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    • 7. 发明授权
    • Eddy current inspection system and method
    • 涡流检测系统及方法
    • US08436608B2
    • 2013-05-07
    • US12563403
    • 2009-09-21
    • Haiyan SunYuri Alexeyevich PlotnikovChangting WangShridhar Champaknath NathAparna Chakrapani Sheila-Vadde
    • Haiyan SunYuri Alexeyevich PlotnikovChangting WangShridhar Champaknath NathAparna Chakrapani Sheila-Vadde
    • G01N27/82G01R33/14G01R33/00
    • G01N27/904
    • A multi-frequency eddy current (MFEC) inspection system is provided for inspection of case hardening depth on a part. The MFEC inspection system comprises a generator configured to generate one or more multi-frequency excitation signals and an eddy current probe configured to be disposed at one side of the part. The eddy current probe comprises one or more drivers and one or more pickup sensors. The one or more drivers are configured to receive the one or more multi-frequency excitation signals to induce eddy currents in the part. The one or more pickup sensors are configured to detect the induced eddy currents within a local area of the part to generate one or more multi-frequency response signals. The MFEC system further comprises a processor configured to receive the one or more multi-frequency response signals for processing to determine a case hardening depth of the local area of the part. A pulse eddy current inspection system and an eddy current inspection method are also presented.
    • 提供多频涡流(MFEC)检测系统,用于检查零件上的表面硬化深度。 MFEC检查系统包括被配置为产生一个或多个多频激励信号的发生器和被配置为设置在该部分的一侧的涡流探针。 涡流探头包括一个或多个驱动器和一个或多个拾取传感器。 一个或多个驱动器被配置为接收一个或多个多频率激励信号以在该部分中引起涡流。 一个或多个拾取传感器被配置为检测部件的局部区域内的感应涡流以产生一个或多个多频响应信号。 MFEC系统还包括处理器,其被配置为接收一个或多个多频响应信号以进行处理以确定部件的局部区域的壳体硬化深度。 还提出了脉冲涡流检测系统和涡流检测方法。
    • 8. 发明申请
    • EDDY CURRENT INSPECTION SYSTEM AND METHOD
    • EDDY电流检测系统和方法
    • US20110068784A1
    • 2011-03-24
    • US12563403
    • 2009-09-21
    • Haiyan SunYuri Alexeyevich PlotnikovChangting WangShridhar Champaknath NathAparna Chakrapani Sheila-Vadde
    • Haiyan SunYuri Alexeyevich PlotnikovChangting WangShridhar Champaknath NathAparna Chakrapani Sheila-Vadde
    • G01R33/06G01R1/06G01R33/00
    • G01N27/904
    • A multi-frequency eddy current (MFEC) inspection system is provided for inspection of case hardening depth on a part. The MFEC inspection system comprises a generator configured to generate one or more multi-frequency excitation signals and an eddy current probe configured to be disposed at one side of the part. The eddy current probe comprises one or more drivers and one or more pickup sensors. The one or more drivers are configured to receive the one or more multi-frequency excitation signals to induce eddy currents in the part. The one or more pickup sensors are configured to detect the induced eddy currents within a local area of the part to generate one or more multi-frequency response signals. The MFEC system further comprises a processor configured to receive the one or more multi-frequency response signals for processing to determine a case hardening depth of the local area of the part. A pulse eddy current inspection system and an eddy current inspection method are also presented.
    • 提供多频涡流(MFEC)检测系统,用于检查零件上的表面硬化深度。 MFEC检查系统包括被配置为产生一个或多个多频激励信号的发生器和被配置为设置在该部分的一侧的涡流探针。 涡流探头包括一个或多个驱动器和一个或多个拾取传感器。 一个或多个驱动器被配置为接收一个或多个多频率激励信号以在该部分中引起涡流。 一个或多个拾取传感器被配置为检测部件的局部区域内的感应涡流以产生一个或多个多频响应信号。 MFEC系统还包括处理器,其被配置为接收一个或多个多频响应信号以进行处理以确定部件的局部区域的壳体硬化深度。 还提出了脉冲涡流检测系统和涡流检测方法。
    • 10. 发明申请
    • LABEL-FREE METHODS RELATED TO hERG POTASSIUM ION CHANNELS
    • 与无机磷离子通道相关的无标记方法
    • US20130040331A1
    • 2013-02-14
    • US13519246
    • 2010-12-16
    • Ye FangHaiyan Sun
    • Ye FangHaiyan Sun
    • C12Q1/02G01N27/26
    • G01N33/6872G01N2500/10
    • Disclosed are methods to classify human ether-à-go-go related gene (hERG) ion channel modulators using label-free biosensors. Disclosed is the use of label-free resonant waveguide grating (RWG) biosensors to reveal the patterns of the DMR signals of hERG modulators across three types of cell lines (a native cell line endogenously expressing hERG, a native cell line without hERG and its engineered cell line stably expressed hERG), as well as the corresponding modulation index of the modulators molecules against a hERG activator acting on a panel of markers/cells, particularly the known hERG activator mallotoxin DMR signals in the two hERG expressing cell lines.
    • 公开了使用无标记生物传感器分类人类醚转运相关基因(hERG)离子通道调节剂的方法。 公开了使用无标记谐振波导光栅(RWG)生物传感器来显示三种类型的细胞系(内源性表达hERG的天然细胞系,没有hERG的天然细胞系的天然细胞系及其工程化的hERG调节剂的DMR信号的模式 细胞系稳定表达hERG),以及调节剂分子对作用于一组标志物/细胞的hERG激活剂的相应调节指数,特别是两种hERG表达细胞系中已知的hERG活化剂mallotoxin DMR信号。