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    • 1. 发明申请
    • Downhole Device Actuator and Method
    • 井下装置执行器和方法
    • US20100175888A1
    • 2010-07-15
    • US12689787
    • 2010-01-19
    • Jean BuytaertIra Eugene Hining
    • Jean BuytaertIra Eugene Hining
    • E21B34/06E21B23/00E21B31/06
    • E21B17/00E21B17/021E21B17/1014E21B17/1042E21B17/1078E21B17/206E21B23/06E21B34/14E21B41/00H02K49/10
    • An actuator to actuate a device received on a tubular string adjacent the device. The actuator comprises an energy storage member, such as a spring, restrained in a compressed mode between a stop collar and an outer sleeve threadedly received on a threaded portion of a non-magnetic tubular segment. An outer magnet is coupled to the outer sleeve to magnetically interact with an inner magnet coupled to an inner pipe string. The inner pipe string is run into the bore of the tubular string and the outer sleeve to position the inner magnet proximal the outer magnet to form a magnetic clutch. The inner pipe string rotates to transfer torque to the outer sleeve via a magnetic clutch, to rotate and threadedly disengage the outer sleeve from the tubular segment to release energy from the energy storage member to displace the outer sleeve to engage and actuate the device.
    • 致动器,用于致动接收在邻近设备的管状串上的设备。 致动器包括在止动环和螺旋地容纳在非磁性管状段的螺纹部分上的外套筒之间以压缩模式约束的诸如弹簧的能量存储构件。 外部磁体联接到外部套筒以与耦合到内部管柱的内部磁体磁性地相互作用。 内管柱进入管柱和外套管的孔中,以将内磁体定位在外磁体的近侧,以形成磁离合器。 内管柱旋转以通过电磁离合器将扭矩传递到外套筒,以使外套筒与管状部分旋转并使螺纹脱离,从而释放来自能量存储部件的能量以移动外套筒以接合和致动装置。
    • 2. 发明授权
    • Casing centralizers having flexible bow springs
    • 套管扶正器具有弹性弓形弹簧
    • US08763690B2
    • 2014-07-01
    • US12756173
    • 2010-04-07
    • Jean BuytaertEugene Edward MillerIra Eugene Hining
    • Jean BuytaertEugene Edward MillerIra Eugene Hining
    • E21B17/10
    • E21B19/24B23P11/00E21B17/1028Y10T29/49817Y10T29/49863
    • A bow-spring centralizer (6) includes bow springs (5), moving collars (11) secured to each end of each bow spring, and interlocked stop collars (10). Extendable collars (8) may each be formed of a moving collar (11) movably interlocked with a stop collar (10). The centralizer (6) may optionally be formed from a tube cut using a laser to create two extendable collars coupled by bow springs. Each extendable collar may include heads integrally formed on extensions protruding from a collar (stop collar or moving collar). The heads may be generally rectangular, arrow, or teardrop-shaped head or some other shape. Each head may be slidably captured within a chamber on the interlocked collar (moving collar or stop collar). The extensions of each interlocked tubular member define the outer walls of the chamber in which a head of the interlocked tubular member is slidably captured. The stop collars may include or cooperate with one or more fingers extending along a casing to be secured by a sleeve that forms an interference fit about the casing.
    • 弓形弹簧扶正器(6)包括弓形弹簧(5),固定到每个弓形弹簧的每个端部的移动套环(11)和互锁止动套环(10)。 可延伸的套圈(8)可以各自由可移动地与止动环(10)互锁的活动套环(11)形成。 扶正器(6)可以可选地由使用激光器的管切割形成,以产生由弓形弹簧联接的两个可延伸的套环。 每个可延伸的套环可以包括一体地形成在从套环(止动环或移动套环)突出的延伸部上的头部。 头可以是大致矩形,箭头或泪珠状的头部或一些其他形状。 每个头部可以可滑动地被捕获在联锁套环(移动套环或止动套环)上的腔室内。 每个互锁管状构件的延伸部限定了腔室的外壁,其中可互锁的管状构件的头部可滑动地被捕获。 止动环可以包括或配合一个或多个沿着套管延伸的手指,以通过套筒固定以形成围绕套管的过盈配合。
    • 3. 发明申请
    • FRICTION REDUCING WEAR BAND AND METHOD OF COUPLING A WEAR BAND TO A TUBULAR
    • 摩擦减少磨损带和将磨损带与管接合的方法
    • US20100252274A1
    • 2010-10-07
    • US12755981
    • 2010-04-07
    • Jean BuytaertEugene Edward MillerIra Eugene Hining
    • Jean BuytaertEugene Edward MillerIra Eugene Hining
    • E21B17/10E21B19/16E21B19/00
    • E21B17/16E21B17/04E21B17/1028E21B17/1064E21B17/1078E21B17/1085
    • In one embodiment, a wear band comprises a rotating element having a bore receivable on a tubular, the bore comprising first and second bore portions slidably receiving first and second sleeve bearings. Outer surfaces of the sleeve bearings slidably engage the bore portions and the bores of the sleeve bearings slidably engage the tubular. A first and a second stop collars may be received on the tubular to together straddle the rotating element and sleeve bearings to longitudinally secure the rotating element in a position on the tubular. The tubular may be included within a tubular string run into a borehole or into the bore of an installed casing, such as in casing while drilling. The rotating element provides stand-off between a tubular and the wall of a bore, reduces frictional resistance to longitudinal sliding and also to rotation of the tubular string within the bore.
    • 在一个实施例中,耐磨带包括具有可接收在管状物上的孔的旋转元件,所述孔包括可滑动地接收第一和第二套筒轴承的第一和第二孔部分。 套筒轴承的外表面可滑动地接合孔部分,并且套筒轴承的孔可滑动地接合管件。 第一和第二止动环可以被容纳在管状件上,以一起跨越旋转元件和套筒轴承,以将旋转元件纵向固定在管状件上的位置。 管状管可以包括在钻孔内的管状管柱中,或者进入安装的外壳的孔中,例如在钻孔时在套管中。 旋转元件在管状件和孔的壁之间提供支撑,减小了对纵向滑动的摩擦阻力,并且还减小了管柱在孔内的旋转。
    • 4. 发明授权
    • Performance centralizer for close tolerance applications
    • 性能扶正器用于紧公差应用
    • US08851168B2
    • 2014-10-07
    • US13191074
    • 2011-07-26
    • Jean BuytaertIra Eugene Hining
    • Jean BuytaertIra Eugene Hining
    • E21B17/10E21B19/24
    • E21B17/1028Y10T29/49947
    • A centralizer having a plurality of collapsible bows interconnecting a first collar and a second collar, with the centralizer disposed on a tubular with a stop collar, and an attachable retainer(s) of the centralizer blocking passage of the stop collar therethrough. The bows may have a yield strength of at least about 200,000 psi. Outer surface of the bows may have a coefficient of friction equal or less than about 0.02. Maximum radial thickness of centralizer when the plurality of collapsible bows is fully collapsed may be equal to or less than 3/16″. Centralizer may be rotatable relative to tubular. Centralizer having a split tubular body forming first and second collars connected by collapsible bows and a retainer to retain the split tubular body on the tubular, and the retainer, the first collar and/or the second collar providing a recess therein to receive a stop collar of the tubular.
    • 一种扶正器,其具有互连第一套环和第二套环的多个可折叠的弓,其中所述扶正器设置在具有止动环的管状物上,以及所述扶正器的可附接保持器阻止所述止动套环穿过其中。 弓可以具有至少约200,000psi的屈服强度。 弓的外表面可具有等于或小于约0.02的摩擦系数。 当多个可折叠弓完全折叠时,扶正器的最大径向厚度可以等于或小于3/16“。 扶正器可以相对于管状可旋转。 具有分开的管状体的集中器形成通过可折叠弓形连接的第一和第二套环和用于将分离的管状体保持在管状物上的保持器,并且保持器,第一套环和/或第二套环在其中提供凹部以接收止动环 的管状。
    • 5. 发明申请
    • PERFORMANCE CENTRALIZER FOR CLOSE TOLERANCE APPLICATIONS
    • 性能中心用于近距离应用
    • US20130025881A1
    • 2013-01-31
    • US13191074
    • 2011-07-26
    • Jean BuytaertIra Eugene Hining
    • Jean BuytaertIra Eugene Hining
    • E21B17/10B23P11/00
    • E21B17/1028Y10T29/49947
    • A centralizer having a plurality of collapsible bows interconnecting a first collar and a second collar, with the centralizer disposed on a tubular with a stop collar, and an attachable retainer(s) of the centralizer blocking passage of the stop collar therethrough. The bows may have a yield strength of at least about 200,000 psi. Outer surface of the bows may have a coefficient of friction equal or less than about 0.02. Maximum radial thickness of centralizer when the plurality of collapsible bows is fully collapsed may be equal to or less than 3/16″. Centralizer may be rotatable relative to tubular. Centralizer having a split tubular body forming first and second collars connected by collapsible bows and a retainer to retain the split tubular body on the tubular, and the retainer, the first collar and/or the second collar providing a recess therein to receive a stop collar of the tubular.
    • 一种扶正器,其具有互连第一套环和第二套环的多个可折叠的弓,所述扶正器设置在具有止动套环的管状物上,以及所述扶正器的可附接保持器阻止所述止动套环穿过其中。 弓可以具有至少约200,000psi的屈服强度。 弓的外表面可具有等于或小于约0.02的摩擦系数。 当多个可折叠弓完全折叠时,扶正器的最大径向厚度可以等于或小于3/16“。 扶正器可以相对于管状可旋转。 具有分开的管状体的集中器形成通过可折叠弓形连接的第一和第二套环和用于将分离的管状体保持在管状物上的保持器,并且保持器,第一套环和/或第二套环在其中提供凹部以接收止动环 的管状。
    • 6. 发明申请
    • APPARATUS FOR AND METHOD OF SECURING A CENTRALIZER TO A TUBULAR
    • 将集中器固定到管状体的装置和方法
    • US20100218956A1
    • 2010-09-02
    • US12756173
    • 2010-04-07
    • Jean BuytaertEugene Edward MillerIra Eugene Hining
    • Jean BuytaertEugene Edward MillerIra Eugene Hining
    • E21B23/00E21B17/10
    • E21B19/24B23P11/00E21B17/1028Y10T29/49817Y10T29/49863
    • A bow-spring centralizer (6) includes bow springs (5), moving collars (11) secured to each end of each bow spring, and interlocked stop collars (10). Extendable collars (8) may each be formed of a moving collar (11) movably interlocked with a stop collar (10). The centralizer (6) may optionally be formed from a tube cut using a laser to create two extendable collars coupled by bow springs. Each extendable collar may include heads integrally formed on extensions protruding from a collar (stop collar or moving collar). The heads may be generally rectangular, arrow, or teardrop-shaped head or some other shape. Each head may be slidably captured within a chamber on the interlocked collar (moving collar or stop collar). The extensions of each interlocked tubular member define the outer walls of the chamber in which a head of the interlocked tubular member is slidably captured. The stop collars may include or cooperate with one or more fingers extending along a casing to be secured by a sleeve that forms an interference fit about the casing.
    • 弓形弹簧扶正器(6)包括弓形弹簧(5),固定到每个弓形弹簧的每个端部的移动套环(11)和互锁止动套环(10)。 可延伸的套圈(8)可以各自由可移动地与止动环(10)互锁的活动套环(11)形成。 扶正器(6)可以可选地由使用激光器的管切割形成,以产生由弓形弹簧联接的两个可延伸的套环。 每个可延伸的套环可以包括一体地形成在从套环(止动环或移动套环)突出的延伸部上的头部。 头可以是大致矩形,箭头或泪珠状的头部或一些其他形状。 每个头部可以可滑动地被捕获在联锁套环(移动套环或止动套环)上的腔室内。 每个互锁管状构件的延伸部限定了腔室的外壁,其中可互锁的管状构件的头部可滑动地被捕获。 止动环可以包括或配合一个或多个沿着套管延伸的手指,以通过套筒固定以形成围绕套管的过盈配合。
    • 7. 发明授权
    • Friction reducing wear band and method of coupling a wear band to a tubular
    • 减磨磨损带以及将耐磨带与管状物连接的方法
    • US08863834B2
    • 2014-10-21
    • US12755981
    • 2010-04-07
    • Jean BuytaertEugene Edward MillerIra Eugene Hining
    • Jean BuytaertEugene Edward MillerIra Eugene Hining
    • E21B17/10
    • E21B17/16E21B17/04E21B17/1028E21B17/1064E21B17/1078E21B17/1085
    • In one embodiment, a wear band comprises a rotating element having a bore receivable on a tubular, the bore comprising first and second bore portions slidably receiving first and second sleeve bearings. Outer surfaces of the sleeve bearings slidably engage the bore portions and the bores of the sleeve bearings slidably engage the tubular. A first stop collar and a second stop collar may be received on the tubular to together straddle the rotating element and sleeve bearings to longitudinally secure the rotating element in a position on the tubular. The tubular may be included within a tubular string run into a borehole or into the bore of an installed casing, such as in casing while drilling. The rotating element provides stand-off between a tubular and the wall of a bore, reduces frictional resistance to longitudinal sliding and also to rotation of the tubular string within the bore.
    • 在一个实施例中,耐磨带包括具有可接收在管状物上的孔的旋转元件,所述孔包括可滑动地接收第一和第二套筒轴承的第一和第二孔部分。 套筒轴承的外表面可滑动地接合孔部分,并且套筒轴承的孔可滑动地接合管件。 第一止动环和第二止动环可以被容纳在管状件上,以一起跨过旋转元件和套筒轴承,以将旋转元件纵向固定在管状的位置。 管状管可以包括在钻孔内的管状管柱中,或者进入安装的外壳的孔中,例如在钻孔时在套管中。 旋转元件提供管状件和孔的壁之间的间隔,减小对纵向滑动的摩擦阻力,并且还减小管柱在孔内的旋转。