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    • 1. 发明申请
    • RETRIEVAL TOOL
    • 检索工具
    • WO2017160981A1
    • 2017-09-21
    • PCT/US2017/022506
    • 2017-03-15
    • BEYNON, Douglas, T.
    • BEYNON, Douglas, T.
    • E21B31/16E21B25/06
    • E21B27/00E21B25/04E21B31/16E21B31/18E21B37/00
    • A tool for retrieving material from a well. The tool has a cylindrical tool body, malleable members, and a cylindrical jacket. The tool body defines a chamber adapted to receive material for retrieval. The malleable members are on the lower end of the tool body and preferably are made of a relatively hard, tough malleable material such as steel. They are bendable from an open position allowing material to enter the chamber to a closed position capturing the material. The jacket is mounted on the exterior of the tool body and has a mill surface which is adapted to bend the malleable members from the open position to the closed position. Relative axial movement of the jacket and the tool body causes the malleable members to bear on the mill surface and bend to the closed position.
    • 用于从井中检索材料的工具。 该工具具有圆柱形工具主体,可延展构件和圆柱形夹克。 工具主体限定适于接收材料以供取回的腔室。 可锻构件位于工具主体的下端,并且优选地由诸如钢的相对坚硬,韧性可锻材料制成。 它们可从打开的位置弯曲,从而允许材料进入腔室到捕获材料的关闭位置。 护套安装在工具主体的外部并且具有适于将可锻构件从打开位置弯曲到关闭位置的研磨表面。 夹套和工具主体的相对轴向运动使可锻构件承载在研磨机表面上并弯曲到关闭位置。

    • 4. 发明申请
    • DRILLING APPARATUS
    • 钻孔设备
    • WO1997002405A1
    • 1997-01-23
    • PCT/AU1996000421
    • 1996-07-05
    • ABA-SUN PTY. LIMITEDGRAY, Robert
    • ABA-SUN PTY. LIMITED
    • E21B49/02
    • E21B49/005E21B6/00E21B17/0426E21B17/07E21B21/12E21B25/04
    • The invention relates to a drilling apparatus (10) for soil sampling and to support and collection apparatuses for use with the drilling apparatus (10). The drilling apparatus (10) comprises a rotary drive assembly (13) with a cutter assembly (15) connected thereto. The cutter assembly (15), housed within the outer casing (32) of the drilling apparatus (10), comprises outer (24) and inner (19) assemblies that can move independently of each other. The cutter assembly (15) has concave peripheral cutting edges (16, 18). The support apparatus (121) enables a drill string to be extended whereby one end (122) of the support is removably attached to a drill extension assembly (110) and the other end is removably attached to the drill string. Removal of the support (121) enables the extension assembly (110) to be attached to the drill string. The collection apparatus for collecting drill cuttings comprises a tubular body (213) of two opposed removable complementary members each of substantially semi-circular cross section. End caps (220) are provided for the tubular body (213) when it is assembled.
    • 本发明涉及一种用于土壤取样的钻井设备(10)以及用于与钻井设备(10)一起使用的支撑和收集设备。 钻孔设备(10)包括具有连接到其上的切割器组件(15)的旋转驱动组件(13)。 容纳在钻孔设备(10)的外壳(32)内的切割器组件(15)包括彼此独立地移动的外部(24)和内部(19)组件。 刀具组件(15)具有凹形的周边切削刃(16,18)。 支撑装置(121)能够延伸钻柱,从而支撑件的一端(122)可移除地附接到钻头延伸组件(110),并且另一端可移除地附接到钻柱。 移除支撑件(121)使得延伸组件(110)能够附接到钻柱。 用于收集钻屑的收集装置包括两个相对的可移除互补构件的管状体(213),每个都具有大致半圆形横截面。 在组装时,为管状体(213)提供端盖(220)。
    • 5. 发明申请
    • CORING TOOLS INCLUDING CORE SAMPLE FLAP CATCHER AND RELATED METHODS
    • 包括核样品襟翼捕获器的相关工具及相关方法
    • WO2015035147A1
    • 2015-03-12
    • PCT/US2014/054265
    • 2014-09-05
    • BAKER HUGHES INCORPORATED
    • WESEMEIER, ChristophUHLENBERG, Thomas
    • E21B25/04E21B10/02E21B49/02
    • E21B25/10E21B10/02E21B25/00E21B25/04E21B25/14
    • A core sample catcher for a coring tool includes at least one flap catcher member movably coupled to an inner barrel of the coring tool. The at least one flap catcher member is configured to move between a first position and a second position. A passageway extending through the inner barrel is at least substantially un-occluded by the at least one flap catcher member in the first position and at least partially occluded by the at least one flap catcher member in the second position. The core sample catcher also includes a piston member located and configured to retain the at least one flap catcher member in the first position. The piston member is sized and configured to release the at least one flap catcher member as the piston is forced upward within the inner barrel by the core sample. Components are provided and assembled to form core sample catchers.
    • 用于取芯工具的核心样品捕获器包括至少一个可移动地联接到取芯工具的内筒的翼片捕获器构件。 所述至少一个襟翼捕获器构件构造成在第一位置和第二位置之间移动。 延伸穿过内筒的通道至少在第一位置由至少一个襟翼捕获器构件基本上不被遮挡,并且至少部分地被处于第二位置的至少一个襟翼捕获器构件遮挡。 核心样品捕集器还包括位于和构造成将至少一个挡板捕获器构件保持在第一位置的活塞构件。 活塞构件的尺寸和构造尺寸被构造成当活塞在内筒内由芯样品向上压力时释放至少一个挡板捕获器构件。 提供和组装组件以形成核心样品捕获器。
    • 6. 发明申请
    • UNDISTURBED CORE SAMPLER
    • 不可思议的核心取样器
    • WO2012142441A2
    • 2012-10-18
    • PCT/US2012/033565
    • 2012-04-13
    • LONGYEAR TM, INC.LANGAN, Patrick, JosephGAUGH, Erik
    • LANGAN, Patrick, JosephGAUGH, Erik
    • E21B49/06E21B49/08
    • E21B25/04E21B7/24E21B25/00
    • A core sampler that complies with European Standard BS EN ISO 22457-1 and takes Class 1 samples, while being able to withstand forces associated with sonic drilling. The core sampler includes a smaller diameter, thin-walled sampler shoe portion that transitions to a larger diameter, thick-walled tube at a specific distance along the longitudinal axis of the core sampler. The smaller diameter shoe portion allows for an undisturbed sample, while the larger diameter tube imparts sufficient strength to the core sampler such that the core sampler can handle forces associated with sonic drilling techniques. Optionally, the larger diameter tube can provide the thickness needed for a liner.
    • 核心采样器符合欧洲标准BS EN ISO 22457-1标准,并采用1级样品,同时能够承受与声波钻井相关的力。 核心采样器包括一个较小直径的薄壁采样器靴部分,其沿着芯采样器的纵向轴线以特定距离转变到较大直径的厚壁管。 较小直径的鞋部分允许未受干扰的样品,而较大直径的管向芯取样器施加足够的强度,使得芯取样器可以处理与声波钻孔技术相关联的力。 可选地,较大直径的管可以提供衬套所需的厚度。
    • 7. 发明申请
    • APPARATUS FOR DRILLING AND MAINTENANCE OF HOLES IN A GOLF COURSE
    • 高尔夫课程中钻孔和维护的设备
    • WO1993024708A1
    • 1993-12-09
    • PCT/DK1993000178
    • 1993-05-25
    • HANSEN, Finn, Skade
    • E02F05/20
    • E21B17/046E21B3/025E21B17/03E21B25/04
    • The invention relates to an apparatus for drilling and maintaining holes in golf courses. It is built onto a mini-tractor with the drilling unit itself suspended in a hydraulic hoist for moving up and down between a raised and a lowered position. The drilling unit is equipped with a downward directed hollow auger (17) which is operated by the tractor (T). The apparatus is characteristic in that the vertical drill spindle (19, 22) of the drilling unit (B) is designed as a hollow shaft in which the tubular hollow auger (17) is inserted. The hollow auger is inserted from the top and is provided with an upward facing handle (27) which has a transverse grip (28) at the top. Between the hollow auger and the driven hollow shaft-drill spindle there is an anti-turn locking device, for example of the bayonet type (29-33). The quick coupling (29-33) between the hollow auger and the drill spindle provides a quick and convenient way of removing the auger from the apparatus for manual transfer of the cut-out turf core from the hollow auger into the previous (old) hole (H).
    • 本发明涉及一种用于在高尔夫球场中钻孔和保持孔的装置。 它被安装在迷你拖拉机上,钻井单元本身悬挂在液压起重机中,用于在升高和降低位置之间上下移动。 钻井单元配备有由拖拉机(T)操作的向下定向的空心螺旋钻(17)。 该装置的特征在于钻井单元(B)的垂直钻轴(19,22)被设计为中空轴,管状空心螺旋钻(17)插入其中。 中空螺旋钻从顶部插入并设置有向上的手柄(27),其在顶部具有横向抓握部(28)。 在空心螺旋推运器和被驱动的空心轴 - 钻杆之间,具有例如卡口式(29-33)的防转弯锁定装置。 空心螺旋钻和钻杆之间的快速联接(29-33)提供了一种快速方便的方法,用于将切割的草皮芯从中空螺旋钻手动转移到先前的(旧)孔中,从装置中移除螺旋钻 (H)。
    • 9. 发明申请
    • UNDISTURBED CORE SAMPLER
    • 不可思议的核心取样器
    • WO2012142441A3
    • 2013-03-14
    • PCT/US2012033565
    • 2012-04-13
    • LONGYEAR TM INCLANGAN PATRICK JOSEPHGAUGH ERIK
    • LANGAN PATRICK JOSEPHGAUGH ERIK
    • E21B49/06E21B49/08
    • E21B25/04E21B7/24E21B25/00
    • A core sampler that complies with European Standard BS EN ISO 22457-1 and takes Class 1 samples, while being able to withstand forces associated with sonic drilling. The core sampler includes a smaller diameter, thin-walled sampler shoe portion that transitions to a larger diameter, thick-walled tube at a specific distance along the longitudinal axis of the core sampler. The smaller diameter shoe portion allows for an undisturbed sample, while the larger diameter tube imparts sufficient strength to the core sampler such that the core sampler can handle forces associated with sonic drilling techniques. Optionally, the larger diameter tube can provide the thickness needed for a liner.
    • 核心采样器符合欧洲标准BS EN ISO 22457-1标准,并采用1级样品,同时能够承受与声波钻井相关的力。 核心采样器包括一个较小直径的薄壁采样器靴部分,其沿着芯采样器的纵向轴线以特定距离转变到较大直径的厚壁管。 较小直径的鞋部分允许未受干扰的样品,而较大直径的管向芯取样器施加足够的强度,使得芯取样器可以处理与声波钻孔技术相关联的力。 可选地,较大直径的管可以提供衬套所需的厚度。
    • 10. 发明申请
    • CONTINUOUS SOIL SAMPLING SYSTEM AND METHOD
    • 连续采样系统和方法
    • WO1995009962A1
    • 1995-04-13
    • PCT/US1994011025
    • 1994-09-29
    • GOLD STAR MANUFACTURING, INC.MEFFERD, Larry, C.MEFFERD, Floyd, R.
    • GOLD STAR MANUFACTURING, INC.
    • E21B25/04
    • E21B25/04E21B23/00E21B31/18
    • The invention provides an apparatus and method for taking samples of soil and other materials in an efficient manner as well as for maintaining a high level of integrity of the samples. Using a wire line and a release and retrieve assembly (14), the sampling tube (10) is lowered into an auger (28) that has been bored into the ground to the desired depth. Once lowered to the bottom of the auger (28), the sampling tube (10) is locked into place and the release and retrieve assembly (14) is removed from the auger. A portion (76) of the sampling tube (10) extends beyond the drill bit (16). As the auger is drilled further into the ground, the sampling tube (10) is filled with soil or whatever material is present, without such soil or other material having been disturbed by the drill bit (16). This provides integrity of the sample. After the sample has been collected in the sampling tube (10), the release and retrieve assembly (14) is reinserted into the auger (28) and reattached to the sampling tube (10), which is then unlocked and retrieved out of the auger.
    • 本发明提供了一种以有效的方式取样土壤和其他材料的样品以及保持样品的高度完整性的装置和方法。 使用电线和释放和取出组件(14),采样管(10)被降低到已经钻入地面至所需深度的螺旋推运器(28)中。 一旦下降到螺旋推运器(28)的底部,采样管(10)被锁定到位,并且释放和取出组件(14)从螺旋推运器移除。 采样管(10)的一部分(76)延伸超过钻头(16)。 当螺旋钻被进一步钻进地面时,采样管(10)填充有土壤或任何存在的材料,而没有由钻头(16)干扰的这种土壤或其它材料。 这提供了样品的完整性。 样品收集在采样管(10)中之后,将释放和取出组件(14)重新插入螺旋推运器(28)并重新连接到采样管(10)上,然后将其解锁并从螺旋钻中取出 。