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    • 4. 发明授权
    • Ultrasonic testing device
    • 超声波检测装置
    • US5123281A
    • 1992-06-23
    • US512669
    • 1990-04-20
    • Loran D. CoxThomas R. Larson
    • Loran D. CoxThomas R. Larson
    • G01N29/28
    • G01N29/28
    • An apparatus for ultrasonically testing a part uses a transducer which emits sound waves to flow through a water column into contact with the part. The housing has sidewalls, a top, and a bottom, defining a reservoir. The transducer locates in the reservoir and points downward toward the bottom. A collar extends upward from the bottom in alignment with the transducer. The collar has an open upper end spaced a selected distance above the bottom. A tube mounts in the collar in alignment with the transducer. The tube will slide vertically relative to the collar. The lower end of the tube protrudes through an aperture in the bottom for contact with the part. Water is supplied to the reservoir, to flow over the upper end of the collar and through the tube against the part. A supporting surface on the housing supports the housing on the part and depends downward from the bottom of the housing.
    • 用于对部件进行超声波测试的装置使用发射声波的换能器流过水柱与部件接触。 壳体具有侧壁,顶部和底部,限定了储存器。 传感器位于储存器中并向下指向底部。 套环从底部向上延伸,与换能器对准。 套环具有在底部上方间隔一定距离的敞开的上端。 管安装在轴环上,与传感器对准。 管将相对于套环垂直滑动。 管的下端通过底部的孔突出以与部件接触。 水被供应到储存器,流过套环的上端并通过管抵靠部件。 壳体上的支撑表面支撑该部件上的外壳,并从壳体的底部向下。
    • 5. 发明授权
    • Apparatus and method for density separator for drilling fluid
    • 钻井液密度分离装置及方法
    • US08715506B2
    • 2014-05-06
    • US12841687
    • 2010-07-22
    • Thomas R. Larson
    • Thomas R. Larson
    • B03C1/02B03C1/30B03C5/02B01D21/26
    • B03C1/32B01D21/26B03C1/02B03C1/023B03C1/0335B03C1/035B03C1/30B03C5/02B03C2201/18E21B21/065
    • An apparatus is disclosed for separating minerals in drilling fluid based primarily on density. The separator creates and maintains a slurry with a controllable density for separating minerals from drill cuttings. The density is controlled through the use of an electrode array. The separator comprises a primary separation chamber containing the dense slurry, and a multiple number of secondary separation chambers used to separate cuttings from the drilling fluid. The invention also contains inlet hardware allowing the mixed mineral suspension to enter the first separation chamber, and hardware allowing the three outlet (separated) streams to exit the device. One of the three outlet streams carries the minerals that have a density greater than the user selectable density set point, while the second carries the minerals that have a density less than the density set point, and the third carries clean drilling fluid.
    • 公开了一种基于密度分离钻井液中的矿物的装置。 分离器产生并保持具有可控密度的浆料,用于将矿物与钻屑分离。 通过使用电极阵列来控制密度。 分离器包括含有致密浆料的主分离室和用于将切屑与钻井液分离的多个次级分离室。 本发明还包含允许混合矿物悬浮液进入第一分离室的入口硬件以及允许三个出口(分离的)流离开设备的硬件。 三个出口流中的一个携带具有大于用户可选密度设定点的密度的矿物,而第二个输送具有小于密度设定点的密度的矿物,并且第三个携带清洁的钻井液。
    • 6. 发明申请
    • APPARATUS AND METHOD FOR DENSITY SEPARATOR FOR DRILLING FLUID
    • 钻井液密度分离器的装置及方法
    • US20110017675A1
    • 2011-01-27
    • US12841687
    • 2010-07-22
    • Thomas R. Larson
    • Thomas R. Larson
    • B03C1/02
    • B03C1/32B01D21/26B03C1/02B03C1/023B03C1/0335B03C1/035B03C1/30B03C5/02B03C2201/18E21B21/065
    • The present invention discloses a system for separating minerals in drilling fluid based primarily on density. The separator creates and maintains a slurry with a controllable density for separating minerals from drill cuttings. The density if controlled through the use of an electrode array. The separator comprises a primary separation chamber containing the dense shiny, and a multiple number of secondary separation chambers used to separate cuttings from the drilling fluid. The invention also contains inlet hardware allowing the mixed mineral suspension to enter the first separation chamber, and hardware allowing the three outlet (separated) streams to exit the device. One of the three outlet streams carries the minerals that have a density greater than the user selectable density set point, while the second carries the minerals that have a density less than the density set point, and the third carries clean drilling fluid.
    • 本发明公开了一种基于密度分离钻井液中矿物的分离系统。 分离器产生并保持具有可控密度的浆料,用于将矿物与钻屑分离。 密度如果通过使用电极阵列进行控制。 分离器包括含有致密光泽的主分离室和用于将钻屑与钻井液分离的多个次级分离室。 本发明还包含允许混合矿物悬浮液进入第一分离室的入口硬件以及允许三个出口(分离的)流离开设备的硬件。 三个出口流中的一个携带具有大于用户可选密度设定点的密度的矿物,而第二个输送具有小于密度设定点的密度的矿物,并且第三个携带清洁的钻井液。
    • 8. 发明申请
    • Apparatus and method for drilling fluid density separator utilizing rotating disks
    • 利用旋转盘钻井液密度分离装置及方法
    • US20110017600A1
    • 2011-01-27
    • US12841760
    • 2010-07-22
    • Thomas R. Larson
    • Thomas R. Larson
    • B03C5/02
    • B03C1/32B01D21/26B03C1/02B03C1/023B03C1/0335B03C1/035B03C1/30B03C5/02B03C2201/18E21B21/065
    • The present invention discloses a system for separating minerals in drilling fluid based primarily on density. The separator creates and maintains a slurry with a controllable density for separating minerals from drill cuttings. The density if controlled through the use of an electrode array. The separator comprises a primary separation chamber containing the dense slurry, and a multiple number of secondary separation chambers used to separate cuttings from the drilling fluid. The invention also contains inlet hardware allowing the mixed mineral suspension to enter the first separation chamber, and hardware allowing the three outlet (separated) streams to exit the device. One of the three outlet streams carries the minerals that have a density greater than the user selectable density set point, while the second carries the minerals that have a density less than the density set point, and the third carries clean drilling fluid.
    • 本发明公开了一种基于密度分离钻井液中矿物的分离系统。 分离器产生并保持具有可控密度的浆料,用于将矿物与钻屑分离。 密度如果通过使用电极阵列进行控制。 分离器包括含有致密浆料的主分离室和用于将切屑与钻井液分离的多个次级分离室。 本发明还包含允许混合矿物悬浮液进入第一分离室的入口硬件以及允许三个出口(分离的)流离开设备的硬件。 三个出口流中的一个携带具有大于用户可选密度设定点的密度的矿物,而第二个输送具有小于密度设定点的密度的矿物,并且第三个携带清洁的钻井液。