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    • 1. 发明授权
    • Measure driving apparatus and measure signal generating apparatus of
non-contact system, using wave of inclined rotor
    • 测量非接触式系统的驱动装置和测量信号发生装置,使用倾斜转子波
    • US5824896A
    • 1998-10-20
    • US683813
    • 1996-07-16
    • Kyu-heyng Lee
    • Kyu-heyng Lee
    • G01F3/08G01F3/12G01F3/32
    • G01F3/08G01F3/12
    • The present invention provides a flow measuring machine measuring a flowing amount of fluid or gas, and more particularly to a measure driving apparatus for converting a flowing amount into a mechanical momentum, by wave vibration and for transferring the mechanical momentum to a signal generating apparatus, and a measure signal generating apparatus for transferring a turning effect of a rotor in a non-contact system to a sender to output a turning signal. The machine of the present invention more precisely converts the flowing force of the fluid or gas into a vibration force of wave motion of the rotor, thereby getting a precise measure. Further, since the rotor performs a line contact rolling motion with a housing, a driving loss due to friction can be reduced. Also since the rotor can be supported by a bearing, a pressure loss of the fluid due to rotor tare can be reduced, and since the flowing force of the flowing amount is transferred to an outer circumferential surface of the rotor right away, a degree of precision doesn't fall in spite of variation based a flowing speed. Furthermore, since a plate shape of the rotor is used, there is an advantage that the precise measure is available because the force of the fluid operates largely, plus a small size. The signal generating apparatus of the present machine transmits the rotating number in non-contact system, and thus has an effect that the fluid leakage can be removed by closing tightly the body of the machine. Accordingly, an operating pressure of the body inside gets constant to thereby provide an advantage of the precise measuring degree.
    • 本发明提供了一种测量流体或气体的流量的流量测量机,更具体地,涉及一种用于通过波浪振动将流量转换为机械动量并将机械动量传递到信号发生装置的测量驱动装置, 以及测量信号发生装置,用于将非接触式系统中的转子的转动效果传送到发送器以输出转向信号。 本发明的机器更精确地将流体或气体的流动力转换成转子的波动的振动力,从而得到精确的测量。 此外,由于转子与壳体进行线接触滚动运动,所以可以降低由摩擦引起的驱动损失。 此外,由于转子可以被轴承支撑,所以可以减少由于转子皮重导致的流体的压力损失,并且由于流量的流动力立即被转移到转子的外周面, 尽管基于流动速度的变化,精度也不会下降。 此外,由于使用了转子的板状,所以具有可以精确测量的优点,因为流体的作用力很大,加上小的尺寸。 本机的信号发生装置在非接触式系统中发送旋转数,因此具有能够通过闭合机器的主体来去除流体泄漏的效果。 因此,身体内部的操作压力恒定,从而提供精确测量度的优点。
    • 2. 发明授权
    • Unitary drive system for water meter
    • 水表一体式驱动系统
    • US08381586B2
    • 2013-02-26
    • US12723408
    • 2010-03-12
    • John Raymond Scarborough, III
    • John Raymond Scarborough, III
    • G01F3/32
    • G01F3/12G01F15/066
    • A metering apparatus for measuring the flow of water or other fluid through a conduit. The meter comprises a measuring chamber, in which is disposed a nutating ball and disc. A unitary biaxial member, comprising a drive shaft and a spindle having a longitudinal axis offset from that of the drive shaft, couples the ball and disc to a rotating magnet. The unitary biaxial member both controls the offset of the ball and disc from horizontal, such that it nutates in response to water flow through the meter, and translates this nutation to rotation of the magnet, allowing for measurement of water volume flowing through the measuring chamber.
    • 一种用于通过管道测量水或其它流体的流量的计量装置。 仪表包括测量室,其中设置有章动球和盘。 整体式双轴构件包括驱动轴和具有与驱动轴的纵向轴线偏离的纵向轴线的主轴,将球和盘连接到旋转磁体。 整体式双轴构件既可控制球体与水平面的偏移,又能够响应于流经仪表的水流而使其动作,并将该章动转换为磁铁的旋转,从而可测量流过测量室的水量 。
    • 4. 发明申请
    • Unitary Drive System for Water Meter
    • 水表单驱动系统
    • US20110219870A1
    • 2011-09-15
    • US12723408
    • 2010-03-12
    • John Raymond Scarborough, III
    • John Raymond Scarborough, III
    • G01F3/32
    • G01F3/12G01F15/066
    • A metering apparatus for measuring the flow of water or other fluid through a conduit. The meter comprises a measuring chamber, in which is disposed a nutating ball and disc. A unitary biaxial member, comprising a drive shaft and a spindle having a longitudinal axis offset from that of the drive shaft, couples the ball and disc to a rotating magnet. The unitary biaxial member both controls the offset of the ball and disc from horizontal, such that it nutates in response to water flow through the meter, and translates this nutation to rotation of the magnet, allowing for measurement of water volume flowing through the measuring chamber.
    • 一种用于通过管道测量水或其它流体的流量的计量装置。 仪表包括测量室,其中设置有章动球和盘。 整体式双轴构件包括驱动轴和具有与驱动轴的纵向轴线偏离的纵向轴线的主轴,将球和盘连接到旋转磁体。 整体式双轴构件既可控制球体与水平面的偏移,又能够响应于流经仪表的水流而使其动作,并将该章动转换为磁铁的旋转,从而可测量流过测量室的水量 。
    • 6. 发明授权
    • Disc metering assembly for resisting rotational forces
    • 用于抵抗旋转力的盘计量组件
    • US06948363B1
    • 2005-09-27
    • US10831817
    • 2004-04-26
    • Lee KarstenGeorge De JarlaisRonald D. Benson
    • Lee KarstenGeorge De JarlaisRonald D. Benson
    • G01F1/05G01F1/12G01F3/12G01F3/32G01F15/02G01F15/14
    • G01F3/12G01F15/14
    • A fluid meter (10) has a casing (11) providing a measuring chamber (27) and an inlet (18) and outlet (19) communicating with the measuring chamber (27). A partition (20) in the chamber (27) separating said inlet (18) from said outlet (19). A disc (28, 48) is positioned in the chamber (27) and includes projections (36) or niches (57) which are disposed in an arc relative to a center of the disc (28, 48) and the casing is provided with integrally formed depressions (37) or with projections (56) disposed opposite the projections (36) or niches (57) on the disc (28) to be engaged the disc (28) as the disc (28, 48) is nutated with the result of counteracting forces imposed on said disc (28, 48) by fluid flow.
    • 流量计(10)具有提供测量室(27)和与测量室(27)连通的入口(18)和出口(19)的壳体(11)。 所述腔室(27)中的分隔部(20)将所述入口(18)与所述出口(19)分离。 盘(28,48)定位在腔室(27)中,并且包括相对于盘(28,48)的中心设置成弧形的突起(36)或壁环(57),并且壳体设置有 一体形成的凹部(37)或与盘(28)上的突起(36)或龛(57)相对设置成与盘(28)接合的突起(56),当盘(28,48)与 通过流体流动施加在所述盘(28,48)上的抵消力的结果。
    • 7. 发明授权
    • Fluid metering apparatus and method
    • 流体计量装置及方法
    • US4726237A
    • 1988-02-23
    • US746988
    • 1985-06-19
    • Ching Yung
    • Ching Yung
    • G01F3/14G01F3/30G01F3/32G01F7/00G01F11/22G01N1/00G01N1/38G01N35/02G01N1/10
    • G01N35/1097G01N1/38
    • A transfer valve system, method and apparatus are disclosed having a three element valve with a central element sandwiched between front and rear outer elements. Between an aspiration and a discharge position the front and rear outer elements are moved in opposite directions of unequal distances in the same direction with respect to the central member or one outer member and the central member are moved in the same or opposite direction with respect to the other outer member so long as the outer members end up shifted with respect to each other. In the aspiration position, two sample segments are contained in series within the valve. In one embodiment of the invention, one segment is contained within a conduit in the central member and the other segment is contained within a passageway in the rear member. In another embodiment of the invention, the two segments are contained within different conduits of the central member.
    • 公开了一种转换阀系统,方法和装置,其具有夹在前后外部元件之间的中心元件的三元件阀。 在抽吸和排出位置之间,前后外部元件相对于中心构件或一个外部构件在相同方向上以不相等的方向相反的方向移动,并且中心构件相对于中心构件或一个外部构件以相同或相反的方向移动 另一个外部构件,只要外部构件相对于彼此最终移动。 在抽吸位置,两个样品段在阀内串联包含。 在本发明的一个实施例中,一个部分包含在中心部件中的导管内,另一个部分被容纳在后部部件中的通道内。 在本发明的另一个实施例中,两个段被包含在中心构件的不同导管内。