at least one reversibly expandable structure and the at least one instrument. The apparatus is operable to perform at least one of exerting thrust to convey the at least one instrument with respect to at least one adjacent surface, creating compensating pressure between the at least one instrument and the at least one adjacent surface, and sealing between the at least one instrument and the at least one adjacent surface.
    • 用于展开可用于井的仪器的装置包括至少一个可逆扩展的结构,至少一个致动器,其可操作以改变所述至少一个可逆扩展结构的周长尺寸;至少一个仪器,设置在所述至少一个可逆膨胀 结构,并且具有轴向尺寸,以及设置在所述至少一个可逆膨胀结构和所述至少一个仪器之间的牵引流体。 所述装置可操作以执行至少一个施加推力以相对于至少一个相邻表面输送所述至少一个仪器,在所述至少一个仪器与所述至少一个相邻表面之间产生补偿压力,以及在所述至少一个相邻表面之间的密封 至少一个仪器和所述至少一个相邻表面。
    • 2. 发明授权
    • Wellsite systems utilizing deployable structure
    • 采用可部署结构的井场系统
    • US07896088B2
    • 2011-03-01
    • US12034191
    • 2008-02-20
    • Julio C. GuerreroHitoshi TashiroBartley PattonHubertus V. ThomeerRobin Mallalieu
    • Julio C. GuerreroHitoshi TashiroBartley PattonHubertus V. ThomeerRobin Mallalieu
    • E21B23/00
    • E21B23/14E21B4/18E21B2023/008
    • An apparatus for deploying an instrument usable with a well comprises at least one reversibly expandable structure, at least one actuator operable to change a perimeter dimension of the at least one reversibly expandable structure, at least one instrument disposed interior of the at least one reversibly expandable structure, and having an axial dimension, and tractoring fluid disposed between the at least one reversibly expandable structure and the at least one instrument. The apparatus is operable to perform at least one of exerting thrust to convey the at least one instrument with respect to at least one adjacent surface, creating compensating pressure between the at least one instrument and the at least one adjacent surface, and sealing between the at least one instrument and the at least one adjacent surface.
    • 用于展开可用于井的仪器的装置包括至少一个可逆扩展的结构,至少一个致动器,其可操作以改变所述至少一个可逆扩展结构的周长尺寸;至少一个仪器,设置在所述至少一个可逆膨胀 结构,并且具有轴向尺寸,以及设置在所述至少一个可逆膨胀结构和所述至少一个仪器之间的牵引流体。 所述装置可操作以执行至少一个施加推力以相对于至少一个相邻表面输送所述至少一个仪器,在所述至少一个仪器与所述至少一个相邻表面之间产生补偿压力,以及在所述至少一个相邻表面之间的密封 至少一个仪器和所述至少一个相邻表面。
    • 4. 发明申请
    • SUBSEA OPERATIONS SUPPORT SYSTEM
    • SUBSEA操作支持系统
    • US20090114140A1
    • 2009-05-07
    • US11935212
    • 2007-11-05
    • Julio C. GuerreroPascal PanettaHitoshi Tashiro
    • Julio C. GuerreroPascal PanettaHitoshi Tashiro
    • B63G8/00H04B11/00
    • B63C11/52B63G8/001
    • An underwater operations support system facilitates underwater exploration, monitoring, maintenance and construction operations associated with development of natural resources. The operations support system may include energy generation subsystems, energy accumulation subsystems, communication subsystems, docking stations, repair and maintenance robots, housings for divers, and video subsystems. Supported equipment includes ROVs, HROVs, AUVs, and other autonomous and semi-autonomous mobile robots which move materials, perform manual tasks, and survey the environment. Operational efficiency is enhanced by recharging, repairing and reconfiguring vehicles, and transferring data and commands between vehicles and a control station, without moving the vehicle to and from the surface, and without need for a surface ship to remain on site for the duration of operations.
    • 水下作业支援系统便于与自然资源开发相关的水下勘探,监测,维护和施工作业。 操作支持系统可以包括能量生成子系统,能量累积子系统,通信子系统,对接站,修理和维护机器人,用于潜水员的外壳和视频子系统。 支持的设备包括ROV,HROV,AUV以及移动材料,执行手动任务和调查环境的其他自主和半自主移动机器人。 通过对车辆进行充电,修理和重新配置,以及在车辆和控制站之间传输数据和命令,而不必将车辆移出和离开表面,并且不需要在运行期间保持现场的水面船舶,从而提高了运行效率 。
    • 5. 发明授权
    • Subsea operations support system
    • 海底作战支援系统
    • US07926438B2
    • 2011-04-19
    • US11935212
    • 2007-11-05
    • Julio C. GuerreroPascal PanettaHitoshi Tashiro
    • Julio C. GuerreroPascal PanettaHitoshi Tashiro
    • B63G8/41
    • B63C11/52B63G8/001
    • An underwater operations support system facilitates underwater exploration, monitoring, maintenance and construction operations associated with development of natural resources. The operations support system may include energy generation subsystems, energy accumulation subsystems, communication subsystems, docking stations, repair and maintenance robots, housings for divers, and video subsystems. Supported equipment includes ROVs, HROVs, AUVs, and other autonomous and semi-autonomous mobile robots which move materials, perform manual tasks, and survey the environment. Operational efficiency is enhanced by recharging, repairing and reconfiguring vehicles, and transferring data and commands between vehicles and a control station, without moving the vehicle to and from the surface, and without need for a surface ship to remain on site for the duration of operations.
    • 水下作业支援系统便于与自然资源开发相关的水下勘探,监测,维护和施工作业。 操作支持系统可以包括能量生成子系统,能量累积子系统,通信子系统,对接站,修理和维护机器人,用于潜水员的外壳和视频子系统。 支持的设备包括ROV,HROV,AUV以及移动材料,执行手动任务和调查环境的其他自主和半自主移动机器人。 通过对车辆进行充电,修理和重新配置,以及在车辆和控制站之间传输数据和命令,而不必将车辆移出和离开表面,并且不需要在运行期间保持现场的水面船舶,从而提高了运行效率 。
    • 7. 发明授权
    • Dipole logging tool
    • 偶极测井工具
    • US06474439B1
    • 2002-11-05
    • US09537836
    • 2000-03-29
    • David HoyleHitoshi TashiroBenoit FroelichAlain BrieHiroshi HoriHitoshi SugiyamaJahir PabonFrank Morris
    • David HoyleHitoshi TashiroBenoit FroelichAlain BrieHiroshi HoriHitoshi SugiyamaJahir PabonFrank Morris
    • G01V140
    • G01V1/52
    • A logging tool having a tool body, which can be positioned in a fluid-filled borehole, including a receiver section and a dipole transmitter; wherein the dipole transmitter includes a transducer with a shell having a reaction mass and a motor located therein, the motor operatively connecting the shell and the reaction mass such that only an outer surface of the shell is in contact with the fluid in the borehole. This new type of dipole source for well logging involves shaking all or part (axially) of a dipole tool body to produce a pure, broadband acoustic dipole signal while at the same time coupling as little energy as possible into the tool body. Important variations on this idea include a linear phased array of shaker sources, and active cancellation of tool borne noise.
    • 一种具有工具主体的测井工具,该工具主体可定位在充满流体的钻孔中,包括接收器部分和偶极发射器; 其中所述偶极发射器包括具有壳体的换能器,所述壳体具有反作用物质和位于其中的马达,所述马达可操作地连接所述壳体和所述反作用物质,使得只有所述壳体的外表面与所述钻孔中的流体接触。 这种用于测井的新型偶极子源涉及摇动偶极工具体的全部或部分(轴向),以产生纯的宽带声偶极子信号,同时将尽可能少的能量耦合到工具主体中。 这个想法的重要变化包括振荡器源的线性相控阵列,以及主动消除工具噪声。
    • 8. 发明授权
    • Automatic deposition machine
    • 自动沉积机
    • US06344107B1
    • 2002-02-05
    • US09474227
    • 1999-12-29
    • Hitoshi TashiroTakao ShigiharaTakeshi ItoKazuto Sawada
    • Hitoshi TashiroTakao ShigiharaTakeshi ItoKazuto Sawada
    • B29C6522
    • B29C65/20B29C53/36B29C65/342B29C65/3432B29C65/3476B29C66/1122B29C66/43B29C66/474B29C66/80B29C66/8322
    • Improved efficiency of deposition work between a protection trimming and a clip seat of an automobile is provided with an automatic deposition machine having wire heating elements (3a and 3b), a first connection member (1) connected to one end of the wire heating elements (3a and 3b), a movement mechanism for moving the first connection member (1), a second connection member (2) that can be connected to the other end side of the wire heating elements (3a) and (3b) and a bending jig (5) for overlapping the clip seat the member for the protection trimming. The dip seat and the protection trimming are interconnected, to the rear face of the protection trimming via the wire state heating elements (3a and 3b), the retainer member (4) for retaining the said overlapped clip seats, and the power source for carrying the electric current between the said first connection member and the said second connection member. In addition, the wire heating element is designed with a pipe structure. The cooling gas is passed inside the pipe structured heating element after the deposition between the clip seat and the protection trimming by the electrification.
    • 提供了一种保护修整和汽车的夹座之间的沉积工作效率,提供了一种具有线加热元件(3a和3b)的自动沉积机,连接到线加热元件的一端的第一连接件(1) 3a和3b),用于移动第一连接构件(1)的移动机构,可连接到线加热元件(3a)和(3b)的另一端侧的第二连接构件(2)和弯曲夹具 (5)用于将夹座重叠用于保护修剪的构件。 浸渍座和保护修剪通过线状加热元件(3a和3b)与保护修剪的后表面相互连接,用于保持所述重叠的夹子座的保持构件(4)和用于承载的电源 所述第一连接构件和所述第二连接构件之间的电流。 此外,线加热元件设计有管结构。 冷却气体通过夹子座和通过带电保护修整之后通过管结构化加热元件内部。
    • 10. 发明授权
    • High strength, ultra fine steel wire having excellent workability in
stranding and process and apparatus for producing the same
    • 高强度,超薄的钢丝,具有良好的拉伸和加工工艺性能,以及用于生产它的装置
    • US5240520A
    • 1993-08-31
    • US910019
    • 1992-07-16
    • Toshimi TaruiSyoji SasakiHitoshi TashiroHiroshi Sato
    • Toshimi TaruiSyoji SasakiHitoshi TashiroHiroshi Sato
    • C21D7/06C21D8/06C22C38/18
    • D07B1/066C21D7/06C21D8/06C22C38/18D07B2205/3057Y10T428/12438Y10T428/12924
    • A high-strength, ultra-fine wire having an excellent workability in stranding, comprising a steel comprised of, in terms of % by weight, 0.85 to 1.10% of C, 0.10 to 0.70% of Si, 0.20 to 0.60% of Mn, 0.10 to 0.60% of Cr, 0.005% or less of Al and optionally at least one member selected from 0.10 to 2.00% of Ni and 0.10 to 3.00% of Co with the balance Fe and unavoidable impurities and, provided thereon, a brass plating, the steel wire having a diameter of 0.1 to 0.4 mm and a tensile strength of 400 kgf/mm.sup.2 or more, the surface of the brass plating being provided with indentations having a depth of 2 .mu.m or less at intervals of 50 .mu.m or less in a percentage area of indentations of 10 to 80%; and a process and apparatus for producing a high strength, ultra fine steel wire, comprising subjecting a steel wire material to a patenting treatment, brass plating and wire drawing and subjecting the steel wire material to a shot peening treatment in an air blast system while applying a tension to the steel wire material.
    • PCT No.PCT / JP91 / 01582 Sec。 371日期:1992年7月16日 102(e)日期1992年7月16日PCT 1991年11月19日PCT PCT。 出版物WO92 / 08817 日期:1992年5月29日。一种绞合加工性优异的高强度超细线,其特征在于,以重量%计,C:0.85〜1.10%,Si:0.10〜0.70%,0.20 至0.60%的Mn,0.10〜0.60%的Cr,0.005%以下的Al和任选的至少一种选自0.10〜2.00%的Ni和0.10〜3.00%的Co,余量为Fe和不可避免的杂质, 其上镀黄铜,直径为0.1〜0.4mm,拉伸强度为400kgf / mm2以上的钢丝,黄铜镀层的表面间隔设置有深度为2μm以下的凹痕 在50%以下的压痕百分比为10〜80%的压痕。 以及用于生产高强度超细钢丝的方法和装置,包括对钢丝材料进行专利处理,黄铜镀层和拉丝并且在施加吹风系统的同时对钢丝材料进行喷丸处理 对钢丝材料的张力。