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    • 1. 发明授权
    • Nondestructive method of measuring a region within an ultra-hard polycrystalline construction
    • 测量超硬多晶结构区域的非破坏性方法
    • US07801268B1
    • 2010-09-21
    • US12498239
    • 2009-07-06
    • Nephi MourikRonald K. Eyre
    • Nephi MourikRonald K. Eyre
    • G01B15/02
    • G01B15/02
    • Methods for nondestructively measuring a characteristic within an ultra-hard polycrystalline construction comprises projecting a beam of energy from an emitter onto the construction. The energy is directed to a target region within the ultra-hard polycrystalline construction and passes through the construction where it is received by a detector. The target region can be within a diamond body of the construction, and can relate to an interface between two or more regions within the diamond body. The energy that is received by the detector is evaluated for the purpose of determining the desired measurement characteristic. In an example embodiment, the measured characteristic can be the interface of between two or more regions and the distance from a surface of the construction to the interface. The method can be used to generate an average distance within the construction, and to provide a visual image of the same in a nondestructive manner.
    • 用于非破坏性地测量超硬多晶结构中的特性的方法包括将能量束从发射器投射到构造上。 能量被引导到超硬多晶结构内的目标区域,并且通过由检测器接收的结构。 目标区域可以在结构的金刚石体内,并且可以涉及金刚石体内的两个或更多个区域之间的界面。 为了确定期望的测量特性,评估由检测器接收的能量。 在示例性实施例中,测量的特性可以是两个或更多个区域之间的界面以及从构造表面到界面的距离。 该方法可用于在该结构内生成平均距离,并且以非破坏性的方式提供该视觉图像。
    • 2. 发明授权
    • Nondestructive method of measuring a region within an ultra-hard polycrystalline construction
    • 测量超硬多晶结构区域的非破坏性方法
    • US07558369B1
    • 2009-07-07
    • US11745975
    • 2007-05-08
    • Nephi MourikRonald K. Eyre
    • Nephi MourikRonald K. Eyre
    • G01B15/02
    • G01B15/02
    • Methods for nondestructively measuring a characteristic within an ultra-hard polycrystalline construction comprises projecting a beam of energy from an emitter onto the construction. The energy is directed to a target region within the ultra-hard polycrystalline construction and passes through the construction where it is received by a detector. The target region can be within a diamond body of the construction, and can relate to an interface between two or more regions within the diamond body. The energy that is received by the detector is evaluated for the purpose of determining the desired measurement characteristic. In an example embodiment, the measured characteristic can be the interface of between two or more regions and the distance from a surface of the construction to the interface. The method can be used to generate an average distance within the construction, and to provide a visual image of the same in a nondestructive manner.
    • 用于非破坏性地测量超硬多晶结构中的特性的方法包括将能量束从发射器投射到构造上。 能量被引导到超硬多晶结构内的目标区域,并且通过由检测器接收的结构。 目标区域可以在结构的金刚石体内,并且可以涉及金刚石体内的两个或更多个区域之间的界面。 为了确定期望的测量特性,评估由检测器接收的能量。 在示例性实施例中,测量的特性可以是两个或更多个区域之间的界面以及从构造表面到界面的距离。 该方法可用于在该结构内生成平均距离,并且以非破坏性的方式提供该视觉图像。
    • 4. 发明授权
    • Deep leach pressure vessel for shear cutters
    • 用于剪切机的深浸压力容器
    • US08932377B2
    • 2015-01-13
    • US13409938
    • 2012-03-01
    • J. Daniel BelnapPeter Thomas CariveauLoel CorbettRonald K. Eyre
    • J. Daniel BelnapPeter Thomas CariveauLoel CorbettRonald K. Eyre
    • B24D3/00B24D11/00B24D18/00C09K3/14B24D3/02C09C1/68E21B10/567B22F5/00
    • E21B10/567B22F2005/001B22F2998/00C22C2204/00C22C26/00
    • A system for producing thermally stable cutting elements may include a heat source, a pressure vessel, at least one polycrystalline diamond body attached to a carbide substrate, and a leaching agent is disclosed, wherein the heat source includes a container comprising at least one receiving mechanism and at least one retention mechanism, and wherein the carbide substrate is disposed in the at least one receiving mechanism of the pressure vessel, and wherein the leaching agent is disposed in the pressure vessel, and wherein the leaching agent removes the catalyzing material from the interstitial spaces interposed between the diamond particles of the at least one polycrystalline diamond body, and wherein the at least one retention mechanism of the pressure vessel seals at least a portion of the carbide substrate into the at least one receiving mechanism and prevents the leaching agent from contacting at least a portion of the carbide substrate.
    • 公开了一种用于生产热稳定的切割元件的系统,其包括热源,压力容器,连接到碳化物基底的至少一个多晶金刚石体和浸出剂,其中所述热源包括容器,所述容器包括至少一个接收机构 以及至少一个保持机构,并且其中所述碳化物基底设置在所述压力容器的所述至少一个接收机构中,并且其中所述浸出剂设置在所述压力容器中,并且其中所述浸出剂从所述间隙中除去所述催化材料 介于所述至少一个多晶金刚石体的所述金刚石颗粒之间的空间,并且其中所述压力容器的所述至少一个保持机构将所述碳化物衬底的至少一部分密封到所述至少一个接收机构中并防止所述浸出剂接触 至少一部分碳化物衬底。
    • 5. 发明授权
    • Non-planar interface construction
    • 非平面接口构造
    • US08627905B2
    • 2014-01-14
    • US12857983
    • 2010-08-17
    • Ronald K. EyreGeorgiy Voronin
    • Ronald K. EyreGeorgiy Voronin
    • E21B10/36
    • E21B10/5673
    • A cutting element is provided, including a substrate and an ultra-hard material layer formed over the substrate. At one end of the substrate is an interface surface that interfaces with the ultra-hard material layer to bond the layer to the substrate. The interface surface includes a first or outer annular section that extends to the peripheral edge of the substrate, and a second or inner section that is radially inside the first section. The interface surface includes several spaced-apart projections arranged in an annular row. In one aspect, each projection has an upper surface that defines a groove bisecting the projection. In another aspect, the interface surface may include a bridge coupling adjacent projections.
    • 提供了一种切割元件,其包括在基板上形成的基板和超硬材料层。 在基板的一端是与超硬材料层接合以将该层粘合到基底的界面。 界面表面包括延伸到基底的周边边缘的第一或外部环形部分,以及在第一部分的径向内侧的第二或内部部分。 界面表面包括以环形排布置的若干间隔开的突起。 在一个方面,每个突起具有限定将平面对准突起的凹槽的上表面。 在另一方面,接口表面可以包括耦合相邻突起的桥。
    • 7. 发明申请
    • Cutting elements and bits incorporating the same
    • 切割元素和结合其的位
    • US20080302578A1
    • 2008-12-11
    • US11811671
    • 2007-06-11
    • Ronald K. EyreYabei Gu
    • Ronald K. EyreYabei Gu
    • E21B10/573E21B10/46
    • E21B10/5735
    • A cutting element is provided including a substrate having a periphery and an interface surface. An ultra hard material layer is formed over the substrate and interfaces with the interface surface. The interface surface also includes a plurality of spaced apart projections formed inwardly and spaced apart from the periphery and arranged around an annular path, such that each projection includes a convex upper surface defining the projection as viewed in plan view. Each upper surface continuously and smoothly curves in the same direction when viewed along a plane through a diameter of the substrate. Bits incorporating such cutting elements are also provided.
    • 提供一种切割元件,包括具有周边和界面的基板。 在基板上形成超硬材料层,并与界面表面相接。 界面表面还包括多个间隔开的突起,其形成为向内并与周边隔开并且围绕环形路径布置,使得每个突起包括在俯视图中观察时限定突起的凸起上表面。 当沿着平面穿过衬底的直径观察时,每个上表面沿相同方向连续且平滑地弯曲。 还提供了结合这种切割元件的钻头。