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    • 3. 发明申请
    • METHODS OF FORMING COATINGS ON SUBSTRATES
    • 在基材上形成涂层的方法
    • US20100243464A1
    • 2010-09-30
    • US12411632
    • 2009-03-26
    • Devlin M. GualtieriDerek RaybouldTom StrangmanGeorge Reimer
    • Devlin M. GualtieriDerek RaybouldTom StrangmanGeorge Reimer
    • C25D5/12C25D5/10
    • C25D5/10C23C10/02C23C10/48C23C10/52C23C10/60C25D3/54C25D5/12C25D5/50Y02T50/67
    • Methods are provided for forming coatings on substrates. In an embodiment, a method includes forming a first metal layer on the substrate, the first metal layer comprising a first precious metal, electrodepositing an active element over the first metal layer to form an active element layer, the active element selected from the group consisting of yttrium, scandium, and a lanthanide series element, applying a second metal layer over the active element layer, the second metal layer consisting essentially of a metal selected from a group consisting of a second precious metal, nickel, and cobalt, heating the substrate including the first metal layer, the active element layer, and the second metal layer to form a diffusion-alloyed layer over the substrate, adding aluminum to the diffusion-alloyed layer, and heating the substrate to diffuse and react the aluminum with the diffusion-alloyed layer to form a modified precious metal aluminide coating on the substrate.
    • 提供了用于在基底上形成涂层的方法。 在一个实施例中,一种方法包括在基底上形成第一金属层,第一金属层包括第一贵金属,在第一金属层上电沉积有源元件以形成有源元件层,活性元素选自 的钇,钪和镧系元素,在所述有源元件层上施加第二金属层,所述第二金属层基本上由选自第二贵金属,镍和钴的金属组成,加热所述基板 包括第一金属层,有源元件层和第二金属层,以在基板上形成扩散合金层,向扩散合金层中加入铝,并加热基板以使铝与扩散合金层扩散合成层, 合金层,以在基材上形成改性的贵金属铝化物涂层。
    • 4. 发明申请
    • SELF-POWERED MAGNETIC TACHOMETER
    • 自动磁力计
    • US20110101969A1
    • 2011-05-05
    • US12609935
    • 2009-10-30
    • Devlin M. GualtieriDwayne Benson
    • Devlin M. GualtieriDwayne Benson
    • G01B7/30
    • G01B7/30G01P3/46G01P3/487
    • A tachometer for supplying a signal representative of the rotational rate of a rotatable device includes a plurality of detection magnets, an index feature, and one or more non-rotationally mounted magnetic circuits. The detection magnets are coupled to, and spaced around, the device, to thereby rotate with the device when the device is rotated. The index feature is associated with the rotatable device, to thereby rotate with the device when the device is rotated. The index feature and the plurality of detection magnets are spaced evenly around the device. The magnetic circuits are spaced evenly around the device, and each magnetic circuit is configured to supply a first electrical signal each time one of the detection magnets rotates past the magnetic circuit and a second electrical signal each time the index feature rotates.
    • 用于提供表示可旋转装置的旋转速度的信号的转速计包括多个检测磁体,折射特征以及一个或多个非旋转安装的磁路。 检测磁体联接到设备周围并且围绕设备间隔开,从而当设备旋转时与设备一起旋转。 索引特征与可旋转装置相关联,从而当装置旋转时与装置一起旋转。 索引特征和多个检测磁体在装置周围均匀间隔开。 磁路围绕设备均匀间隔开,并且每个磁路被配置为每次检测磁铁中的一个旋转经过磁路时提供第一电信号,并且每当索引特征旋转时提供第二电信号。
    • 5. 发明授权
    • Aircraft icing sensor
    • 飞机结冰传感器
    • US07683791B2
    • 2010-03-23
    • US11832771
    • 2007-08-02
    • Devlin M. Gualtieri
    • Devlin M. Gualtieri
    • G08B19/02
    • B64D15/20
    • An apparatus for detecting the presence of ice includes a sensor including a radio-frequency transmission line providing a characteristic impedance, a source coupled to the transmission line and operable to inject a wave into the transmission line, a summer operable to create standing wave, the standing wave including the sum of the injected wave and a reflected wave reflected by the end of the transmission line, the summer being connected between the source and the transmission line, and a detector for detecting the voltage of the standing wave. An embodiment may further include a comparator operable to compare the detected voltage with reference data for determining the presence of ice contacting the sensor.
    • 用于检测冰的存在的装置包括传感器,其包括提供特征阻抗的射频传输线,耦合到传输线并可操作以将波注入传输线的源,可操作以产生驻波的加法器, 驻波包括注入波和由传输线的末端反射的反射波的和,夏天连接在源极和传输线之间,以及检测器,用于检测驻波的电压。 实施例还可以包括比较器,用于将检测到的电压与参考数据进行比较,以确定接触传感器的冰的存在。
    • 7. 发明授权
    • Apparatus and method for measuring the level of a fluid
    • 用于测量流体水平的装置和方法
    • US06505509B2
    • 2003-01-14
    • US09800548
    • 2001-03-07
    • Devlin M. Gualtieri
    • Devlin M. Gualtieri
    • G01F2300
    • G01F23/284
    • An apparatus for detecting a fluid level is disclosed, which includes a coaxial sensor having a pair of conducting tubes positioned with respect to each other in spaced coaxial arrangement, a coaxial transmission line connected to the sensor, a means for injecting a standing wave into the coaxial sensor, a summer for summing the injected wave and a reflected wave connected to the sensor, a means for adjusting the frequency of the injected wave in response to the voltage and phase of the summed signal, and a processor for processing and displaying the frequency as a representation of the level of the fluid. A method for detecting the fluid level is also disclosed.
    • 公开了一种用于检测液位的装置,其包括一个同轴传感器,该同轴传感器具有相对于彼此间隔开的同轴布置的一对导电管,连接到传感器的同轴传输线,用于将驻波注入到 同轴传感器,用于将喷射波和连接到传感器的反射波相加的加法器,用于响应于求和信号的电压和相位来调整注入波的频率的装置,以及用于处理和显示频率的处理器 作为流体水平的表示。 还公开了一种用于检测液位的方法。