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    • 5. 发明申请
    • FORCE-TRANSMITTING MECHANISM FOR A BALANCE
    • 用于平衡的发射机制
    • US20060076166A1
    • 2006-04-13
    • US11162918
    • 2005-09-28
    • Hans-Rudolph BurkhardErnst TschoppAndreas Metzger
    • Hans-Rudolph BurkhardErnst TschoppAndreas Metzger
    • G01G7/02G01G3/08G01G7/00
    • G01G21/244
    • In a force-transmitting mechanism (1, 101) with a parallel-guiding mechanism having a stationary (2) and a movable (4) parallelogram leg (2), with a lever mechanism having at least one lever (6), and with at least one coupling element (5, 105) that introduces a force into the lever mechanism or transfers the force within the lever mechanism, wherein the coupling element is stiff in its lengthwise direction but bends elastically. The coupling element has at least one first flexure joint (8) with a thin material connection and it is movable in the parallelogram plane. The lever mechanism and each coupling element (5, 105) are integral parts of a material block. Each coupling element (5, 105) also has at least two second flexure joints (16, 116) with thin material connections whose flexibility is in the direction transverse to the bending of the first flexure joint (8).
    • 在具有平行导向机构的力传递机构(1,101)中具有固定(2)和可移动(4)平行四边形腿(2),杠杆机构具有至少一个杠杆(6) 至少一个联接元件(5,105),其将力引入杠杆机构或传递杠杆机构内的力,其中联接元件在其长度方向上是刚性的,但是弹性弯曲。 耦合元件具有至少一个具有薄材料连接的第一挠曲接头(8),并且它可以平行四边形平面移动。 杠杆机构和每个联接元件(5,105)是材料块的整体部分。 每个联接元件(5,105)还具有至少两个具有薄材料连接的第二挠曲接头(16,116),其柔性在横向于第一挠曲接头(8)的弯曲的方向上。
    • 6. 发明申请
    • Measurement standard for sensing lifting heights
    • 检测提升高度的测量标准
    • US20060005415A1
    • 2006-01-12
    • US11169210
    • 2005-06-28
    • Robert HammerlCarsten SchottkeKlaus Schroder
    • Robert HammerlCarsten SchottkeKlaus Schroder
    • G01G3/08A45B3/08
    • B66F9/0755
    • The invention relates to an industrial truck having a first load-bearing component (12) and a second load-bearing component (14) which are provided such that they can move in relation to one another for the purpose of carrying out a conveying movement, a sensor scale (22) being provided on one of the load-bearing components (14) (scale load-bearing component) for the purpose of detecting the relative movement between the two load-bearing components (12, 14), and a sensor (24), which is designed to detect the sensor scale (22), being provided on the respective other load-bearing component (12) (sensor load-bearing component). The industrial truck is characterized in that the sensor scale (22) is designed integrally on the scale load-bearing component (14) such that a section (14a) of the scale load-bearing component (14) itself is the sensor scale (22).
    • 本发明涉及一种具有第一承载部件(12)和第二承重部件(14)的工业卡车,其被设置成使得它们可以相对于彼此移动,以便进行输送运动, 为了检测两个承载部件(12,14)之间的相对移动,传感器标尺(22)设置在承载部件(14)中的一个(标尺承载部件)上,传感器 (24),其被设计成检测传感器刻度(22),设置在相应的其它承载部件(12)(传感器承载部件)上。 工业车辆的特征在于,传感器秤(22)被整体设计在标尺承载部件(14)上,使得标尺承载部件(14)本身的部分(14a)本身是传感器标尺 22)。
    • 7. 发明授权
    • Load cell weighing apparatus using the same
    • 称重传感器称重装置使用该装置
    • US5929390A
    • 1999-07-27
    • US527090
    • 1995-09-12
    • Kazufumi NaitoTakao SuzukiTaro Hijikata
    • Kazufumi NaitoTakao SuzukiTaro Hijikata
    • G01G3/14G01L1/22G01G3/08
    • G01L1/2281G01G3/1412G01L1/2243G01L1/2262G01L1/2275
    • A load cell includes a strain inducing element having a fixed rigid body fixedly secured to a base support, and a plurality of transverse beams spaced one above the other and connecting the fixed and movable rigid bodies together. Each of the transverse beams has first and second strain generating areas defined therein in spaced relation to each other at respective locations adjacent the fixed and movable rigid bodies. A bridge circuit for outputting a load signal of a magnitude proportional to strains generated at the strain generating areas includes strain gauges for detecting the strains generated at the strain generating areas, adjusting elements for adjusting a balance of the bridge circuit, and lines connecting them together. A circuit portion of the bridge circuit which includes at least the strain gauge and some of the lines is formed in a predetermined pattern on one surface of the strain inducing element so as to straddle between the first and second strain generating areas. Not only is the circuit portion symmetrical with respect to a point intermediate between the first and second strain generating areas, but also the strain inducing element has left and right portions, including the fixed and movable rigid bodies, which are symmetrical to each other.
    • 测力传感器包括应变诱导元件,其具有固定地固定到基座支撑件上的固定刚体,以及多个横向梁,其横向间隔开并将固定和移动的刚体连接在一起。 每个横梁具有限定在其中的第一和第二应变产生区域,其中相邻于固定和可移动刚体的相应位置彼此间隔开。 用于输出与在应变产生区域产生的应变成比例的大小的负载信号的桥接电路包括用于检测在应变产生区域处产生的应变的应变计,用于调整桥接电路的平衡的调整元件以及将它们连接在一起的线 。 至少包括应变计和一些线路的电路电路的电路部分以预定的图案形成在应变诱发元件的一个表面上,以跨越第一和第二应变产生区域。 电路部分不仅相对于第一和第二应变产生区域之间的点对称,而且应变引发元件还具有彼此对称的左右部分,包括固定和移动的刚体。
    • 10. 发明授权
    • Two point load cell
    • 两点称重传感器
    • US5496973A
    • 1996-03-05
    • US271846
    • 1994-07-07
    • Johannes Wirth
    • Johannes Wirth
    • G01G21/24G01L1/00G01G3/08
    • G01G21/24
    • The rod-shaped load cell consists of a guide section (1), which is subdivided into a frame (6) and a load-bearing element (7), and two parallel, rigid plates (8) connecting the two cited elements. Plates (8) are connected to both frame (6) and load-bearing element (7) by band-shaped flexural joints (9) which extend across the overall length of guide section (1). The load cell rests via frame (6) upon two feet (2) located outermost on rod-shaped guide section (1). The platform (5) rests upon two mounting elements (3) also located outermost on guide section (1), with the mounting elements (3) acting on load-bearing element (7). A force sensor (4) is diagonally installed at half the length of guide section (1). When platform (5) is loaded, tensile force acts upon force sensor (4) (see FIG. 1).
    • 杆形测力传感器由引导部分(1)组成,该引导部分被细分为框架(6)和承重元件(7),以及连接两个被引用的元件的两个平行的刚性板(8)。 板(8)通过在引导部分(1)的整个长度上延伸的带状弯曲接头(9)连接到框架(6)和承载元件(7)。 称重传感器通过框架(6)搁置在位于杆形引导部分(1)最外侧的两个脚部(2)上。 平台(5)位于也位于引导部分(1)最外侧的两个安装元件(3)上,其中安装元件(3)作用在承载元件(7)上。 力传感器(4)在引导部分(1)的长度的一半对角地安装。 当平台(5)装载时,张力作用在力传感器(4)(见图1)上。