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    • 3. 发明申请
    • Material condition monitoring with multiple sensing modes
    • 物料状态监测与多种感应模式
    • US20050171703A1
    • 2005-08-04
    • US11036780
    • 2005-01-14
    • Neil GoldfineDarrell SchlickerVladimir ZilbersteinAndrew WashabaughVolker WeissChristopher CravenIan ShayDavid GrundyKaren WalrathRobert Lyons
    • Neil GoldfineDarrell SchlickerVladimir ZilbersteinAndrew WashabaughVolker WeissChristopher CravenIan ShayDavid GrundyKaren WalrathRobert Lyons
    • G01N27/90G06F19/00
    • G01N27/9013
    • Methods are described for assessing material condition. These methods include the use of multiple source fields for interrogating and loading of a multicomponent test material. Source fields include electric, magnetic, thermal, and acoustic fields. The loading field preferentially changes the material properties of a component of the test material, which allows the properties of the component materials to be separated. Methods are also described for monitoring changes in material state using separate drive and sense electrodes with some of the electrodes positioned on a hidden or even embedded material surface. Statistical characterization of the material condition is performed with sensor arrays that provide multiple responses for the material condition during loading. The responses can be combined into a statistical population that permits tracking with respect to loading history. Methods are also described for measuring the stress in the material by independently estimating effective electrical properties, such as magnetic permeability or electrical conductivity, using layered models or predetermined spatial distributions with depth that are then correlated with the stress.
    • 描述了评估材料状况的方法。 这些方法包括使用多个源字段来询问和加载多组分测试材料。 源场包括电,磁,热和声场。 加载场优先改变测试材料的组分的材料性质,这允许分离组分材料的性质。 还描述了用于使用单独的驱动和感测电极来监测材料状态的变化的方法,其中一些电极位于隐藏的或甚至嵌入的材料表面上。 使用传感器阵列进行材料状态的统计表征,这些传感器阵列在加载期间为材料状态提供多个响应。 响应可以组合成允许跟踪加载历史的统计数据。 还描述了通过使用分层模型或具有深度的预定空间分布独立地估计有效电特性(例如磁导率或导电性)来测量材料中的应力的方法,然后与应力相关联。