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    • 4. 发明申请
    • Fluid Flow Meter
    • 流体流量计
    • US20120031195A1
    • 2012-02-09
    • US12851598
    • 2010-08-06
    • Anatoly SkirdaRichard MehusWilliam M. ChristensenScott Limback
    • Anatoly SkirdaRichard MehusWilliam M. ChristensenScott Limback
    • G01F1/56G01P3/36
    • G01F3/10
    • Fluid flow meters and methods for measuring different aspects of fluid flow with a non-contact sensor are provided. In some cases a fluid flow gear meter is provided with a fluid chamber that is sealed with a cover portion carrying the non-contact sensor. An optional separation member may be located between the cover portion and the chamber to seal the chamber. In some cases the cover portion and/or separation member are configured to transmit visible light to allow viewing of the fluid chamber, through material selection and/or the presence of viewing cavities within the material. The flow meter is optionally configured to prevent or reduce the transmission of ambient environmental radiation into the flow meter to lessen the likelihood that it may adversely affect an optical non-contact sensor used to detect movement of gears within the chamber.
    • 提供流体流量计和用于测量具有非接触式传感器的流体流动的不同方面的方法。 在一些情况下,流体流量传感器设置有流体室,该流体室用承载非接触传感器的盖部分密封。 可选的分离构件可以位于盖部分和腔室之间以密封腔室。 在一些情况下,盖部分和/或分离构件被构造成透射可见光以允许通过材料选择和/或材料内观察腔的存在来观察流体室。 流量计可选地被配置为防止或减少环境辐射进入流量计的传输,以减少其可能不利地影响用于检测室内的齿轮的运动的光学非接触式传感器的可能性。
    • 5. 发明授权
    • Apparatus and method for dispensing a detergent solution
    • 用于分配洗涤剂溶液的装置和方法
    • US5016790A
    • 1991-05-21
    • US453078
    • 1989-12-19
    • John E. ThomasDarrell SabyRichard Mehus
    • John E. ThomasDarrell SabyRichard Mehus
    • A47L15/44F16K21/10G01F13/00
    • G01F13/006A47L15/44A47L15/4436F16K21/10
    • An apparatus for dispensing a liquid detergent solution using a timing fluid is disclosed. A preferred cleaning system (10) includes a fluid-operated solvent metering apparatus (38). The metering apparatus (38) preferably includes a normally-closed valve (16) and a timing device (40). The timing device (40) preferably includes a cylinder (52) and a piston (54), wherein the piston (54) forms a pair of subchambers (56, 58) which are interconnected by a flow control device (68). The flow control device (68) serves to restrict the flow of a timing fluid from one subchamber (56) to the other subchamber (58) so as to hold the valve (16) in its open position for a period of timing following its initial manual opening. A return spring (48) in the normally closed valve (16) urges the valve (16) toward its closed position, and the spring (48) also acts against the piston (54) to cause the timing fluid to flow from the first subchamber (56 ) to the second subchamber (58). A water source 12 and a detergent source 14 are in fluid communication for the period of time that the valve (16) is held open.
    • 公开了一种使用定时流体分配液体洗涤剂溶液的设备。 优选的清洁系统(10)包括流体操作的溶剂计量装置(38)。 计量装置(38)优选地包括常闭阀(16)和定时装置(40)。 定时装置(40)优选地包括气缸(52)和活塞(54),其中活塞(54)形成一对通过流量控制装置(68)互连的子室(56,58)。 流量控制装置(68)用于限制定时流体从一个子室(56)到另一个子室(58)的流动,以将阀门(16)保持在其打开位置,在其初始 手动打开。 常闭阀(16)中的复位弹簧(48)将阀(16)推向其关闭位置,并且弹簧(48)也作用在活塞(54)上,以使正时流体从第一子室 (56)连接到第二子室(58)。 水源12和洗涤剂源14在阀(16)保持打开的时间段内流体连通。
    • 6. 发明申请
    • FLOW METER
    • 流量计
    • US20100199758A1
    • 2010-08-12
    • US12369501
    • 2009-02-11
    • Eugene TokhtuevChristopher OwenAnatoly SkirdaViktor SlobodyanRichard Mehus
    • Eugene TokhtuevChristopher OwenAnatoly SkirdaViktor SlobodyanRichard Mehus
    • G01F3/10G01J3/00
    • G01F3/10
    • Embodiments of the invention provide devices and methods for measuring fluid volume. Devices according to some embodiments include a chamber, having a pair of gears rotatably mounted therewithin. Fluid flow through the chamber causes rotation of the gears, such that each rotation and/or partial rotation results in a known volume of the fluid passing through the chamber. An optical sensor positioned outside of the chamber, can view the rotating gears through a substantially transparent chamber wall. The optical sensor can view an optical characteristic of one or both of the gears, and based upon this data, fluid volume, flow rate, and/or flow direction can be determined. Devices and methods disclosed herein can provide for improved precision in fluid flow meter measurement. In addition, the devices and methods used herein can be more durable and easier to fabricate than previously known positive displacement flow meters.
    • 本发明的实施例提供了用于测量流体体积的装置和方法。 根据一些实施例的装置包括具有可旋转地安装在其中的一对齿轮的腔室。 通过腔室的流体流动导致齿轮的旋转,使得每个旋转和/或部分旋转导致通过腔室的已知体积的流体。 定位在室外的光学传感器可通过基本上透明的室壁观察旋转齿轮。 光学传感器可以观察一个或两个齿轮的光学特性,并且基于该数据,可以确定流体体积,流速和/或流动方向。 本文公开的装置和方法可以提供流体流量计测量的改进精度。 此外,本文所使用的装置和方法可以比先前已知的正排量流量计更加耐用和容易制造。
    • 7. 发明授权
    • Fluid flow meter
    • 流体流量计
    • US08166828B2
    • 2012-05-01
    • US12851598
    • 2010-08-06
    • Anatoly SkirdaRichard MehusWilliam M. ChristensenScott Limback
    • Anatoly SkirdaRichard MehusWilliam M. ChristensenScott Limback
    • G01G1/56
    • G01F3/10
    • Fluid flow meters and methods for measuring different aspects of fluid flow with a non-contact sensor are provided. In some cases a fluid flow gear meter is provided with a fluid chamber that is sealed with a cover portion carrying the non-contact sensor. An optional separation member may be located between the cover portion and the chamber to seal the chamber. In some cases the cover portion and/or separation member are configured to transmit visible light to allow viewing of the fluid chamber, through material selection and/or the presence of viewing cavities within the material. The flow meter is optionally configured to prevent or reduce the transmission of ambient environmental radiation into the flow meter to lessen the likelihood that it may adversely affect an optical non-contact sensor used to detect movement of gears within the chamber.
    • 提供流体流量计和用于测量具有非接触式传感器的流体流动的不同方面的方法。 在一些情况下,流体流量传感器设置有流体室,该流体室用承载非接触传感器的盖部分密封。 可选的分离构件可以位于盖部分和腔室之间以密封腔室。 在一些情况下,盖部分和/或分离构件被构造成透射可见光以允许通过材料选择和/或材料内观察腔的存在来观察流体室。 流量计可选地被配置为防止或减少环境辐射进入流量计的传输,以减少其可能不利地影响用于检测室内的齿轮的运动的光学非接触式传感器的可能性。
    • 8. 发明授权
    • Gear flow meter with optical sensor
    • 齿轮流量计带光学传感器
    • US08069719B2
    • 2011-12-06
    • US12369501
    • 2009-02-11
    • Eugene TokhtuevChristopher OwenAnatoly SkirdaViktor SlobodyanRichard Mehus
    • Eugene TokhtuevChristopher OwenAnatoly SkirdaViktor SlobodyanRichard Mehus
    • G01F3/04
    • G01F3/10
    • Embodiments of the invention provide devices and methods for measuring fluid volume. Devices according to some embodiments include a chamber, having a pair of gears rotatably mounted therewithin. Fluid flow through the chamber causes rotation of the gears, such that each rotation and/or partial rotation results in a known volume of the fluid passing through the chamber. An optical sensor positioned outside of the chamber, can view the rotating gears through a substantially transparent chamber wall. The optical sensor can view an optical characteristic of one or both of the gears, and based upon this data, fluid volume, flow rate, and/or flow direction can be determined. Devices and methods disclosed herein can provide for improved precision in fluid flow meter measurement. In addition, the devices and methods used herein can be more durable and easier to fabricate than previously known positive displacement flow meters.
    • 本发明的实施例提供了用于测量流体体积的装置和方法。 根据一些实施例的装置包括具有可旋转地安装在其中的一对齿轮的腔室。 通过腔室的流体流动导致齿轮的旋转,使得每个旋转和/或部分旋转导致通过腔室的已知体积的流体。 定位在室外的光学传感器可通过基本上透明的室壁观察旋转齿轮。 光学传感器可以观察一个或两个齿轮的光学特性,并且基于该数据,可以确定流体体积,流速和/或流动方向。 本文公开的装置和方法可以提供流体流量计测量的改进精度。 此外,本文所使用的装置和方法可以比先前已知的正排量流量计更加耐用和容易制造。