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    • 1. 发明申请
    • Cutting elements configured for casing component drillout and earth boring drill bits including same
    • 配置用于套管部件排屑的切削元件和包括其的钻孔钻头
    • US20070079995A1
    • 2007-04-12
    • US11524503
    • 2006-09-20
    • Eric McClainJohn ThomasSarvesh TyagiJack OldhamLester ClarkWilliam Heuser
    • Eric McClainJohn ThomasSarvesh TyagiJack OldhamLester ClarkWilliam Heuser
    • E21B10/46
    • E21B10/56E21B10/43E21B10/567E21B17/14E21B29/00E21B29/06
    • A drill bit includes a bit body having a face on which two different types of cutting elements are disposed, the first type being cutting elements suitable for drilling at least one subterranean formation and the second type being cutting elements suitable for drilling through a casing bit disposed at an end of a casing or liner string and cementing equipment or other components, if such are disposed within the casing or liner string, as well as cement inside as well as exterior to the casing or liner string. The second type of cutting elements exhibits a relatively greater exposure than the first type of cutting elements, so as to engage the interior of the casing bit and, if present, cementing equipment components and cement to drill therethrough, after which the second type of cutting elements quickly wears upon engagement with the subterranean formation material exterior to the casing bit, and the first type of cutting elements continues to drill the subterranean formation. The first type of cutting elements may comprise superabrasive cutting elements and the second type of cutting elements may comprise abrasive or superabrasive cutting elements comprising a plurality of configurations.
    • 钻头包括具有面的两个不同类型的切割元件的钻头体,第一类型是适合于钻取至少一个地下地层的切割元件,第二类型是适于通过设置的套管钻头进行钻孔的切割元件 在套管或衬管柱的一端,以及固井设备或其他部件,如果这些部件设置在壳体或衬套柱内,以及水泥内部以及外壳或衬套柱的外部。 第二类型的切割元件比第一类型的切割元件具有相对更大的曝光,以便接合套筒钻头的内部,如果存在的话,将固井设备部件和水泥钻入其中,之后进行第二种切割 元件在与套管钻头外部的地层形成材料接合时快速磨损,并且第一类型的切削元件继续钻入地层。 第一类型的切割元件可以包括超级磨料切割元件,并且第二类型的切割元件可以包括包括多个构造的磨料或超级磨料切割元件。
    • 4. 发明申请
    • Earth boring drill bits with casing component drill out capability and methods of use
    • 地球钻头与套管组件钻孔能力和使用方法
    • US20060070771A1
    • 2006-04-06
    • US11234076
    • 2005-09-23
    • Eric McClainJack Oldham
    • Eric McClainJack Oldham
    • E21B10/00
    • E21B29/06E21B10/43E21B10/56E21B10/567E21B17/14
    • A drill bit including a bit body having a face on which two different types of cutting elements are disposed, the first type being cutting elements suitable for drilling at least one subterranean formation and the second type being cutting elements suitable for drilling through a casing bit disposed at and end of a casing or liner string and cementing equipment or other components, if such are disposed within the casing or liner string, as well as cement inside as well as exterior to the casing or liner string. The second type of cutting elements exhibits a relatively greater exposure than the first type of cutting elements, so as to engage the interior of the casing bit and, if present, cementing equipment components and cement to drill therethrough, after which the second type of cutting elements quickly wears upon engagement with the subterranean formation material exterior to the casing bit, and the first type of cutting element continues to drill the subterranean formation. The first type of cutting elements may comprise superabrasive cutting elements and the second type of cutting elements may comprise tungsten carbide cutting elements.
    • 一种钻头,包括具有其上设置有两种不同类型的切割元件的面的钻头体,所述第一类型是适于钻取至少一个地下地层的切割元件,并且所述第二类型是适于通过设置的套管钻头进行钻孔的切割元件 套管或内衬管柱以及固井设备或其它部件的端部和端部,如果这些部件设置在套管或衬套线内,以及水泥内部以及外壳或衬套柱的外部。 第二类型的切割元件比第一类型的切割元件具有相对更大的曝光,以便接合套筒钻头的内部,如果存在的话,将固井设备部件和水泥钻入其中,之后进行第二种切割 元件在与套管钻头外部的地层形成材料接合时快速磨损,并且第一类型的切削元件继续钻入地层。 第一类型的切割元件可以包括超级磨料切割元件,并且第二类型的切割元件可以包括碳化钨切割元件。
    • 6. 发明申请
    • Methods for optimizing efficiency and durability of rotary drag bits and rotary drag bits designed for optimal efficiency and durability
    • 用于优化旋转拖曳钻头和旋转拖曳钻头的效率和耐久性的方法,旨在实现最佳的效率和耐久性
    • US20070106487A1
    • 2007-05-10
    • US11594710
    • 2006-11-08
    • David GaviaJack OldhamMathews GeorgeMichael Doster
    • David GaviaJack OldhamMathews GeorgeMichael Doster
    • G06G7/48
    • E21B10/54E21B10/00
    • A method for evaluating existing drill bits and drill bit designs includes measuring several desired characteristics of a bit, including the wear experienced in drilling a formation, such as an actual formation or a simulated formation or a laboratory test fixture. A computer model may be used to evaluate the work-force and/or the sliding-wear rates that cutting elements of the bit experience as compared with the rate-of-penetration and/or durability of the bit. This information may be used to design a new drill bit, which may involve modification of the cutting elements (e.g., moving the location, volume (size and shape) or number of cutting elements from areas of the bit that receive lower work-force and sliding-wear rates to those areas that experience relatively greater work-force and sliding wear-rates. This may permit the cutting elements to be oriented more aggressively relative to a formation to be drilled. Other parameters that may be optimized include the bit profile, blade count, hydraulics, or the like.
    • 用于评估现有钻头和钻头设计的方法包括测量钻头的几个期望特性,包括钻探地层(例如实际地层或模拟地层)或实验室测试夹具所经历的磨损。 可以使用计算机模型来评估钻头的切削元件与钻头的穿透速率和/或耐久性相比的经验的作用力和/或滑动磨损率。 该信息可以用于设计新的钻头,其可以涉及切割元件的修改(例如,移动位置,体积(尺寸和形状)或切割元件的数量从接收较低的作用力的钻头的区域,以及 对于经历相对较大的工作力和滑动磨损率的区域的滑动磨损率,这可能允许切削元件相对于要钻削的地层更积极地定向,可以优化的其它参数包括钻头轮廓, 叶片数量,液压装置等。
    • 7. 发明申请
    • Drilling tool equipped with improved cutting element layout to reduce cutter damage through formation changes, methods of design and operation thereof
    • 钻具具有改进的切割元件布局,通过地层变化减少刀具损坏,其设计和操作方法
    • US20060185901A1
    • 2006-08-24
    • US11064108
    • 2005-02-22
    • L. SinorJack Oldham
    • L. SinorJack Oldham
    • E21B10/36E21B47/00
    • E21B10/43E21B10/26E21B10/55
    • A drilling tool including at least two cutting elements (e.g., redundant or upon a selected profile region) sized, positioned, and configured thereon so as to contact or encounter a change in at least one drilling characteristic of subterranean formation along an anticipated drilling path prior to other cutting elements thereon encountering same is disclosed. Methods of designing a drilling tool are also disclosed including placing such cutting elements upon the cutting element profile in relation to a predicted boundary surface along an anticipated drilling path. Methods of operating a drilling tool so as to initially contact a boundary surface between two differing regions of a subterranean formation drilled with at least two cutting elements is disclosed. The cutting elements configured on drilling tools and methods of the present invention may be designed for limiting lateral force or generating a lateral force having a desired direction during drilling associated therewith.
    • 一种钻孔工具,其包括至少两个切割元件(例如,冗余的或在选定的轮廓区域上),其大小,定位和构造在其上,以沿着预期的钻孔路径接触或遇到地下岩层的至少一个钻孔特征的变化 涉及其上的其它切割元件被公开。 还公开了设计钻具的方法,包括将切割元件相对于预期的沿着预期的钻孔路径的预定边界面放置在切割元件轮廓上。 公开了操作钻具以最初接触钻探至少两个切割元件的地层的两个不同区域之间的边界表面的方法。 配置在本发明的钻具和方法上的切割元件可被设计成用于限制横向力或产生具有与其相关联的钻孔期望方向的横向力。