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    • 1. 发明授权
    • Composite nozzles for rock bits
    • 岩石复合喷嘴
    • US5494122A
    • 1996-02-27
    • US317969
    • 1994-10-04
    • James L. LarsenMichael A. SirackiThomas W. OldhamMadapusi K. Keshavan
    • James L. LarsenMichael A. SirackiThomas W. OldhamMadapusi K. Keshavan
    • E21B10/18E21B10/60E21B10/61E21B10/62
    • E21B10/61E21B10/18E21B10/62
    • A composite mini-extended nozzle is disclosed that is designed to both resist erosion and be strong enough to withstand the shock of a downhole drilling environment. In addition, means are provided to shroud at least a portion of the extended nozzle to further protect a portion of the nozzle nearest the exit plane from downhole obstructions. A combination of materials used to form the nozzle may include a matrix of tungsten carbides with suitable binder joined to an outer metal jacket nozzle body. A third ceramic matrix material may be utilized to line or partially line an interior passage formed by the mini-extended nozzle and a reduced in diameter portion of the nozzle design may include a built-in fracture plane in the unlikely event the end of the nozzle hits an obstruction. The extended portion of the nozzle will shear off along this fracture plane thereby preventing a nozzle washout that likely would result in a trip out of the hole to repair the resultant damage to the rock bit.
    • 公开了一种复合微型延伸喷嘴,其设计成既可以抵抗侵蚀,又能够承受井下钻井环境的冲击。 此外,提供了用于遮盖延伸喷嘴的至少一部分的装置,以进一步保护最靠近出口平面的喷嘴的一部分不受井下障碍物的影响。 用于形成喷嘴的材料的组合可以包括具有与外部金属护套喷嘴体接合的合适粘合剂的碳化钨基体。 可以使用第三陶瓷基质材料将由微型扩展喷嘴形成的内部通道排列或部分排列,并且喷嘴设计的减小的直径部分可以包括在不太可能的情况下喷嘴端部的内置断裂平面 遇到障碍 喷嘴的延伸部分将沿着该断裂平面剪切,从而防止可能导致从孔中脱出的喷嘴冲洗,以修复对钻石钻头造成的损坏。
    • 6. 发明授权
    • Bonding of cutters in diamond drill bits
    • 金刚石钻头切割机的接合
    • US07997358B2
    • 2011-08-16
    • US12582212
    • 2009-10-20
    • Saul N IzaguirreThomas W. OldhamKumar T KembaiyanGary ChunnAnthony GriffoRobert DentonBrian A White
    • Saul N IzaguirreThomas W. OldhamKumar T KembaiyanGary ChunnAnthony GriffoRobert DentonBrian A White
    • E21B10/46
    • E21B10/567B22F7/06B22F7/062B22F2005/001
    • A bit body formed of a mixture of matrix material and superabrasive powder and including pockets lined with superabrasive-free matrix material, and a method for forming the same, are provided. The pockets are shaped to receive cutting elements therein. The superabrasive-free matrix material enhances braze strength when a cutting element is brazed to surfaces of the pocket. The method for forming the drill bit body includes providing a mold and displacements. The displacements are coated with a mixture of superabrasive free matrix-material and an organic binder. The mold is packed with a mixture of matrix material and superabrasive powder and the arrangement heated to form a solid drill bit body. When the solid bit body is removed from the mold, pockets are formed by the displacements in the bit body and are lined with the layer of superabrasive-free matrix material. The superabrasive material may be diamond, polycrystalline cubic boron nitride, SiC or TiB2 in exemplary embodiments.
    • 由基体材料和超级磨料粉末的混合物形成的一个体,并且包括衬有超无磨料基质材料的口袋及其形成方法。 口袋被成形为在其中容纳切割元件。 当将切割元件钎焊到袋的表面时,超无磨料基质材料增强了钎焊强度。 用于形成钻头体的方法包括提供模具和位移。 位移用超磨料自由基质材料和有机粘合剂的混合物涂覆。 模具中填充有基体材料和超级磨料粉末的混合物,并将该装置加热形成固体钻头体。 当固体钻头体从模具中取出时,通过钻头体中的位移形成凹坑,并且衬有超级无磨料基体材料层。 在示例性实施例中,超研磨材料可以是金刚石,多晶立方氮化硼,SiC或TiB 2。