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    • 15. 发明申请
    • METHODS FOR BONDING PREFORMED CUTTING TABLES TO CUTTING ELEMENT SUBSTRATES AND CUTTING ELEMENTS FORMED BY SUCH PROCESSES
    • 将预制切割台与切割元件基板和由此工艺形成的切割元件连接的方法
    • US20100243337A1
    • 2010-09-30
    • US12751520
    • 2010-03-31
    • Danny E. Scott
    • Danny E. Scott
    • E21B10/567B21K5/04
    • B24D3/007B22F2005/001B22F2998/00B24D3/10B24D18/0009B24D99/005E21B10/55E21B10/567E21B10/5735C22C29/08C22C26/00B22F3/14
    • A cutting element for use with an earth boring drill bit includes a diamond cutting table that is substantially free of a metallic binder. The cutting table may include polycrystalline diamond and a carbonate binder or polycrystalline diamond with silicon and/or silicon carbide dispersed therethrough. A base of the cutting table is secured to a substrate by way of an adhesion layer. The adhesion layer includes diamond. The adhesion layer may also include cobalt or another suitable binder material, which may be mixed with diamond particles from which the adhesion layer is formed, or may leach from the substrate into the adhesion layer as the cutting element is bonded to the substrate. Alternatively, the cutting table may be formed from and consist essentially of chemical vapor deposited diamond that has been diamond bonded to an underlying polycrystalline diamond compact. Processes for securing substantially metallic binder-free cutting elements to substrates are also disclosed.
    • 用于钻孔钻头的切割元件包括基本上不含金属粘合剂的金刚石切割台。 切割台可以包括多晶金刚石和碳化物粘合剂或者通过其分散有硅和/或碳化硅的多晶金刚石。 切割台的基底通过粘合层固定到基底上。 粘合层包括金刚石。 粘合层还可以包括钴或另一种合适的粘合剂材料,其可以与形成粘合层的金刚石颗粒混合,或者当切割元件结合到基底时可以从基底浸入粘附层中。 或者,切割台可以由金刚石结合到下面的多晶金刚石复合体上并由其基本上由金刚石沉积的金刚石形成。 还公开了用于将基本上金属的无粘合剂的切割元件固定到基底的工艺。
    • 16. 发明申请
    • ABRASIVE-IMPREGNATED CUTTING STRUCTURE HAVING ANISOTROPIC WEAR RESISTANCE AND DRAG BIT INCLUDING SAME
    • 具有各向异性抗磨损性能的刮刀式切割结构及其包括
    • US20090217597A1
    • 2009-09-03
    • US12396556
    • 2009-03-03
    • Van J. BrackinJeffrey B. LundDanny E. ScottMarcus R. SkeemMatthew R. Isbell
    • Van J. BrackinJeffrey B. LundDanny E. ScottMarcus R. SkeemMatthew R. Isbell
    • B24D3/00
    • E21B10/54B33Y80/00E21B10/46
    • An abrasive-impregnated cutting structure for use in drilling a subterranean formation is disclosed. The abrasive-impregnated cutting structure may comprise a plurality of abrasive particles dispersed within a substantially continuous matrix, wherein the abrasive-impregnated cutting structure exhibits an anisotropic wear resistance. One or more of the amount, average size, composition, properties, shape, quality, strength, and concentration of the abrasive particles may vary within the abrasive-impregnated cutting structure. Anisotropic wear resistance may relate to a selected direction, such as, for example, one or more of an expected direction of engagement of the abrasive-impregnated cutting structure with the subterranean formation and an anticipated wear direction. Anisotropic wear resistance of an abrasive-impregnated cutting structure may be configured for forming or retaining a formation-engaging leading edge thereof. A rotary drag bit including at least one abrasive-impregnated cutting structure is disclosed.
    • 公开了一种用于钻探地下地层的磨料浸渍切割结构。 磨料浸渍的切割结构可以包括分散在基本上连续的基质中的多个磨料颗粒,其中磨料浸渍的切割结构呈现各向异性的耐磨性。 磨料颗粒的数量,平均尺寸,组成,性能,形状,质量,强度和浓度中的一种或多种可以在磨料浸渍的切割结构内变化。 各向异性耐磨性可以涉及所选择的方向,例如,磨料浸渍的切割结构与地层的预期接合方向中的一个或多个以及预期的磨损方向。 磨料浸渍的切割结构的各向异性耐磨性可以被构造成用于形成或保持其与地层接合的前缘。 公开了一种包括至少一个磨料浸渍的切割结构的旋转牵引钻头。
    • 17. 发明申请
    • CHAMFERED EDGE GAGE CUTTERS, DRILL BITS SO EQUIPPED, AND METHODS OF CUTTER MANUFACTURE
    • 切割边缘切割机,这样的钻头和切割机的制造方法
    • US20090057031A1
    • 2009-03-05
    • US12198246
    • 2008-08-26
    • Suresh G. PatelDanny E. ScottL. Allen Sinor
    • Suresh G. PatelDanny E. ScottL. Allen Sinor
    • E21B10/46
    • E21B10/5673
    • A cutting element for an earth boring bit, wherein the PDC layer of the cutting element has a flat on a periphery thereof terminating longitudinally at en edge spaced from of the cutting face of the PDC layer. A chamfer adjacent the cutting face desirably has a length that exceeds its depth. Embodiments include a chamfer along the entire circumference of the cutting element, multiple step-wise, radially adjacent chamfers, and multiple circumferentially spaced portions of the uppermost radius of the PDC layer of the cutting element that each includes a chamfer with an associated flat. An embodiment including a flat terminating at a radial edge with the cutting face of a PDC layer is also disclosed, as are drill bits incorporating embodiments of the cutting elements of the invention and a method of forming the cutting elements.
    • 一种用于钻孔钻头的切割元件,其中切割元件的PDC层在其周边上具有在PDC层的切割面间隔开的边缘处纵向延伸的平面。 与切割面相邻的倒角希望具有超过其深度的长度。 实施例包括沿着切割元件的整个圆周的倒角,多个逐步的,径向相邻的倒角,以及切割元件的PDC层的最上半径的多个周向间隔的部分,每个包括具有相关平面的倒角。 还公开了一种包括具有PDC层的切割面的径向边缘处的平坦的实施例,以及结合本发明的切割元件的实施例的钻头以及形成切割元件的方法。
    • 19. 发明授权
    • Method of manufacturing PDC cutter with chambers or passages
    • 制造具有腔室或通道的PDC切割机的方法
    • US06655234B2
    • 2003-12-02
    • US09495143
    • 2000-01-31
    • Danny E. Scott
    • Danny E. Scott
    • B21K504
    • E21B10/567E21B10/602E21B10/61Y10S76/11Y10S76/12
    • The cutting element including a cutting element for a drill bit used in drilling subterranean formations is formed with an internal chamber or passage for the flow of drilling fluid therethrough. A substrate having at least one internal passage, and prior to attaching a superabrasive table thereto, the at least one internal passage is filled with a removable substantially incompressible filler material. Attachment or bonding of the superabrasive table to the substrate under high temperature and high pressure is accomplished without significant distortion of the shape and size of the internal passage. The filler material may be a crystalline salt such as sodium chloride or halite, which is removable by dissolution in water, or may be boron nitride or a volcanic material such as Pyrofolyte material which is mechanically removable.
    • 用于钻井地下地层中的钻头的切割元件形成有用于使钻井液流过其中的内部室或通道。 切割元件包括具有至少一个内部通道的基底,并且在将超级磨料台附接到其之前,至少一个内部通道填充有可移除的基本不可压缩的填充材料。 在高温和高压下将超级磨料台附着或粘合到基底上,而不会使内部通道的形状和尺寸发生明显变形。 填充材料可以是结晶盐,例如氯化钠或盐酸盐,其可以通过溶解在水中而被除去,或者可以是氮化硼或火山材料,例如机械可去除的热解物质材料。