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    • 1. 发明授权
    • Ultrasonic vibration system and method for removing/avoiding unwanted build-up on structures
    • 超声波振动系统和方法,用于消除/避免结构上不必要的积聚
    • US08217554B2
    • 2012-07-10
    • US12473923
    • 2009-05-28
    • Roger L. Royer, Jr.Joseph L. RoseEdward C. SmithJose L. Palacios
    • Roger L. Royer, Jr.Joseph L. RoseEdward C. SmithJose L. Palacios
    • H01L41/09B64D15/00B64D15/20
    • B64D15/00
    • An ultrasonic method for removing and/or avoiding unwanted build-up on structures is provided, wherein the term build-up refers to, but is not limited to, ice, dirt, mud, or other wanted debris or contamination. Deicing or anti-icing structures of interest can include, but are not limited to, helicopter rotor blades, other helicopter blade components, fixed wing aircraft components, windshields in aircraft, automobiles, and other vehicles, ship hulls or other ship components, heat exchangers and other tubing where frost or ice could form, air-conditioning components, head lamp and other light coverings, bridge structures and components, and any structure where anti-icing or deicing would be beneficial. One or more ultrasonic actuators permanently embedded or coupled to the structure may be used accomplish the removal. The technique presented herein could also be utilized for non-destructive evaluation and structural health monitoring applications.
    • 提供了用于去除和/或避免在结构上不希望的积聚的超声波方法,其中术语“积累”是指但不限于冰,污垢,泥浆或其它所需的碎屑或污染物。 感兴趣的除冰或防冰结构可以包括但不限于直升机转子叶片,其他直升机叶片部件,固定翼飞行器部件,飞机中的挡风玻璃,汽车和其他车辆,船体或其他船舶部件,热交换器 以及可能形成霜冻或冰的其他管道,空调部件,头灯和其他轻质覆盖物,桥梁结构和部件以及防冰或除冰有益的任何结构。 可以使用永久地嵌入或耦合到结构的一个或多个超声致动器完成去除。 本文介绍的技术也可用于非破坏性评估和结构健康监测应用。
    • 2. 发明申请
    • Ultrasonic vibration system and method for removing/avoiding unwanted build-up on structures
    • 超声波振动系统和方法,用于消除/避免结构上不必要的积聚
    • US20100031972A1
    • 2010-02-11
    • US12473923
    • 2009-05-28
    • Roger L. Royer, JR.Joseph L. RoseEdward C. SmithJose L. Palacios
    • Roger L. Royer, JR.Joseph L. RoseEdward C. SmithJose L. Palacios
    • B08B3/12
    • B64D15/00
    • An ultrasonic method for removing and/or avoiding unwanted build-up on structures is provided, wherein the term build-up refers to, but is not limited to, ice, dirt, mud, or other wanted debris or contamination. Deicing or anti-icing structures of interest can include, but are not limited to, helicopter rotor blades, other helicopter blade components, fixed wing aircraft components, windshields in aircraft, automobiles, and other vehicles, ship hulls or other ship components, heat exchangers and other tubing where frost or ice could form, air-conditioning components, head lamp and other light coverings, bridge structures and components, and any structure where anti-icing or deicing would be beneficial. One or more ultrasonic actuators permanently embedded or coupled to the structure may be used accomplish the removal. The technique presented herein could also be utilized for non-destructive evaluation and structural health monitoring applications.
    • 提供了用于去除和/或避免在结构上不希望的积聚的超声波方法,其中术语“积累”是指但不限于冰,污垢,泥浆或其它所需的碎屑或污染物。 感兴趣的除冰或防冰结构可以包括但不限于直升机转子叶片,其他直升机叶片部件,固定翼飞行器部件,飞机中的挡风玻璃,汽车和其他车辆,船体或其他船舶部件,热交换器 以及可能形成霜冻或冰的其他管道,空调部件,头灯和其他轻质覆盖物,桥梁结构和部件以及防冰或除冰有益的任何结构。 可以使用永久地嵌入或耦合到结构的一个或多个超声致动器完成去除。 本文介绍的技术也可用于非破坏性评估和结构健康监测应用。
    • 4. 发明申请
    • PROTECTIVE GLOVE
    • 防护手套
    • US20110083250A1
    • 2011-04-14
    • US12902348
    • 2010-10-12
    • Edward C. SmithDeborah M. SheaCurtis R. Smith
    • Edward C. SmithDeborah M. SheaCurtis R. Smith
    • A41D19/00A41D19/015
    • A41D19/01511A41D19/0044
    • Described is a protective glove such as a glove that can protect a wearer from cuts associated with hand knives and tools. The protective glove includes a glove made of a metal mesh, a flat spring attached to an inner surface of the glove in the wrist region and an elastic element disposed in a channel of the metal mesh at the end of the glove where the wearer inserts or removes a hand. The elastic element can be an extension spring or a second flat spring. The flat spring contracts to a wrist or a forearm to secure the glove to the wearer. The elastic element contracts to gather the metal mesh so that the metal mesh does not slide or otherwise move to expose the flat spring. Advantageously, the flat spring remains covered by the metal mesh and is prevented from catching a tool or other external object.
    • 描述了一种防护手套,例如手套,其可以保护佩戴者免受与手刀和工具相关的切口。 防护手套包括由金属网制成的手套,附接到手腕区域的手套的内表面的平板弹簧以及设置在穿戴者插入的手套的端部处的金属网的通道中的弹性元件 移除一只手。 弹性元件可以是拉伸弹簧或第二弹簧。 平板弹簧收缩到手腕或前臂,以将手套固定到佩戴者身上。 弹性元件收缩以收集金属网,使得金属网不滑动或以其它方式移动以暴露平板弹簧。 有利地,扁平弹簧保持被金属网覆盖并且被阻止抓住工具或其它外部物体。
    • 5. 发明授权
    • Polygon scanner having a fluid film bearing and active correction of
cross-scan and in-scan errors
    • 多边形扫描仪具有流体膜轴承和主动校正交叉扫描和扫描误差
    • US5999302A
    • 1999-12-07
    • US100634
    • 1998-06-19
    • Michael N. SweeneyEdward C. SmithEmery ErdelyiSteve F. Sagan
    • Michael N. SweeneyEdward C. SmithEmery ErdelyiSteve F. Sagan
    • G02B26/12H04N1/047H04N1/113H04N1/12G02B26/08
    • G02B26/122H04N1/047H04N1/1135H04N1/12H04N2201/04729H04N2201/04731H04N2201/04789H04N2201/04791Y10S359/90
    • A polygon scanner utilizing a fluid film bearing and method for its use in a flat field imaging device having a relatively large format size, a very high scan rate and high resolution. The polygon scanner has a polygon scan optic connected to a motor, a fluid film bearing, and a windowed enclosure. Repeating cross-scan error components are mapped and actively corrected using a piezoelectric actuator to directly displace the laser element or using a mirror in the optical path that is tilted by means of an electro-optic device to influence a virtual displacement of the optical beam. The repeating components of in-scan errors are similarly, and independently, mapped and corrected by summing with the output of a phase detector in a line scan speed control system. Methods for independently correcting the errors associated with cross-scan and in-scan components in the scan optic are significantly enhanced by the use of a fluid film bearing in general and a self-acting gas bearing in particular, supporting the rotating polygon scan optic. A method for periodic calibration of the cross-scan error map established at the factory may be implemented by a self-calibration sub-routine using a stored sinusoidal voltage waveform. This simplified calibration technique of the invention is enabled by the use of a fluid film bearing in general and a self-acting gas bearing in particular.
    • 利用流体膜轴承的多边形扫描仪及其在具有相对较大的格式尺寸,非常高的扫描速率和高分辨率的平面场成像装置中使用的方法。 多边形扫描仪具有连接到电动机,流体膜轴承和窗口外壳的多边形扫描光学元件。 使用压电致动器来映射和主动地校正重复的跨扫描误差分量,以直接移动激光元件或者使用通过电光装置倾斜的光路中的反射镜来影响光束的虚拟位移。 扫描误差的重复分量类似地且独立地通过与线扫描速度控制系统中的相位检测器的输出相加来进行映射和校正。 通过使用一般的流体膜轴承和特别是支撑旋转多边形扫描光学元件的自动气体轴承,可以显着增强用于独立地校正与扫描光学元件中的扫描和扫描部件相关的误差的方法。 可以通过使用存储的正弦电压波形的自校准子程序来实现在工厂建立的跨扫描误差图的周期性校准的方法。 本发明的这种简化的校准技术通过使用一般的流体膜轴承和特别是自动气体轴承来实现。