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    • 2. 发明授权
    • Impact and impact-rotary tool testing apparatus using rotary speed and
impact energy
    • 冲击和冲击旋转刀具测试装置采用旋转速度和冲击能量
    • US5277055A
    • 1994-01-11
    • US753606
    • 1991-08-30
    • Gerard T. PittardWilliam J. McDonaldTerry P. CliftonWilliam C. Herben
    • Gerard T. PittardWilliam J. McDonaldTerry P. CliftonWilliam C. Herben
    • G01M99/00G01M19/00
    • G01M99/007
    • A test stand has a base supporting standards on which are mounted a crossbar and an adjustably locatable header. The header supports an actuator for raising and lowering the crossbar which holds V-blocks for engaging the handles of an impact or impact-rotary tool and which applies downward pressure to the tool. The tool chuck is fitted to the top of a guide rod whose lower end passes with a sliding fit through a disc to which it is keyed and bears against a piston in an hydraulically pressurized cylinder. Sensors detect rotation of the disc and movement of the piston to provide information to a computer as to impact energy and rotary speed. A manifold fitted with sensors for temperature, pressure, and flow rate supplies operating air to the tool. The computer includes a database with stored information as to past history of the tool and the manufacturer's recommended operating specifications to which the measured data is compared.
    • 测试台具有基座支撑标准,其上安装有横杆和可调节定位的头部。 集管支撑用于升高和降低横梁的致动器,其保持用于接合冲击或冲击旋转工具的把手的V形块,并且向工具施加向下的压力。 工具卡盘安装在导杆的顶部,导向杆的下端通过滑动配合通过与其键合的盘并且靠在液压加压缸中的活塞上。 传感器检测盘的旋转和活塞的移动,以向计算机提供影响能量和旋转速度的信息。 配有温度,压力和流量传感器的歧管为工具提供工作空气。 计算机包括具有关于工具的过去历史的存储信息的数据库和与测量数据进行比较的制造商推荐的操作规范。
    • 3. 发明授权
    • Lubricant level detection system for sealed mud motor bearing assembly
    • 密封泥马达轴承总成润滑油液位检测系统
    • US5956995A
    • 1999-09-28
    • US932879
    • 1997-09-18
    • William C. HerbenTuong T. LeGunther von Gynz-Rekowski
    • William C. HerbenTuong T. LeGunther von Gynz-Rekowski
    • G01F23/00G01F23/30
    • G01F23/30G01F23/00
    • An apparatus and method for detecting lubricant reservoir levels, particularly in bearing sections for downhole mud motors, is revealed. This allows rig personnel to more exactly ascertain the remaining bearing life of the assembly. In one embodiment, the assembly is pulled out of the hole and comprises of a signal source. A hand-held device is placed next to the bearing housing and the location of the strongest signal is a direct measurement of the position of the floating piston in the lubricant reservoir. The rig personnel can then readily obtain a level reading on the fluid level in the reservoir. An alternative design is also revealed where the position of the floating piston is sensed in real-time by receivers mounted at spaced locations in the lubricant reservoir. The position of the floating piston is thus detected by the receivers and sent to the surface, generally through the measurement-while-drilling (MWD) sub, so that rig personnel at the surface known at any given time the position of the floating piston and, thus, the remaining lubricant level in the reservoir. The signal source can be a magnetic component mounted in the bearing housing reservoir area where the surrounding components are nonmagnetic such that the receiver responds to the magnetic field created by the magnetic signal source. The signal source can also be powered by a stored electrical supply which can generate through a signal source a signal which can be measured, either over the air or by a hand-held receiver held by rig personnel, or by a connection to the bearing housing for a direct reading of the signal generated.
    • 揭示了用于检测润滑剂储存器水位的装置和方法,特别是用于井下泥浆马达的轴承部分。 这允许钻机人员更精确地确定组件的剩余轴承寿命。 在一个实施例中,组件被拉出孔并且包括信号源。 一个手持式设备放置在轴承座旁边,最强信号的位置是直接测量浮动活塞在润滑油箱中的位置。 钻机人员然后可以容易地获得储层中液位的水平读数。 还可以看到替代设计,其中通过安装在润滑剂储存器中的间隔位置处的接收器实时地感测浮动活塞的位置。 浮动活塞的位置因此由接收器检测并被发送到表面,通常通过钻探测量(MWD)子系统,使得钻井人员在任何给定时间在任何给定时间已知浮动活塞的位置和 ,因此,储存器中剩余的润滑剂水平。 信号源可以是安装在轴承壳体储存区域中的磁性部件,其中周围部件是非磁性的,使得接收器响应于由磁信号源产生的磁场。 信号源还可以由存储的电源供电,其可以通过信号源产生可以在空中或由钻机人员保持的手持式接收器或通过与轴承壳体的连接来测量的信号 用于直接读取生成的信号。
    • 4. 发明授权
    • Electrically actuated disconnect apparatus and method
    • 电动断开装置和方法
    • US5810088A
    • 1998-09-22
    • US825014
    • 1997-03-26
    • Brad LamirandWilliam C. Herben
    • Brad LamirandWilliam C. Herben
    • E21B17/06E21B23/04
    • E21B17/06E21B23/04
    • In drilling equipment having at least one remote assembly (62) attached to a drill string (12), an electrically actuated disconnect apparatus and method (10) for releasing the remote assembly (62) has an electric signal transmitter electrically connected to a release device (16). The release device (16) operates a retaining device (22) holding strainer blocking devices (24) therein. A strainer (56) is connected to the drill string (12) after the retainer (22) and through which drilling fluid flows until blocked by the strainer blocking devices (24). A one way pressure relief mechanism (34) is provided in the drill string (12) conformed to operate when the flow of drilling fluid is continued after the strainer (56) is blocked by the strainer blocking devices (24) so that drilling fluid is allowed to impact against a movable piston (44), the moveable piston (44) conformed to the drill string (12), and movable to apply pressure to move a disconnect shift tube (52) so as to shift the disconnect shift tube (52) and release a coupling key (32), thereby releasing the remote assembly (64) from the drill string (12).
    • 在具有附接到钻柱(12)的至少一个远程组件(62)的钻井设备中,用于释放远程组件(62)的电致动断开装置和方法(10)具有电连接到释放装置 (16)。 释放装置(16)操作在其中保持过滤器阻挡装置(24)的保持装置(22)。 过滤器(56)在保持器(22)之后连接到钻柱(12),钻井流体通过该过滤器流动,直到被过滤器阻塞装置(24)阻挡。 在钻柱(12)中设置单向压力释放机构(34),当钻孔流体在过滤器(56)被过滤器阻塞装置(24)阻塞之后继续时钻井流体的流动被运行,使得钻井流体是 允许冲击可移动活塞(44),可移动活塞(44)符合钻柱(12),并且可移动以施加压力以移动断开换档管(52),以便移动断开换档管(52) )并释放联接键(32),从而将远程组件(64)从钻柱(12)释放。
    • 6. 发明授权
    • Bottomhole assembly orienting sub
    • 井底组件定向子
    • US5881824A
    • 1999-03-16
    • US863657
    • 1997-05-27
    • Gunther von Gynz-RekowskiWilliam C. Herben
    • Gunther von Gynz-RekowskiWilliam C. Herben
    • E21B7/08E21B23/02E21B47/01E21B17/00
    • E21B23/02E21B47/01
    • A mechanism for arients and maintains a key in a sub for guiding directional measurement equipment of a directional drilling assembly with respect to the drillbit. The orienting sub has an outer sleeve which is supported on an inner shoulder in the orienting sub. An inner sleeve which holds the key has an outer wedged profile which follows the shape of the outer sleeve. The outer sleeve can be longitudinally, obliquely, or spirally segmented and has a thread on one end so that a jam nut can be installed to advance the inner sleeve with the key until a wedging action occurs between the inner and outer sleeves and the sub. At that point, the key is oriented without any bores through the wall of the sub. Provisions can be made in the assembly to provide a biasing force on the inner sleeve which holds the key to compensate for vibrational loads on the assembly.
    • 一种用于养护者的机构,并且在子系统中保持关键部件,用于引导定向钻井组件相对于钻头的定向测量设备。 定向子具有外套筒,该套筒支撑在定向子件的内肩上。 保持钥匙的内套筒具有遵循外套筒形状的外楔形轮廓。 外套筒可以纵向,倾斜或螺旋地分段,并且在一端具有螺纹,使得可以安装锁紧螺母以使用钥匙推进内套筒,直到在内套筒和外套筒和副套筒之间发生楔入动作。 在这一点上,关键是没有任何孔穿过墙的墙。 可以在组件中进行配置以在内套筒上提供偏置力,其保持钥匙以补偿组件上的振动载荷。
    • 7. 发明授权
    • Expandable eccentric reamer and method of use in drilling
    • 膨胀式偏心铰刀及其在钻井中的应用
    • US06991046B2
    • 2006-01-31
    • US10701232
    • 2003-11-03
    • Coy M. FielderGary D. WellsRogerio H. SilvaWilliam C. Herben
    • Coy M. FielderGary D. WellsRogerio H. SilvaWilliam C. Herben
    • E21B7/28
    • E21B10/322
    • An expandable eccentric reamer for placement in a drill string up-hole of a conventional drill bit. The reamer blade is actuated by drilling fluid pressure to radially extend to a drill out diameter greater than a pass-through diameter. The reamer body is shaped to have an eccentric outer surface configuration to accommodate the reamer blade therein. The reamer blade acts as a piston arm in response to drilling fluid pressure and moves along a shaft anchored in a hump region that forms an eccentricity in the outer surface configuration of the body. The reamer blade has an outer edge configuration that positions the cutters thereon to prevent them from engaging a casing of a well borehole upon deployment.
    • 一种用于放置在常规钻头的钻柱上孔中的可扩张式偏心铰刀。 钻孔刀片通过钻井液压力来致动,径向延伸到大于通过直径的钻孔直径。 铰刀体被成形为具有偏心外表面构造以容纳其中的铰刀刀片。 铰刀刀片响应于钻井液压力而作为活塞臂,并且沿着锚定在驼峰区域中的轴移动,所述隆起区域在主体的外表面构型中形成偏心。 铰刀刀片具有将切割器定位在其上的外边缘构造,以防止它们在展开时与井眼的壳体接合。
    • 8. 发明授权
    • Guided earth boring tool
    • 引导地球钻孔工具
    • US4858704A
    • 1989-08-22
    • US094937
    • 1987-09-09
    • William J. McDonaldGerard T. PittardWilliam C. MaurerMichael R. WassonWilliam C. Herben
    • William J. McDonaldGerard T. PittardWilliam C. MaurerMichael R. WassonWilliam C. Herben
    • E21B4/14E21B7/06E21B7/26
    • E21B4/145E21B7/06E21B7/068E21B7/26
    • Long utility holes, for gas lines, electrical conduit, communications conduit and the like, may be bored or pierced horizontally through the earth, particularly under obstacles, such as buildings, streets, highways, rivers, lakes, etc. Such holes may be bored by an underground drilling mole (underground percussion drill) supported on a hollow drill rod and supplied with compressed air through the rod to operate an air hammer which strikes an anvil having an external boring face, preferably constructed to apply an asymmetric boring force. The drill rod is operated by a drill rig on the surface or recessed in special pit for horizontal drilling and provides for additional sections of pipe or hollow rod as the boring progresses. The asymmetric boring force causes the boring path to curve and, when straight line drilling is needed, the drill rod is rotated to counteract the asymmetric boring force. An alternative boring tool utilizes an expander supported on a solid or hollow drill rod and having a base end supported on and larger in diameter than the rod and tapering longitudinally forward therefrom. It may have a uniform extension protruding a short distance forward. The tool penetrates the earth upon longitudinal movement of the drill rod.
    • 用于气体管道,电气管道,通讯管道等的长通风孔可能会在地球上,特别是在诸如建筑物,街道,高速公路,河流,湖泊等障碍物的水平下钻孔或刺穿。这样的孔可能无聊 通过支撑在中空钻杆上并通过杆供给压缩空气的地下钻孔槌(地下冲击钻)来操作撞击具有外部钻孔面的砧座的空气锤,优选地构造成施加不对称镗孔。 钻杆由表面上的钻机操作,或者用于水平钻孔的专用凹坑中,并在钻孔进行时提供管道或中空杆的附加部分。 不对称钻孔力使钻孔路径弯曲,当需要直线钻孔时,钻杆旋转以抵消不对称钻孔力。 一种替代的钻孔工具利用支撑在实心或中空钻杆上的膨胀器,并且具有支撑在直径上且大于杆直径的基端,并从其纵向向前逐渐变细。 它可能具有向前突出较短距离的均匀延伸。 当钻杆的纵向移动时,该工具穿透地球。
    • 10. 发明授权
    • Guided earth boring tool
    • 引导地球钻孔工具
    • US4694913A
    • 1987-09-22
    • US863957
    • 1986-05-16
    • William J. McDonaldGerard T. PittardWilliam C. MaurerMichael R. WassonWilliam C. Herben
    • William J. McDonaldGerard T. PittardWilliam C. MaurerMichael R. WassonWilliam C. Herben
    • E21B4/14E21B7/06E21B7/26E21B4/20E21B7/08
    • E21B4/145E21B7/06E21B7/068E21B7/26
    • Long utility holes, for gas lines, electrical conduit, communications conduit and the like, may be bored or pierced horizontally through the earth, particularly under obstacles, such as buildings, streets, highways, rivers, lakes, etc. Such holes may be bored by an underground drilling mole (underground percussion drill) supported on a hollow drill rod and supplied with compressed air through the rod to operate an air hammer which strikes an anvil having an external boring face, preferably constructed to apply an asymmetric boring force. The drill rod is operated by a drill rig on the surface or recessed in special pit for horizontal drilling and provides for addition of sections of pipe or hollow rod as the boring progresses. The asymmetric boring force causes the boring path to curve and, when straight line drilling is needed, the drill rod is rotated to counteract the asymmetric boring force. An alternative boring tool utilizes an expander supported on a solid or hollow drill rod and having a base end supported on and larger in diameter than the rod and tapering longitudinally forward therefrom. It may have a uniform extension protruding a short distance forward. The tool penetrates the earth upon longitudinal movement of the drill rod.
    • 用于气体管道,电气管道,通讯管道等的长通风孔可能会被水平穿过地球,特别是在建筑物,街道,公路,河流,湖泊等障碍物下面。这样的孔可能无聊 通过支撑在中空钻杆上并通过杆供给压缩空气的地下钻孔槌(地下冲击钻)来操作撞击具有外部钻孔面的砧座的空气锤,优选地构造成施加不对称镗孔。 钻杆由表面上的钻机操作,或者用于水平钻孔的特殊凹坑中,并且在钻孔进行时提供管道或中空杆的部分。 不对称钻孔力使钻孔路径弯曲,当需要直线钻孔时,钻杆旋转以抵消不对称钻孔力。 一种替代的钻孔工具利用支撑在实心或中空钻杆上的膨胀器,并且具有支撑在直径上且大于杆直径的基端,并从其纵向向前逐渐变细。 它可能具有向前突出较短距离的均匀延伸。 当钻杆的纵向移动时,该工具穿透地球。