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    • 1. 发明授权
    • Computerized operator assistance for turbine component inspection
    • 涡轮机部件检查的电脑操作员辅助
    • US06711506B2
    • 2004-03-23
    • US10006441
    • 2001-11-21
    • Maurice J. BalesBrian A. DalioDavid G. Johnsen
    • Maurice J. BalesBrian A. DalioDavid G. Johnsen
    • G01B528
    • G05B23/0216G05B23/0267
    • A plurality of system checks on a turbine component inspection system are monitored, and an end user interface element to cause an inspection of a turbine component to commence is enabled only upon determining based on the monitored system checks that the inspection system is in a predetermined state of readiness, thereby ensuring each turbine component inspected is stimulated with thermal stimulus having the same characteristics. Further, a binary passed or failed indicator is displayed to unequivocally inform the operator whether a turbine component being inspected passed or failed the inspection. In a preferred embodiment, thermal images of a turbine component's response to applied thermal stimulus, as well as status of automatically launched quantitatively analyses on the turbine component's response to the applied thermal stimulus are also displayed.
    • 监测对涡轮机部件检查系统的多个系统检查,并且仅在基于所监视的系统检查检查系统处于预定状态时才启用用于引起对涡轮机部件的检查的终端用户接口元件 从而通过具有相同特征的热刺激来确保所检测的每个涡轮机部件受到刺激。 此外,显示二进制通过或失败的指示器以明确地通知操作者检查的涡轮机部件是否通过或未通过检查。 在优选实施例中,还显示涡轮机部件对所施加的热刺激的响应的热图像,以及对涡轮部件对所施加的热刺激的响应的自动启动定量分析的状态。
    • 3. 发明授权
    • Auger spectroscopic technique measuring the number of electrons emitted
from a surface as a function of the energy level of those electrons
    • 测量从表面发射的电子数量作为这些电子的能级的函数的俄歇光谱技术
    • US4459482A
    • 1984-07-10
    • US375496
    • 1982-05-06
    • Maurice J. Bales
    • Maurice J. Bales
    • G01N23/227H01J37/252H01J49/02H01J40/00H01J47/00
    • H01J49/022G01N23/227H01J37/252
    • An improved technique in Auger electron spectroscopy which uses a standard detector which emits a voltage signal proportional to the number of electrons emitted from a surface of material under investigation at a particular energy level to which the detector is set. An improvement is in the manner of processing this voltage signal in order to ascertain the desired reading of number of electrons. The processing circuitry is electrically isolated from the rest of the system but is directly coupled to the detector. A baseline voltage signal is established at a lower edge of electron energy range of interest and that range has been scanned to determine the difference between detector signal output and the baseline output. The result is a faster and more accurate determination of detector voltage signal outputs over the region which can then better be used to determine the characteristics of the surface from which the electrons are being emitted.
    • 一种改进的俄歇电子能谱技术,它使用标准检测器,该标准检测器在检测器设置的特定能级下发射与被研究材料表面发射的电子数成比例的电压信号。 为了确定电子数量的期望读数,处理该电压信号的方式有所改进。 处理电路与系统的其余部分电隔离,但是直接耦合到检测器。 在感兴趣的电子能量范围的下边缘处建立基线电压信号,并且扫描该范围以确定检测器信号输出与基线输出之间的差异。 结果是在区域上更快更准确地确定检测器电压信号输出,其可以更好地用于确定电子被发射的表面的特性。