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    • 101. 发明授权
    • Measuring element, measuring body and measuring arrangement for measuring a force, and use of such a measuring body
    • 测量元件,测量体和用于测量力的测量装置,以及使用这种测量体
    • US09347839B2
    • 2016-05-24
    • US14404663
    • 2013-06-20
    • KISTLER HOLDING AG
    • Denis Kohler
    • G01L1/00G01L1/16G01L5/16
    • G01L1/16G01L5/167
    • A measuring element formed of a piezoelectric crystal of symmetry class 32 for measuring a force Fz, which acts perpendicularly on the plane x-y and causes a charge accumulation on surfaces of the plane x-y. Applications are measurements in which the transverse forces Fxy orthogonal to the force Fz, which generate an error signal at the measuring element, are expected on the measuring body. The measuring element includes at least four identical measuring element segments having straight edges. In the x-y plane the segments are arranged side by side and spaced apart by narrow gaps at the edges. Together, the segments form the shape of a disc or perforated disc for reducing the interference signals caused by the transverse forces Fxy on the measuring element. The crystal orientations in the x-y plane of all segments are oriented in the same direction or orthogonal to each other.
    • 由对称等级32的压电晶体形成的测量元件,用于测量垂直于平面x-y起作用并且在平面x-y的表面上积累电荷的力Fz。 应用是在测量体上预期与力Fz正交的横向力Fxy的测量,其在测量元件处产生误差信号。 测量元件包括具有直边的至少四个相同的测量元件段。 在x-y平面上,这些段被并排布置并且在边缘处被窄间隙隔开。 一起,片段形成盘或穿孔盘的形状,用于减少由测量元件上的横向力Fxy引起的干涉信号。 所有段的x-y平面中的晶体取向彼此相同或相互垂直。
    • 102. 发明授权
    • Hollow profile for a weight-in-motion sensor
    • 体积重量传感器的空心轮廓
    • US09304032B2
    • 2016-04-05
    • US14356244
    • 2012-11-15
    • KISTLER HOLDING AG
    • David CornuAdrian Hofmann
    • G01L1/04G01G21/14G01G3/13G01G19/02
    • G01G21/14G01G3/13G01G19/024G01L1/04
    • A WIM (weigh-in-motion) sensor has an oblong hollow profile and includes two force-transmission plates arranged parallel to each other. A tube is arranged between the plates and is integrally formed with the plates and defines a hollow space. Two supports that are arranged opposite one another are formed inside the hollow space, each support extending away from a respective plate and between which a measuring element is received centrally in the tube under preload. The tube includes two tube segments designed to be mirror-symmetrical with respect to each other, which join the plates together and on the inside adjoin the hollow space. The wall thickness of each tube segment has a relatively thick region between at least two relatively thin regions.
    • WIM(称重运动)传感器具有长方形的中空轮廓,并且包括彼此平行布置的两个力传递板。 管被布置在板之间并且与板一体地形成并且限定中空空间。 两个彼此相对布置的支撑件形成在中空空间的内部,每个支撑件远离相应的板延伸,并且在该预定载荷下,一个测量元件被容纳在管中央。 该管包括被设计为相对于彼此镜像对称的两个管段,其将板连接在一起并且在邻近中空空间的内侧上。 每个管段的壁厚在至少两个相对较薄的区域之间具有相对较厚的区域。