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    • 93. 发明授权
    • Method and apparatus for erosion machining with an electrical contact element
    • 具有电接触元件的侵蚀加工的方法和装置
    • US07019245B2
    • 2006-03-28
    • US11000974
    • 2004-12-02
    • Johann BermannTitus Meister
    • Johann BermannTitus Meister
    • B23H1/00B23H9/00
    • B23H9/00B23H7/20B23H9/001B23H11/006
    • Apparatus and method for erosion machining a structure comprising one of a metallic structural component, a metallic insert element, and a connecting element, by way of erosion. The apparatus includes an eroding head including an electrode, a power supply, and a control device. The power supply and the control device produce an erosion current. A grounding device is arranged in an area of the eroding head and includes at least one contact element. When the eroding head is arranged to perform erosion machining, the at least one contact element contacts and forms an electrical connection with a surface of the structure, whereby an eroding electric circuit is formed via the electrode and the structure. The method includes arranging the erosion head in an area of the connecting element, sealing, with a seal, a flushing cage to the structural component, contacting a portion the connecting element with the electrode; and electrically connecting the at least one contact element and another portion of the connecting element. This Abstract is not intended to define the invention disclosed in the specification, nor intended to limit the scope of the invention in any way.
    • 通过侵蚀加工包括金属结构部件,金属插入元件和连接元件之一的结构的装置和方法。 该装置包括一个包括电极,电源和控制装置的侵蚀头。 电源和控制装置产生侵蚀电流。 接地装置布置在侵蚀头的区域中,并且包括至少一个接触元件。 当侵蚀头布置成进行侵蚀加工时,至少一个接触元件与结构的表面接触并形成电连接,从而通过电极和结构形成侵蚀电路。 该方法包括将侵蚀头布置在连接元件的区域中,用密封件将冲洗笼密封到结构部件上,使连接元件与电极接触; 并且将所述至少一个接触元件和所述连接元件的另一部分电连接。 本摘要不旨在限定说明书中公开的发明,也不旨在以任何方式限制本发明的范围。
    • 94. 发明授权
    • Method for interferometric radar measurement
    • 干涉雷达测量方法
    • US07002508B2
    • 2006-02-21
    • US10770830
    • 2004-02-03
    • Aribert P. WolframmHelmut Klausing
    • Aribert P. WolframmHelmut Klausing
    • G01S13/90
    • G01S13/9023G01S2013/9082
    • It is proposed in connection with a method for the interferometric radar measurement in conjunction with a helicopter operating in accordance with the ROSAR principle (Heli-Radar) that two coherent receiving antennas with receiving channels are associated with a transmitter of the ROSAR-system mounted on the revolving rotary cross; and that the difference (ΔR) between the two distances (R+ΔR, R) from the measured impact point P are calculated, in the manner known per se, based on the wavelength λ of the emitted radar signal and the measured phase difference of the receiving echo of the two coherent receive channels.
    • 提出结合用于干涉式雷达测量的方法与根据ROSAR原理(Heli-Radar)操作的直升机相结合,其中具有接收通道的两个相干接收天线与安装在ROSAR系统上的ROSAR系统的发射机相关联 旋转十字架; 并且以本身已知的方式,基于发射的雷达信号的波长λ和所测量的相位差计算来自测量的冲击点P的两个距离(R +ΔR,R)之间的差值(R +ΔR,R) 接收两个相干接收通道的回波。
    • 99. 发明授权
    • Slot antenna element
    • 插槽天线元件
    • US06954183B2
    • 2005-10-11
    • US10158189
    • 2002-05-31
    • Klaus Solbach
    • Klaus Solbach
    • H01Q13/10H01Q13/22H01Q21/00
    • H01Q13/22H01Q13/10H01Q21/0043
    • A slot antenna element is provided in the form of a rectangular waveguide including at least one slot situated in the center of one broad side, a rectangular ridge arranged in the center of the interior surface of the other broad side, wherein the slot and the ridge each extend along the longitudinal direction of the waveguide, coupling devices, particularly a pin, arranged in the area of the slot, which excite the slot to emit electromagnetic energy, and compensation devices constructed on the surface of the ridge facing the slot, which compensation devices compensate the mismatch of the waveguide caused by the coupling devices with respect to the generator feeding the waveguide with electromagnetic energy. The compensation devices are constructed such that the ridge has a step-shaped indentation in the area of the slot.
    • 缝隙天线元件呈矩形波导的形式,包括位于一个宽边的中心的至少一个槽,布置在另一个宽边的内表面的中心的矩形脊,其中槽和脊 每个沿着波导的纵向方向延伸,布置在槽的区域中的联接装置,特别是销,其激发槽以发射电磁能,以及构造在面向槽的脊的表面上的补偿装置,该补偿 器件补偿由耦合器件相对于用电磁能馈送波导的发生器引起的波导失配。 补偿装置被构造成使得脊在槽的区域中具有台阶形凹陷。