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    • 2. 发明申请
    • DEVICE FOR DETERMINING THE LOCATION OF MECHANICAL ELEMENTS
    • 用于确定机械元件位置的装置
    • US20140327762A1
    • 2014-11-06
    • US14257790
    • 2014-04-21
    • Pruftechnik Dieter Busch AG
    • Roland Holzl
    • G01B11/14H04N5/232
    • G01B11/14G01B11/00G01B11/16G01B11/272H04N5/23229
    • The invention relates to a device for determining the location of a first mechanical element (10, 156) and a second mechanical element (12, 154) with respect to each other, with a first measurement unit (14, 114, 214) for positioning at the first mechanical element, a second measurement unit (18, 118, 218) for positioning at the second mechanical element, and an analysis unit (22), wherein the first measurement unit has means (24, 124, 224) for producing a light beam bundle (28, 128, 228), wherein the second measurement unit has a scattering surface (34, 134, 234) for scattering of the light impinging on the scattering surface, a camera (36), and means for imaging the scattering surface on the camera, wherein the scattering surface faces the first measurement unit when the measurement units are positioned at the respective mechanical element so as to be impinged on by the light beam bundle.
    • 本发明涉及一种用于通过第一测量单元(14,114,214)来确定第一机械元件(10,156)和第二机械元件(12,154)相对于彼此的位置的装置,用于定位 在第一机械元件处,用于定位在第二机械元件处的第二测量单元(18,118,218)和分析单元(22),其中第一测量单元具有用于产生第一机械元件的装置(24,124,224) 光束束(28,128,228),其中所述第二测量单元具有用于散射照射在所述散射表面上的光的散射表面(34,134,234),相机(36)以及用于对所述散射进行成像的装置 表面,其中当测量单元位于相应的机械元件处时,散射表面面向第一测量单元以被光束束照射。
    • 4. 发明申请
    • DEVICE AND METHOD FOR INDUCTIVE MEASUREMENTS - SIGNAL RECONSTRUCTION
    • 用于感应测量的装置和方法 - 信号重构
    • US20100295545A1
    • 2010-11-25
    • US12783713
    • 2010-05-20
    • Roland Hölzl
    • Roland Hölzl
    • G01N27/82
    • G01N27/90G01N27/83G01N27/9026G01N27/9046
    • Method and device for nondestructive and noncontact detection of faults in a test piece, or electrically conductive particles in a liquid flow, moving past the device, using eddy currents. The test piece or flow is exposed to periodic alternating electromagnetic fields. A periodic electrical signal is detected by a receiver coil. The receiver coil signal has a carrier oscillation whose amplitude and/or phase is modulated by defects in the test piece or by electrically conducting particles and is digitized. A useful signal is produced from the digitized receiver coil signal, and the useful signal is evaluated with an evaluation unit to detect faults in the test piece or electrically conductive particles. When overdriving of the A/D converter stage by the receiver coil signal is ascertained, a part of the receiver coil signal truncated by the A/D converter stage is reconstructed using a mathematical approximation in the digitized receiver coil signal.
    • 用于非破坏性和非接触式检测试件中的故障的方法和装置,或通过涡流移动通​​过该装置的液体流中的导电颗粒。 试件或流体暴露于周期性交变电磁场。 接收器线圈检测周期性电信号。 接收器线圈信号具有载波振荡,其幅度和/或相位由测试片中的缺陷或通过导电颗粒调制并被数字化。 从数字化接收器线圈信号产生有用的信号,并且用评估单元评估有用信号以检测测试片或导电颗粒中的故障。 确定通过接收器线圈信号过载A / D转换器级时,通过数字接收线圈信号中的数学近似来重建由A / D转换器级截断的接收线圈信号的一部分。
    • 6. 发明授权
    • Extendable spacer device
    • 可扩展间隔装置
    • US07350309B2
    • 2008-04-01
    • US11279422
    • 2006-04-12
    • Michael HermannWerner Landmann
    • Michael HermannWerner Landmann
    • G01D21/00B23Q3/00
    • G01B11/272
    • A spacer device for laser-optical measurement of hollow cylinders has at least two, preferably three arms which are coupled or interlaced with one another and which can be moved relative to one another. Each of the arms has a measurement roller on one end which is brought into contact with the inner surface of a hollow cylinder to be measured and which can be rolled thereon, if necessary. An instrument platform is attached to the spacer device so that a light emitter (e.g., laser) and/or receiver or reflector can be attached at the central position of the instrument platform. The device is used to determine the three-dimensional position of the hollow cylinder to be measured.
    • 用于中空圆柱体的激光光学测量的间隔装置具有至少两个,优选三个臂,它们彼此耦合或交错并且可相对于彼此移动。 每个臂在一端具有测量辊,该测量辊与待测量的中空圆筒的内表面接触并且如果需要可以在其上滚动。 仪器平台连接到间隔器装置,使得光发射器(例如激光)和/或接收器或反射器可以附接在仪器平台的中心位置。 该装置用于确定待测量的中空圆筒的三维位置。
    • 7. 发明申请
    • Process and measurement device for determining the alignment of a cylindrical body
    • 用于确定圆柱体的对准的过程和测量装置
    • US20040139621A1
    • 2004-07-22
    • US10755479
    • 2004-01-13
    • Pruftechnik Dieter Busch AG
    • Heinrich Lysen
    • G01B005/24
    • G01B21/24
    • A process for determining the alignment of a cylindrical body with respect to a reference direction by means of a measurement device which has a first and a second attachment area and a position measurement probe which is calibrated to the reference direction and is made for detecting a first angle of rotation of the probe around a first axis fixed in space and a second angle of rotation of the probe around a second axis fixed in space. A first measurement and a second measurement is carried out at different areas of the body, the probe being swung in contact with the peripheral surface of the body relative to the first attachment area to measure a characteristic of the first and the second angle of rotation. A comparison of the characteristic of measurements is used to determine the alignment of the body with respect to the reference direction.
    • 一种用于通过具有第一和第二附接区域的测量装置和根据参考方向校准的位置测量探针来确定圆柱形主体相对于参考方向的对准的方法,并且用于检测第一和第二 探针围绕在空间中固定的第一轴线的旋转角度和探针围绕固定在空间中的第二轴线的第二旋转角度。 在身体的不同区域进行第一测量和第二测量,探针相对于第一附接区域与身体的周边表面摆动以测量第一和第二旋转角度的特性。 使用测量特征的比较来确定身体相对于参考方向的对准。
    • 10. 发明授权
    • Process and apparatus for the remote polling of measuring points
    • 用于远程轮询测量点的过程和设备
    • US5583493A
    • 1996-12-10
    • US296501
    • 1994-08-26
    • Heinrich Lysen
    • Heinrich Lysen
    • G08C15/00G08C19/00H04Q9/16G08C19/16
    • H04Q9/16
    • A process and a device for the remote interrogation of measuring points is offered that form at least one group belonging together spatially and that supply electric measuring signals that are supplied separately to a central evaluation station. The distinction of this process and this device according to the invention is that the measuring signals from each of the measuring points forming one group are supplied in each case via an associated signal transmission device, preferably one (if necessary two-wire) line first to a network device assigned to the respective group, which holds the measuring signals receive from its measuring points for successive switching to its input and that for each network device the measuring signals are switched through control signals led via its input in a predetermined sequence to its input which is connected directly or indirectly with an input of the central evaluation station.
    • 提供用于远程询问测量点的过程和装置,其形成至少一个属于空间的组,并且将提供单独提供给中央评估站的电测量信号提供给该中心评估站。 根据本发明的该方法和该装置的区别在于,形成一组的每个测量点的测量信号在每种情况下经由相关联的信号传输装置提供,优选地一个(如果必要的双线)线首先到 分配给相应组的网络设备,其保持测量信号从其测量点接收以连续切换到其输入,并且对于每个网络设备,测量信号通过其预定序列中经由其输入引导的控制信号切换到其输入 其直接或间接与中央评估站的输入连接。