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    • 1. 发明授权
    • Method and system for perceiving a boundary between a first region and second region of a superabrasive volume
    • 用于感知超研磨体积的第一区域和第二区域之间的边界的方法和系统
    • US09423364B1
    • 2016-08-23
    • US14612957
    • 2015-02-03
    • US Synthetic Corporation
    • Giovani J. GongoraMichael A. Vail
    • G01N21/64G01N23/22G01T1/18G01N23/223
    • G01N23/22G01N23/203G01N23/223G01T1/18
    • Methods of evaluating a superabrasive volume or a superabrasive compact are disclosed. One method may comprise exposing a superabrasive volume to radiation and detecting a response of the radiation when it interacts with the superabrasive volume. In one embodiment, a boundary may be perceived between a first region and a second region of the superabrasive volume in response to detecting the response of the radiation. In one particular embodiment, a boundary between a catalyst-containing region and a catalyst-diminished region of a polycrystalline diamond volume may be perceived. Additionally, a depth to which a catalyst-diminished region extends within a polycrystalline diamond volume of a polycrystalline diamond compact may be measured based on the monitored response of the radiation. In a further embodiment, a non-planar boundary between the two regions may be mapped. A system configured to evaluate a superabrasive volume is also disclosed.
    • 公开了评价超研磨体或超硬磨料的方法。 一种方法可以包括将超研磨体暴露于辐射并且当其与超级磨料体积相互作用时检测辐射的响应。 在一个实施例中,响应于检测到辐射的响应,可以在超研磨体的第一区域和第二区域之间感知边界。 在一个具体实施方案中,可以感觉到含催化剂的区域和多晶金刚石体积的催化剂减少区域之间的边界。 此外,可以基于所监测的辐射响应来测量催化剂减小区域在多晶金刚石致密体的多晶金刚石体积内延伸的深度。 在另一个实施例中,可以映射两个区域之间的非平面边界。 还公开了一种用于评估超研磨体积的系统。
    • 2. 发明授权
    • Method and system for perceiving a boundary between a first region and a second region of a superabrasive volume
    • 用于感知超研磨体积的第一区域和第二区域之间的边界的方法和系统
    • US08969833B1
    • 2015-03-03
    • US13714758
    • 2012-12-14
    • US Synthetic Corporation
    • Giovani J. GongoraMichael A. Vail
    • G01N21/64G01N23/22
    • G01N23/22G01N23/203G01N23/223G01T1/18
    • Methods of evaluating a superabrasive volume or a superabrasive compact are disclosed. One method may comprise exposing a superabrasive volume to radiation and detecting a response of the radiation when it interacts with the superabrasive volume. In one embodiment, a boundary may be perceived between a first region and a second region of the superabrasive volume in response to detecting the response of the radiation. In one particular embodiment, a boundary between a catalyst-containing region and a catalyst-diminished region of a polycrystalline diamond volume may be perceived. Additionally, a depth to which a catalyst-diminished region extends within a polycrystalline diamond volume of a polycrystalline diamond compact may be measured based on the monitored response of the radiation. In a further embodiment, a non-planar boundary between the two regions may be mapped. A system configured to evaluate a superabrasive volume is also disclosed.
    • 公开了评价超研磨体或超硬磨料的方法。 一种方法可以包括将超研磨体暴露于辐射并且当其与超级磨料体积相互作用时检测辐射的响应。 在一个实施例中,响应于检测到辐射的响应,可以在超研磨体的第一区域和第二区域之间感知边界。 在一个具体实施方案中,可以感觉到含催化剂的区域和多晶金刚石体积的催化剂减少区域之间的边界。 此外,可以基于所监测的辐射响应来测量催化剂减小区域在多晶金刚石致密体的多晶金刚石体积内延伸的深度。 在另一个实施例中,可以映射两个区域之间的非平面边界。 还公开了一种用于评估超研磨体积的系统。