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    • 7. 发明授权
    • Weighing pan carrier with overload protection device
    • 带过载保护装置的称重托盘
    • US06958453B2
    • 2005-10-25
    • US10844721
    • 2004-05-13
    • Hans-Rudolph Burkhard
    • Hans-Rudolph Burkhard
    • G01G21/23G01G21/24G01G23/00G01G23/02
    • G01G23/005
    • A weighing pan carrier (47) for a balance with a weighing pan and with a weighing cell that includes a load-receiving portion (11) and a stationary portion (12) has an overload protection device against excessive vertically directed forces that is releasably engaged with the weighing pan carrier. The weighing pan carrier (47) is fastened to the load-receiving portion (11) of the weighing cell and has on the other hand a fixed connection to the weighing pan. The weighing pan carrier (47) has a torque safety feature, which is integrated in the overload protection device and provides protection against excessive forces acting tangentially on the weighing pan and/or on the weighing pan carrier (47) in a direction perpendicular to the direction of the weighing load.
    • 用于与称重盘平衡的称重盘托架(47)和包括承载部分(11)和固定部分(12)的称重传感器具有过载保护装置,以防止可释放地接合的过大的垂直定向力 与秤盘托盘。 称重盘托架(47)固定在称重传感器的承载部分(11)上,另一方面与称重盘固定连接。 称重盘托架(47)具有转矩安全特征,其集成在过载保护装置中,并且提供防止在与称重盘和/或称重盘托架(47)上相切作用的过大力在垂直于称重盘 称重负载方向。
    • 8. 发明授权
    • Integrally formed flexure pivot for a force-measuring device, and force-transfer mechanism with the flexure pivot
    • 用于力测量装置的整体形成的挠曲枢轴,以及具有挠性枢轴的力传递机构
    • US06886418B2
    • 2005-05-03
    • US10814242
    • 2004-04-01
    • Andreas MetzgerHans-Rudolf Burkhard
    • Andreas MetzgerHans-Rudolf Burkhard
    • G01G3/14G01G21/24G01L1/22G01L1/04
    • G01G3/1412G01G21/244G01L1/2243
    • A flexure pivot in the form of a thin material connection formed as a result of adjacent material-free spaces is disclosed, as is a force-transfer mechanism for use in a force-measuring device, in particular a balance, containing at least one flexure pivot of the aforementioned type. The force-transfer mechanism has a stationary portion with a lever arrangement comprising at least one reduction lever and serving to transmit a force to a measuring transducer, and it further has at least one coupling element serving to introduce an input force into the lever arrangement, the coupling element being stiff against lengthwise deformation but flexible with regard to bending and having at least one thin material connection. The at least one lever is supported on the stationary portion and/or on a preceding lever by a flexible fulcrum pivot having a thin material connection. At least one thin material connection zone of a thin material connection is delimited by concave-shaped surfaces facing material-free spaces, and at least one of the material-free spaces delimiting the thin material connection zone has a shape that creates a constriction of the thin material connection zone.
    • 公开了由于相邻的无材料空间形成的薄材料连接形式的挠曲枢轴,以及用于在力测量装置中的力传递机构,特别是平衡装置,其包含至少一个挠曲件 上述类型的枢轴。 力传递机构具有固定部分,其中杠杆装置包括至少一个减速杆并且用于向测量换能器传递力,并且还具有用于将输入力引入杠杆装置中的至少一个联接元件, 耦合元件抵抗纵向变形是刚性的,但是关于弯曲而是柔性的并且具有至少一个薄材料连接。 所述至少一个杠杆通过具有薄材料连接的柔性支点枢轴支撑在所述固定部分上和/或在前一杠杆上。 薄材料连接的至少一个薄材料连接区域由面向无材料空间的凹形表面限定,并且限定薄材料连接区域的至少一个无材料空间形成了形成 薄材料连接区。
    • 9. 发明授权
    • Top scale balance
    • 顶级平衡
    • US5962818A
    • 1999-10-05
    • US538776
    • 1995-10-03
    • Akira KomotoKunio ShimauchiKazuo NishibayashiAkihiro Fukai
    • Akira KomotoKunio ShimauchiKazuo NishibayashiAkihiro Fukai
    • G01G21/24G01G3/08G01G3/14G01G21/12
    • G01G21/244
    • In a top scale balance which has a Roberval's chain 10 and a load weight transmitting lever 30 and in which a movable post 13 of the Roberval's chain 10 is connected to a point of force 32 of the lever 30 through an elastic connection fulcrum 51, a horizontal member 12 nearer to the elastic connection fulcrum 51, out of upper and lower horizontal members 11, 12 of the Roberval's chain 10, is greater in rigidity than the other horizontal member 11. Alternately, the upper and lower horizontal members 11, 12 are equal in rigidity and the elastic connection fulcrum 51 is positioned, in the vertical direction, at the center between the upper and lower horizontal members 11, 12. Such an arrangement prevents or reduces the movement of the elastic connection fulcrum 51 in the back-and-forth direction due to an offset placed load. Thus, even though the top scale balance is made in a compact and thin design with the lever ratio increased, the top scale balance is high in precision with a less offset position error.
    • 在具有罗伯瓦尔链条10和负载重量传递杆30的顶部秤平衡中,罗伯瓦尔链条10的可动柱13通过弹性连接支点51连接到杠杆30的力点32, 在Roberval链条10的上部和下部水平部件11,12之间更靠近弹性连接支点51的水平部件12的刚度比其他水平部件11的刚度大。或者,上部和下部水平部件11,12 刚性相等,并且弹性连接支点51在垂直方向上位于上下水平构件11,12之间的中心。这种布置防止或减小了弹性连接支点51在背部和背面中的运动 由于偏移放置负载的方向。 因此,尽管最大尺寸的平衡是以杠杆比率增加的紧凑而薄的设计进行的,但是由于偏移位置误差较小,所以顶部秤的精度高。