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    • 1. 发明授权
    • Inspection of pipe interior
    • 检查管内部
    • US08869638B2
    • 2014-10-28
    • US13439438
    • 2012-04-04
    • Anthony G. RazzellRobert J. Mitchell
    • Anthony G. RazzellRobert J. Mitchell
    • G01N21/88G01F23/296G01N29/22G01N29/265
    • G01F23/296G01N29/222G01N29/265G01N2291/044
    • A method for inspecting the interior of a non-horizontal pipe includes (a) filling the pipe with a first fluid, (b) feeding a second fluid into a lower part of the pipe when the second fluid is more dense than the first fluid or into an upper part of the pipe when the second fluid is less dense than the second fluid the pipe, a meniscus forming between the first and the second fluid and moving along the pipe, (c) introducing an inspection device having an average density between the densities of the first and second fluids such that the device locates at and moves with the meniscus, (d) obtaining inspection data from the inspection device as the device moves along the pipe, (e) determining positions of the meniscus as it moves along the pipe, and (f) relating the meniscus positions to positions at which the inspection data is obtained.
    • 用于检查非水平管的内部的方法包括(a)用第一流体填充管,(b)当第二流体比第一流体更致密时,将第二流体供给到管的下部,或 当所述第二流体比所述第二流体密度小时,在所述管的上部形成弯液面,所述弯液面在所述第一流体和所述第二流体之间形成并沿着所述管移动,(c)引入检查装置,所述检查装置的平均密度在 所述第一和第二流体的密度使得所述装置位于所述弯月面处并随其移动,(d)当所述装置沿着所述管移动时,从所述检查装置获得检查数据,(e)确定所述弯月面沿着所述弯液面移动时的位置 管道,以及(f)将弯液面位置与获得检​​查数据的位置相关联。
    • 7. 发明申请
    • High throughput wafer notch aligner
    • 高通量晶圆缺口对准器
    • US20080138175A1
    • 2008-06-12
    • US11634697
    • 2006-12-06
    • Robert J. MitchellJoseph Ferrara
    • Robert J. MitchellJoseph Ferrara
    • H01L21/677B65H1/00G06F7/00
    • H01L21/681H01L21/67265H01L21/67745
    • An ion implantation apparatus, system, and method are provided for a transferring a plurality of workpieces between vacuum and atmospheric pressures, wherein an alignment mechanism is operable to align a plurality of workpieces for generally simultaneous transportation to a dual-workpiece load lock chamber. The alignment mechanism comprises a characterization device, an elevator, and two vertically-aligned workpiece supports for supporting two workpieces. First and second atmospheric robots are configured to generally simultaneously transfer two workpieces at a time between load lock modules, the alignment mechanism, and a FOUP. Third and fourth vacuum robots are configured to transfer one workpiece at a time between the load lock modules and a process module.
    • 提供一种用于在真空和大气压之间传送多个工件的离子注入装置,系统和方法,其中对准机构可操作以将多个工件对准,以便大体上同时传送到双工件加载锁定室。 对准机构包括表征装置,电梯和用于支撑两个工件的两个垂直对齐的工件支撑件。 第一和第二大气机器人被配置为一般在负载锁定模块,对准机构和FOUP之间同时传送两个工件。 第三和第四真空机器人被配置为在加载锁模块和处理模块之间一次传送一个工件。
    • 10. 发明申请
    • Single crystal component and a method of heat treating a single crystal component
    • 单晶成分和单晶成分的热处理方法
    • US20100043929A1
    • 2010-02-25
    • US12461012
    • 2009-07-29
    • Robert A. HobbsSammy TinCatherine M.F. RaeRobert J. Mitchell
    • Robert A. HobbsSammy TinCatherine M.F. RaeRobert J. Mitchell
    • C22F1/00C21D9/00
    • F01D5/28C22F1/10F01D5/225F01D5/3007F05D2300/607
    • A single crystal component comprising a first region and a second region. The component comprising a nickel base single crystal superalloy having a gamma phase matrix and gamma prime phase precipitates distributed in the gamma phase matrix. The first region of the component comprises a bi-modal distribution of gamma prime phase precipitates in the gamma phase matrix and the second region of the component comprising a uni-modal distribution of gamma prime phase precipitates in the gamma phase matrix. The uni-modal distribution of gamma prime phase precipitates consisting of primary cuboidal gamma prime phase precipitates and the bi-modal distribution of gamma prime phase precipitates consisting of primary cuboidal gamma prime phase precipitates and secondary spherical gamma prime phase precipitates and/or cuboidal gamma prime phase precipitates whereby the first region of the component has enhanced resistance to low cycle fatigue and the second region of the component has enhanced resistance to creep deformation.
    • 一种单晶组分,包括第一区和第二区。 该组分包含具有分布在伽马相基质中的γ相和γ初相的镍基单晶超合金。 该组件的第一区域包括在伽马相基质中的γ相相沉淀物的双模式分布,并且该组分的第二区域包含γ相基质中γ相析出物的单模分布。 由初始立方γ相析出物组成的γ初相相沉淀物的单态分布以及由原始立方体γ相析出物和二次球形γ初相相析出物和/或立方形γ原子组成的γ初相析出物的双峰分布 相沉积物,由此部件的第一区域具有增强的耐低循环疲劳性,并且部件的第二区域具有增强的抗蠕变变形性。