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    • 1. 发明授权
    • Machining technique with selective and localized placement of tooling material
    • 加工技术具有选择性和局部放置的加工材料
    • US07380321B2
    • 2008-06-03
    • US11391638
    • 2006-03-28
    • Eric J. SternAmy M. HelveyDavid P. HeckRicky L. Martin
    • Eric J. SternAmy M. HelveyDavid P. HeckRicky L. Martin
    • B23P15/02B21K3/00
    • B23Q3/06Y10T29/49826Y10T29/49996Y10T29/5191Y10T409/30868
    • A method of holding a billet of material (70) to a machining table (106) includes determining a first set of outer dimensions of a component (72) to be machined. The billet of material (70) is selected in response to the first set of outer dimensions to have a second set of outer dimensions. Dimensions of the second set of outer dimensions are approximately equal to or greater than corresponding dimensions of the first set of outer dimensions. Multiple tabs (76) are attached to the billet of material (70). The tabs (76) are rigidly fixed to the machining table (106). A machining system (50) includes a controller (52) that determines a first set of outer dimensions of a component (72) to be machined. A tab-forming mechanism (54) generates multiple tabs (76) that are configured to be rigidly fixed to a machining table (106). An attachment mechanism (56) couples the tabs (76) to a billet of material (70), which has a second set of outer dimensions having the same relation to the first set of outer dimensions previously stated.
    • 将材料坯料(70)保持到加工台(106)的方法包括确定要加工的部件(72)的第一组外部尺寸。 响应于第一组外部尺寸选择材料坯料(70)以具有第二组外部尺寸。 第二组外部尺寸的尺寸近似等于或大于第一组外部尺寸的对应尺寸。 多个突片(76)连接到材料坯料(70)。 突片(76)刚性地固定到加工台(106)上。 加工系统(50)包括控制器(52),其确定待加工的部件(72)的第一组外部尺寸。 凸片形成机构(54)产生多个凸片(76),其被构造成刚性地固定到加工台(106)。 附接机构(56)将突片(76)连接到材料坯料(70),其具有与先前所述的第一组外部尺寸相同的第二组外部尺寸。
    • 6. 发明授权
    • Resonant inspection using reconfigurable nest
    • 使用可重构的嵌套进行共振检查
    • US08051715B2
    • 2011-11-08
    • US12392702
    • 2009-02-25
    • David P. HeckAdrian P. Allen
    • David P. HeckAdrian P. Allen
    • G01N29/12
    • G01N29/223G01N29/12G01N29/2437G01N2291/269
    • The present disclosure provides a device and method for non-destructive testing of an object using resonant ultrasound spectroscopy, wherein the device is provided with a reconfigurable nest for placement of objects of various shapes and sizes on the device. The reconfigurable nest includes a plurality of transducers that are held in place using a rheological fluid. As each transducer is arranged, for example, using a robotic tool, an electric or magnetic field is applied to the rheological fluid in contact with said transducer, thereby holding the transducer in place. This device and method thus provide a nest for a resonant inspection device that may be reconfigured in much less time and with much less effort when compared to existing solutions.
    • 本公开提供了一种用于使用谐振超声波光谱对物体进行非破坏性测试的装置和方法,其中所述装置设置有可重新配置的嵌套,用于在装置上放置各种形状和尺寸的物体。 可重构的巢包括使用流变液保持就位的多个换能器。 当每个换能器被布置成例如使用机器人工具时,将电场或磁场施加到与所述换能器接触的流变流体,从而将换能器保持在适当位置。 因此,该装置和方法为谐振检测装置提供了一个嵌套,可以在与现有解决方案相比更短的时间内进行重新配置,同时以更少的精力进行重新配置。