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    • 91. 发明申请
    • Stability and load sensors for wheeled vehicles
    • 轮式车辆的稳定性和负载传感器
    • US20080271541A1
    • 2008-11-06
    • US12074747
    • 2008-03-07
    • Eli Neuman
    • Eli Neuman
    • G01L1/00G01M1/00
    • G07C5/085G01G19/12G01G23/3728G01L1/2237G01L5/0019
    • A stability sensing and load monitoring system for wheeled vehicles, in particular for the construction and agricultural industries, is disclosed. The system is based on strain sensors mounted on each wheel such that the measured strain represents the load on this wheel. A power source and a local wheel controller are located near the strain sensors. The data from the strain sensors is processed by the local wheel controller and then wirelessly transmitted to a single central unit, located in the cabin. The central controller communicates with all four local wheel controllers, collects the data, and then processes it to calculate the total load on the vehicle, its center of gravity, and the stability status.
    • 公开了用于轮式车辆的稳定性感测和负载监测系统,特别是用于建筑和农业行业。 该系统基于安装在每个车轮上的应变传感器,使得测量的应变代表该车轮上的负载。 电源和局部轮控制器位于应变传感器附近。 来自应变传感器的数据由本地轮控制器处理,然后无线传输到位于机舱内的单个中心单元。 中央控制器与所有四个本地轮控制器通信,收集数据,然后处理它以计算车辆上的总负载,其重心和稳定状态。
    • 92. 发明申请
    • METHOD FOR THE MODULAR BALANCING OF A TURBOMACHINE ROTOR
    • 涡轮转子模块平衡方法
    • US20080245138A1
    • 2008-10-09
    • US12019076
    • 2008-01-24
    • Paul LucasAlain Luinaud
    • Paul LucasAlain Luinaud
    • G01M1/00
    • F01D5/027F05D2260/80G01M1/24
    • A method of balancing a first turbomachine module (20), comprising along an axis of rotation a bearing plane (22) on one side and a junction plane (24) on the other, with respect to a rotor (1) comprising said module (20), in whichan equivalent complementary module is defined such that the two modules form a rotor equivalent to said rotor by assembling along the junction plane (24), the total unbalance of said equivalent rotor and the corresponding correction to be made to said module are determined, which method comprises the following steps: the concentricity deviation of the bearing (22) of the first module (20) with respect to the axis perpendicular to the junction plane (24) is determined; the theoretical geometric unbalance of said equivalent complementary module is calculated; a short journal (40) is mounted on the first module adjacent to the junction plane (24) to form a short rotor whose axis of rotation is substantially coincident with the axis of the module (20) and the unbalance of the short rotor is measured; and the total unbalance of said module is determined by adding to the unbalance of the short rotor a systematic unbalance corresponding to the geometric unbalance.
    • 一种平衡第一涡轮机模块(20)的方法,所述第一涡轮机组件(20)相对于包括所述模块的转子(1)沿着旋转轴线包括一侧的支承平面(22)和另一侧的接合平面(24) 20),其中定义等效的互补模块,使得两个模块通过沿着接合面(24)组装形成与所述转子等效的转子,所述等效转子的总不平衡和对所述模块的相应校正 确定该方法,该方法包括以下步骤:确定第一模块(20)的轴承(22)相对于垂直于结面(24)的轴的同心度偏差; 计算所述等效补充模块的理论几何不平衡; 短路颈(40)安装在与接合面(24)相邻的第一模块上以形成短转子,其旋转轴线基本上与模块(20)的轴线重合,并测量短转子的不平衡 ; 并且通过增加短转子的不平衡来确定对应于几何不平衡的系统不平衡来确定所述模块的总体不平衡。
    • 95. 发明授权
    • System for assembly of a rotating machine
    • 旋转机组装系统
    • US07275422B2
    • 2007-10-02
    • US11386709
    • 2006-03-23
    • Shuji HoliYukiko Takasugi
    • Shuji HoliYukiko Takasugi
    • G01M1/00
    • F01D25/00B23P19/04F05D2230/50F05D2230/60F05D2260/80
    • In each work process of the assembly work of a large rotating machine, an input terminal unit 101 displays measuring points necessary for measurements of radial and axial clearances between a rotor and a casing so as to provide workers with instructions. When workers measure the clearances at the instructed measuring points, the measured values will be supplied to the input terminal unit 101 so as to confirm whether the measured values are within design tolerances or not. In addition, when workers measure the clearances at the instructed measuring points, amounts of adjustment of the casing will be displayed so that the measurement results at the measuring positions will have an optimum positional relation with the designed values.
    • 在大型旋转机械的组装工作的每个工作过程中,输入端子单元101显示用于测量转子和壳体之间的径向和轴向间隙所需的测量点,以向工人提供指示。 当工作人员在指示的测量点测量间隙时,测量值将被提供给输入端子单元101,以便确认测量值是否在设计公差内。 此外,当工作人员在指示的测量点测量间隙时,将显示壳体的调整量,使测量位置处的测量结果与设计值具有最佳的位置关系。
    • 100. 发明授权
    • Golf ball precision balancing system
    • 高尔夫球精密平衡系统
    • US06971263B1
    • 2005-12-06
    • US10425313
    • 2003-04-29
    • Peter Ingalls Colman
    • Peter Ingalls Colman
    • A63B37/00A63B47/00G01M1/00G01M1/12
    • G01M1/12A63B37/0003A63B47/008
    • A compact, portable, and expedient system for precisely testing the balance of balls used in sports and competitive games, which includes a test container slightly larger than the ball being tested. Preferably, the test container has several spaced-apart ball-centering guides, a fluid fill line, a removable cap, a sleeve attached to the cap and adapted for positioning a permanent ink marker relative to the golf ball being tested for consistent ball marking, and at least one associated packet of pre-measured ingredients for raising the specific gravity of the fluid used in the test container for balance testing. Optionally, a ball lifter can be used for removing a ball from the test container subsequent to balance testing. It is contemplated that an operator will be able to test multiple balls with a single packet of pre-mixed and pre-measured specific gravity increasing chemicals.
    • 一种紧凑,便携和便利的系统,用于精确测试运动和竞技游戏中使用的球的平衡,其中包括比被测球更大的测试容器。 优选地,测试容器具有几个间隔开的球对中导向器,流体填充线,可移除盖,连接到盖的套筒,并且适于相对于正在测试的用于一致的球标记的高尔夫球定位永久墨迹, 以及用于提高测试容器中使用的流体的比重用于平衡测试的至少一个相关的预先测量的成分包。 可选地,在平衡测试之后,可以使用滚珠升降器从测试容器中移除球。 可以设想,操作者将能够使用预先混合和预先测量的比重增加的化学品的单个包来测试多个球。