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    • 5. 发明专利
    • Method of compensating unbalance
    • 补偿不平衡的方法
    • JP2005211654A
    • 2005-08-11
    • JP2005015327
    • 2005-01-24
    • Siemens Agシーメンス アクチエンゲゼルシヤフトSiemens Aktiengesellschaft
    • DANZ GUENTERMUELLER HANS-JUERGEN
    • A61B6/03G01M1/36
    • A61B6/035A61B6/586G01M1/36
    • PROBLEM TO BE SOLVED: To provide a method of compensating an unbalance of a measuring apparatus which can be performed as automatically as possible and can be realized easily.
      SOLUTION: The method of compensating the unbalance is to measure a vibration transmitted to a fixed side unit (1) by the unbalance of a measuring apparatus (3) and to detect at least one unbalance vector which causes the unbalance in order to compensate the unbalance of the measuring apparatus (3) which is disposed to be rotatable around a patient inspection space of a tomography apparatus, particularly an X-ray CT apparatus or an ultrasonic tomography apparatus and disposed at a bearing (15) of the fixed side unit (1) to be rotatable around an axial line (A2), wherein a position of the axial line (A2) of the measuring apparatus (3) is adjusted to an axial line (A1) of the bearing (15) to compensate the unbalance vector.
      COPYRIGHT: (C)2005,JPO&NCIPI
    • 解决的问题:提供一种能够尽可能自动地执行的测量装置的不平衡补偿的方法,并且可以容易地实现。 解决方案:补偿不平衡的方法是通过测量装置(3)的不平衡来测量传递到固定侧单元(1)的振动,并且检测至少一个导致不平衡的不平衡矢量,以便 补偿被设置为围绕断层摄影装置的患者检查空间旋转的测量装置(3)的不平衡,特别是X射线CT装置或超声波断层摄影装置,并且设置在固定侧的轴承(15) 单元(1)能够围绕轴线(A2)旋转,其中测量装置(3)的轴线(A2)的位置被调节到轴承(15)的轴线(A1),以补偿 不平衡矢量。 版权所有(C)2005,JPO&NCIPI
    • 7. 发明专利
    • UNBALANCE DETERMINING APPARATUS
    • JP2001108561A
    • 2001-04-20
    • JP2000260700
    • 2000-08-30
    • DANA CORP
    • BREESE DOUGLAS E
    • G01M1/38G01B11/25G01B17/02G01M1/24G01M1/36
    • PROBLEM TO BE SOLVED: To provide an apparatus for balancing an article such as a drive shaft tube much more quickly and effectively than balancing machines of the prior art. SOLUTION: The ends of a drive shaft tube 18 are rotatably supported by supports 31, 32. The apparatus 30 has a laser stripe generator 33 which projects relatively slender visible light rays onto the outer surface of the drive shaft tube. A digital camera 34 receives the relatively slender visible light rays when they are reflected from the outer surface of the drive shaft tube, and digitizes the reflected images into electrical signals. The apparatus 30 further has a system for providing the display of the wall thickness of the drive shaft tube by using, e.g. an ultrasonic transducer 36. Signals from the digital camera and the ultrasonic transducer are fed to an electronic control device 40. The electronic control device correlates such signals with one another to produce an electronic three-dimensional display of the physical shape of the drive shaft tube to determine the dimension and position of a balance weight 29.