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    • 1. 发明授权
    • Weighing sensor with calibration weight
    • 带校准重量的称重传感器
    • US06861593B2
    • 2005-03-01
    • US10428949
    • 2003-05-05
    • Otto KuhlmannThorsten CapellePeter FleischerFriedrich HelmsenDetlev ErbenRudolf Mueller
    • Otto KuhlmannThorsten CapellePeter FleischerFriedrich HelmsenDetlev ErbenRudolf Mueller
    • G01G21/24G01G23/01
    • G01G23/012G01G21/244
    • A weighing sensor including a base (1) fixed to a housing, a load sensor (2) connected to the base in a displaceable manner via two arms (3, 4), a lever system (8 . . . 11) having at least one lever and transmitting the load acting on the load sensor to a transducer (12, 13), and a built-in calibration weight (40) which may be lowered onto a support region (30/38) for checking and/or calibrating the sensitivity of the weighing sensor. The support region is guided in a parallel manner by two additional arms (21, 22) and is connected to a lever (9/39) of the lever system (8 . . . 11) via a coupling element (26). Relatively large loads on the weighing sensor may be simulated with relatively small calibration weights, without the need for complicated lifting devices. The two additional arms (21, 22) are connected on the one hand to the support region (30/38) and on the other hand to the load sensor (2) and are located on the side of the load sensor (2) opposite from the lever system (8 . . . 11).
    • 一种称重传感器,包括固定到壳体的基座(1),经由两个臂(3,4)以可移位方式连接到基座的负载传感器(2),至少具有至少 一个杠杆并将作用在负载传感器上的负载传递到换能器(12,13),以及内置的校准配重(40),其可以降低到支撑区域(30/38)上,用于检查和/或校准 称重传感器的灵敏度。 支撑区域通过两个附加臂(21,22)以平行的方式被引导,并且经由联接元件(26)连接到杠杆系统(8 ... 11)的杠杆(9/39)。 称重传感器上的相对较大的载荷可以用相对较小的校准砝码来模拟,而不需要复杂的提升装置。 两个附加臂(21,22)一方面连接到支撑区域(30/38),另一方面连接到负载传感器(2),并且位于负载传感器(2)的相反侧 从杠杆系统(8 ... 11)。
    • 2. 发明申请
    • Weighing system of monolithic construction including flexural pivot
    • 整体式结构称重系统包括弯头
    • US20080029314A1
    • 2008-02-07
    • US11882797
    • 2007-08-06
    • Otto KuhlmannPeter FleischerFriedrich HelmsenThomas Fehling
    • Otto KuhlmannPeter FleischerFriedrich HelmsenThomas Fehling
    • G01G3/00
    • G01G21/244
    • A weighing system having a base region (1), a parallel-guided load receiver (4), at least one transmission lever (2) that is pivotably mounted on the base region via at least one flexural pivot (3), and a coupling element (7) that connects the load sensor to the short lever arm of the transmission lever. The flexural pivot (3), at least one part of the transmission lever (2), and at least one part of the base region (1′) are monolithically formed from a block. The flexural pivot (3) is separated from the rest of the block, and at least one spring connecting segment (36/35/38, 37/35′/39) of the flexural pivot (3) includes two spaced-apart thin material points (36, 38; 37, 39). In this way, a hysteresis-free flexural pivot can be created without the need for separate assembly components.
    • 一种称重系统,其具有基部区域(1),平行引导的载荷接收器(4),至少一个传动杆(2),其通过至少一个弯曲枢轴(3)可枢转地安装在基部区域上, 元件(7),其将负载传感器连接到传动杆的短杆臂。 弯曲枢轴(3),传动杆(2)的至少一部分和基部区域(1')的至少一部分由块体整体地形成。 挠曲枢轴(3)与块的其余部分分离,并且挠性枢轴(3)的至少一个弹簧连接段(36/35/38,37 / 35'/ 39)包括两个间隔开的薄材料 (36,38; 37,39)。 以这种方式,可以创建无滞后的弯曲枢轴,而不需要单独的组件部件。
    • 3. 发明授权
    • Weighing system of monolithic construction including flexural pivot
    • 整体式结构称重系统包括弯头
    • US07534971B2
    • 2009-05-19
    • US11882798
    • 2007-08-06
    • Otto KuhlmannPeter FleischerFriedrich HelmsenThomas Fehling
    • Otto KuhlmannPeter FleischerFriedrich HelmsenThomas Fehling
    • G01G3/12G01G7/00
    • G01G21/244
    • A weighing system having a base region (1), a parallel-guided load receiver (4), at least one transmission lever (2) that is pivotably mounted on the base region via at least one flexural pivot (3), and a coupling element (7) that connects the load sensor to the short lever arm of the transmission lever. The flexural pivot (3), at least one part of the transmission lever (2), and at least one part of the base region (1′) are monolithically formed from a block. The flexural pivot (3) is separated from the rest of the block by four horizontal parallel bores (31, 32, 33, 34) that are adjacently arranged in an annular manner in such a way as to respectively leave a thin connecting segment (36, 37, 38 39) between adjacent bores, and by additional slots. In this way, a hysteresis-free flexural pivot can be created without the need for separate assembly components.
    • 一种称重系统,其具有基部区域(1),平行引导的载荷接收器(4),至少一个传动杆(2),其通过至少一个弯曲枢轴(3)可枢转地安装在基部区域上, 元件(7),其将负载传感器连接到传动杆的短杆臂。 弯曲枢轴(3),传动杆(2)的至少一部分和基部区域(1')的至少一部分由块体整体地形成。 弯曲枢轴(3)通过四个水平平行的孔(31,32,33,34)与块体的其余部分分离,该水平平行孔(31,32,33,34)以环形方式相邻布置,以便分开留下薄的连接段(36 ,37,3839)和相邻的孔之间。 以这种方式,可以创建无滞后的弯曲枢轴,而不需要单独的组件部件。
    • 4. 发明授权
    • Weighing system of monolithic construction including flexural pivot
    • 整体式结构称重系统包括弯头
    • US07495186B2
    • 2009-02-24
    • US11882797
    • 2007-08-06
    • Otto KuhlmannPeter FleischerFriedrich HelmsenThomas Fehling
    • Otto KuhlmannPeter FleischerFriedrich HelmsenThomas Fehling
    • G01G21/24
    • G01G21/244
    • A weighing system having a base region (1), a parallel-guided load receiver (4), at least one transmission lever (2) that is pivotably mounted on the base region via at least one flexural pivot (3), and a coupling element (7) that connects the load sensor to the short lever arm of the transmission lever. The flexural pivot (3), at least one part of the transmission lever (2), and at least one part of the base region (1′) are monolithically formed from a block. The flexural pivot (3) is separated from the rest of the block, and at least one spring connecting segment (36/35/38, 37/35′/39) of the flexural pivot (3) includes two spaced-apart thin material points (36, 38; 37, 39). In this way, a hysteresis-free flexural pivot can be created without the need for separate assembly components.
    • 一种称重系统,其具有基部区域(1),平行引导的载荷接收器(4),至少一个传动杆(2),其通过至少一个弯曲枢轴(3)可枢转地安装在基部区域上, 元件(7),其将负载传感器连接到传动杆的短杆臂。 弯曲枢轴(3),传动杆(2)的至少一部分和基部区域(1')的至少一部分由块体整体地形成。 挠曲枢轴(3)与块的其余部分分离,并且挠性枢轴(3)的至少一个弹簧连接段(36/35/38,37 / 35'/ 39)包括两个间隔开的薄材料 (36,38; 37,39)。 以这种方式,可以创建无滞后的弯曲枢轴,而不需要单独的组装部件。
    • 5. 发明申请
    • Weighing system of monolithic construction including flexural pivot
    • 整体式结构称重系统包括弯头
    • US20080029315A1
    • 2008-02-07
    • US11882798
    • 2007-08-06
    • Otto KuhlmannPeter FleischerFriedrich HelmsenThomas Fehling
    • Otto KuhlmannPeter FleischerFriedrich HelmsenThomas Fehling
    • G01G3/00
    • G01G21/244
    • A weighing system having a base region (1), a parallel-guided load receiver (4), at least one transmission lever (2) that is pivotably mounted on the base region via at least one flexural pivot (3), and a coupling element (7) that connects the load sensor to the short lever arm of the transmission lever. The flexural pivot (3), at least one part of the transmission lever (2), and at least one part of the base region (1′) are monolithically formed from a block. The flexural pivot (3) is separated from the rest of the block by four horizontal parallel bores (31, 32, 33, 34) that are adjacently arranged in an annular manner in such a way as to respectively leave a thin connecting segment (36, 37, 38 39) between adjacent bores, and by additional slots. In this way, a hysteresis-free flexural pivot can be created without the need for separate assembly components.
    • 一种称重系统,其具有基部区域(1),平行引导的载荷接收器(4),至少一个传动杆(2),其通过至少一个弯曲枢轴(3)可枢转地安装在基部区域上, 元件(7),其将负载传感器连接到传动杆的短杆臂。 弯曲枢轴(3),传动杆(2)的至少一部分和基部区域(1')的至少一部分由块体整体地形成。 弯曲枢轴(3)通过四个水平平行的孔(31,32,33,34)与块体的其余部分分离,该水平平行孔(31,32,33,34)以环形方式相邻布置,以便分开留下薄的连接段(36 ,37,3839)和相邻的孔之间。 以这种方式,可以创建无滞后的弯曲枢轴,而不需要单独的组件部件。
    • 7. 发明授权
    • Device for determining the position of the center of gravity of a test
body
    • 用于确定测试体重心位置的装置
    • US6053033A
    • 2000-04-25
    • US161297
    • 1998-09-28
    • Otto KuhlmannDetlev ErbenRudolf Muller
    • Otto KuhlmannDetlev ErbenRudolf Muller
    • G01M1/12
    • G01M1/122
    • An apparatus for determining the position of the center of gravity of a test body with a test-body receiving plate supported on at least two weighing systems with short displacement in which device the position of the center of gravity is calculated from the particular bearing forces on the weighing systems that the connection between the test-body receiving plate (2) and the weighing systems (12, 13) takes place by means of coupling elements (22, 23) which are permanently connected by their one end to the test-body receiving plate (2), which are connected permanently by their other end to a weighing system (12, 13) and which are designed to be elastically flexible by means of at least one thin area (33, 34) defining a horizontal axis of rotation. This avoids an undefined introduction of force possibly overlaid by frictional forces and frictional moments into the weighing systems and thus increases the measuring accuracy.
    • 用于确定测试体重心的位置的装置,其具有支撑在具有短位移的至少两个称重系统上的测试体接收板,其中装置根据特定的承受力计算重心的位置 所述称重系统,所述测试体接收板(2)和所述称重系统(12,13)之间的连接通过耦合元件(22,23)进行,所述耦合元件(22,23)通过其一端永久连接到所述测试体 接收板(2),它们通过另一端永久地连接到称重系统(12,13),并且被设计成通过限定水平旋转轴线的至少一个薄区域(33,34)弹性地弹性 。 这避免了不确定地引入可能被摩擦力和摩擦力矩重叠到称重系统中的力,从而提高了测量精度。
    • 9. 发明授权
    • Narrow weighing system arranged in narrowly spaced rows in the lateral direction
    • 狭窄的称重系统在横向方向上布置成狭窄间隔的行
    • US07501592B2
    • 2009-03-10
    • US11584663
    • 2006-10-23
    • Otto KuhlmannPeter Fleischer
    • Otto KuhlmannPeter Fleischer
    • G01G7/04
    • G01G21/244G01G7/04
    • A weighing system that works on the principle of electromagnetic force compensation. The weighing system has two guide members (4′), which connect a load support (5′) to a base region fixed to the housing. The weighing system also has at least one transmission lever (6′), which is mounted on the base region. The base region is divided into two separate subregions (2′, 3′), the transmission lever (6′) extends between these two subregions. Two weighing systems are arranged laterally side by side and their base regions are interconnected in such a way that the two subregions (2, 3) of the base region of the one weighing system are connected to the two subregions (2′, 3′) of the base region of the other weighing system such that their positions are fixed relative to each other.
    • 一种以电磁力补偿原理工作的称重系统。 称重系统具有两个引导构件(4'),其将负载支撑件(5')连接到固定到壳体的基部区域。 称重系统还具有至少一个安装在基座区域上的传动杆(6')。 基部区域分成两个分开的子区域(2',3'),传动杆(6')在这两个子区域之间延伸。 两个称重系统横向并排设置,并且它们的基部区域以这样的方式相互连接,使得一个称重系统的基部区域的两个子区域(2,3)连接到两个子区域(2',3') 的位置相对于彼此固定的另一个称重系统的基部区域。
    • 10. 发明申请
    • Weighing system that operates according to the principle of electromagnetic force compensation
    • 按照电磁力补偿原理运行的称重系统
    • US20070193788A1
    • 2007-08-23
    • US11698977
    • 2007-01-29
    • Fabian WalterOtto KuhlmannPeter FleischerWilfried Langner
    • Fabian WalterOtto KuhlmannPeter FleischerWilfried Langner
    • G01G7/00G01G1/38
    • G01G7/02G01G21/244
    • A weighing system that operates according to the principle of electromagnetic force compensation, having two connecting rods (2, 3) which are fashioned as a parallel guide and connect a load receiver (4) to a base area (1) fixed to the housing, and having an angle lever (5) mounted on the base area. The force due to weight that is transmitted by the load receiver acts upon the short lever arm (5′) of the angle lever via a coupling element, and a coil projecting into the air gap of a permanent magnet system (7) is fastened to the long lever arm (5″). The weighing system occupies only a small area since the long lever arm takes the form of a vertical lever arm and extends, at least in part, in the area underneath the connecting rods of the parallel guide and that the permanent magnet system is likewise arranged underneath the connecting rods of the parallel guide.
    • 一种根据电磁力补偿原理操作的称重系统,具有两个连接杆(2,3),它们被形成为平行导向件并将负载接收器(4)连接到固定到壳体上的基座区域(1) 并具有安装在基座区域上的角度杆(5)。 由负载接收器传递的由重量引起的力通过联接元件作用在角杠杆的短杠杆臂(5')上,并且突出到永磁体系统(7)的气隙中的线圈被紧固到 长杠杆臂(5“)。 称重系统仅占用较小的区域,因为长杠杆臂呈垂直杆臂的形式,至少部分地延伸在平行导轨的连接杆下方的区域中,并且永久磁铁系统同样布置在下面 平行导轨的连杆。