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    • 4. 发明授权
    • Vortex flow meter
    • 涡街流量计
    • US06435036B1
    • 2002-08-20
    • US09904545
    • 2001-07-16
    • Toshisuke SakaiToshihiko MatsudaKazuyuki KasaharaYasumasa FukamiTakashi EharaMotohiko MatsugumaYasuhiko EzakiMasashi Yamaguchi
    • Toshisuke SakaiToshihiko MatsudaKazuyuki KasaharaYasumasa FukamiTakashi EharaMotohiko MatsugumaYasuhiko EzakiMasashi Yamaguchi
    • G01F132
    • G01F1/329G01F1/3245
    • A vortex flow meter includes a measuring tube in which a fluid is carried, a vortex generator provided in the measuring tube for developing a Karman vortex in the fluid, a magnetic field generator generating a magnetic field across the measuring tube downstream of the vortex generator, a pair of electromotive force measuring electrodes provided downstream of the vortex generator for measuring an electromotive force generated by the Karman vortex passing across the magnetic field, a pair of reference electrodes provided at locations upstream and downstream of the electromotive force measuring electrodes, respectively, for measuring a potential at each location, and a detector circuit electrically connected to the electromotive force measuring electrodes and the reference electrodes for calculating the flow of the fluid from the electromotive force and the potential measured by the reference electrodes. The flow is calculated by subtracting the potential difference of the reference potential measuring electrodes from the electromotive force measured by the electromotive force measuring electrodes. This allows the flow meter to have an increased measuring range, meet a wide range of flow conditions, have a simple construction, and have measurement accuracy.
    • 涡流流量计包括其中载有流体的测量管,设置在测量管中用于在流体中显影卡曼涡流的涡流发生器,产生涡流发生器下游的测量管的磁场的磁场发生器, 设置在涡流发生器下游的一对电动势测量电极,用于测量由穿过磁场的卡门涡流产生的电动势,分别设置在电动势测量电极的上游和下游的一对参考电极,用于 测量每个位置处的电位,以及电连接到电动势测量电极和参考电极的检测器电路,用于从电动势计算流体的流量和由参考电极测量的电位。 通过从由电动势测量电极测量的电动势中减去参考电位测量电极的电位差来计算流量。 这允许流量计具有增加的测量范围,满足宽范围的流动条件,具有简单的结构,并且具有测量精度。
    • 5. 发明授权
    • Pump and liquid supply apparatus having the pump
    • 具有泵的泵和液体供给装置
    • US07690886B2
    • 2010-04-06
    • US11461101
    • 2006-07-31
    • Toshisuke SakaiMotohiko MatsugumaTetsuya Fukuda
    • Toshisuke SakaiMotohiko MatsugumaTetsuya Fukuda
    • F04D29/40
    • F04D29/586F04D5/002F04D13/0606
    • To provide a pump comprising an impeller which sucks and discharges liquid, a motor unit which drives the impeller, a parting plate which is disposed between the impeller and the motor unit and which partitions the impeller and the motor unit, a case formed with a pump chamber in which the impeller is accommodated, a suction port which is connected to the case and which sucks liquid and a discharge port which discharges liquid, wherein the case is provided with a discharge passage which discharges liquid introduced into the pump chamber from the suction port, the discharge passage has a predetermined diameter, the discharge passage is provided along an outer periphery of the pump chamber at a location at a predetermined distance from the outer periphery of the pump chamber, the pump further comprises at least one reflow passage which brings the discharge passage and the pump chamber into communication with each other and through which liquid flowing through the discharge passage flows back to the pump chamber.
    • 为了提供一种泵,其包括吸入和排出液体的叶轮,驱动叶轮的马达单元,设置在叶轮和马达单元之间并分隔叶轮和马达单元的分隔板,形成有泵 其中容纳有叶轮的腔室,连接到壳体并吸入液体的吸入口和排出液体的排出口,其中,该壳体设置有排出通道,该排出通道从吸入口排出引入泵室的液体 所述排出通道具有预定的直径,所述排出通道沿着所述泵室的外周设置在与所述泵室的外周隔开预定距离的位置处,所述泵还包括至少一个回流通道, 排出通道和泵室彼此连通并且流经排放通道的液体通过其流动 回到泵室。
    • 7. 发明授权
    • Apparatus for generating alkali ion water
    • 用于产生碱离子水的设备
    • US06168692A
    • 2001-01-02
    • US08251999
    • 1994-06-01
    • Toshisuke SakaiNarumi Nagase
    • Toshisuke SakaiNarumi Nagase
    • C25B1500
    • C02F1/46104C02F1/001C02F1/4618C02F1/68C02F2001/4619C02F2201/46115C02F2201/46125C02F2201/4613C02F2201/46145C02F2201/4615C02F2201/4617C02F2209/005C02F2209/006C02F2209/06
    • An apparatus for generating alkali ion water includes an electrolytic cell. At least two electrodes are disposed in the electrolytic cell. A diaphragm disposed in the electrolytic cell extends between the electrodes. A dc voltage is supplied to the electrodes. A mean value of the dc voltage is varied at a given inclination. A first detecting device operates to detect an ac current and generate a signal representative thereof. The dc voltage is derived from the ac current. A second detecting device operates to detect the mean value of the dc voltage in response to the signal generated by the first detecting device. A third detecting device operates to detect an inclination in a variation in the mean value of the dc voltage in response to the mean value of the dc voltage which is detected by the second detecting device. The mean value of the dc voltage is controlled in response to the inclination detected by the third detecting device.
    • 用于产生碱性离子水的设备包括电解池。 至少两个电极设置在电解槽中。 设置在电解池中的隔膜在电极之间延伸。 向电极提供直流电压。 直流电压的平均值以给定的倾斜度变化。 第一检测装置用于检测交流电流并产生代表其的信号。 直流电压源自交流电流。 第二检测装置用于响应于由第一检测装置产生的信号检测直流电压的平均值。 第三检测装置用于响应于由第二检测装置检测的直流电压的平均值来检测直流电压的平均值的变化的倾斜度。 响应于由第三检测装置检测到的倾斜度来控制直流电压的平均值。
    • 10. 发明授权
    • Cooling device and centrifugal pump to be used in the same device
    • 冷却装置和离心泵用于同一装置
    • US07544049B2
    • 2009-06-09
    • US10852179
    • 2004-05-25
    • Shinya KogaToshisuke SakaiKyou NiwatsukinoToshiyuki Kubota
    • Shinya KogaToshisuke SakaiKyou NiwatsukinoToshiyuki Kubota
    • F04B35/04H05K7/20
    • H01L23/473H01L2924/0002H01L2924/00
    • A cooling device has a closed circulating channel for circulating coolant, and in the channel, a radiator and a contact-heat-exchanger type centrifugal pump are provided. A heat-producing electronic component contacts with the centrifugal pump, and the coolant in the pump collects the heat off the component due to the heat exchanging function. Then the heat is dissipated from the radiator. The pump includes a pump-casing made of highly heat conductive material and an impeller. The pump casing has a base wall and a cover wall opposite the base wall. The base wall has an outer wall face constituting a heat-receiving face, and an inner wall face facing the impeller. The impeller is disposed in a pump room defined between the base wall and cover wall of the casing. A sucking channel is provided between the heat-receiving face and an inner wall face of the pump room. This inner wall has a recess where protrusions extending toward the impeller or dimples are provided.
    • 冷却装置具有用于循环冷却剂的封闭循环通道,并且在通道中设置有散热器和接触热交换型离心泵。 发热电子部件与离心泵接触,并且由于热交换功能,泵中的冷却剂从部件收集热量。 然后散热器散热。 泵包括由高导热材料和叶轮制成的泵壳体。 泵壳体具有底壁和与底壁相对的盖壁。 底壁具有构成受热面的外壁面和面向叶轮的内壁面。 叶轮设置在限定在壳体的底壁和盖壁之间的泵室中。 在受热面与泵室的内壁面之间设有吸入通道。 该内壁具有凹部,突出部朝向叶轮或凹部延伸。