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    • 4. 发明授权
    • Liquid pump and sealing mechanism
    • 液体泵和密封机构
    • US06887048B2
    • 2005-05-03
    • US10379550
    • 2003-03-06
    • Ryosuke HirataYoji Mori
    • Ryosuke HirataYoji Mori
    • F04D29/12F04D29/14F04D29/70
    • F04D29/146
    • A liquid pump has a sealing mechanism utilizing magnets. The sealing mechanism includes an annular rotating seal attached to the lower surface of a rotary base member fixed to the motor rotating shaft. Additionally, a flexible stationary seal is joined and separated with respect to the rotating seal. Movable magnets are disposed on the rotary base and are adapted to be displaced by centrifugal force due to a rotation of the rotary base member. A stationary magnet is disposed on the upper-surface side of a vertical sliding member to which the flexible stationary seal is fixed. The flexible stationary seal utilized has a cylindrical body. At the upper and lower end portions and the side surface portion, connecting portions to the stationary and movable members are formed. The middle portion has an elastic portion is formed on it.
    • 液体泵具有利用磁体的密封机构。 密封机构包括安装在固定于马达旋转轴的旋转基座部件的下表面的环状旋转密封件。 此外,柔性固定密封件相对于旋转密封件接合和分离。 可移动磁体设置在旋转基座上,并且由于旋转基座构件的旋转而被离心力移位。 固定磁铁设置在固定有柔性固定密封件的垂直滑动构件的上表面侧。 使用的柔性固定密封件具有圆柱体。 在上端部和下端部以及侧面部形成有与固定部件和可动部件的连接部。 中间部分形成有弹性部分。
    • 6. 发明授权
    • Recovery pump for recovering floating oil
    • 用于回收浮油的回收泵
    • US06312228B1
    • 2001-11-06
    • US09478640
    • 2000-01-06
    • Yoji MoriMasami Hashimoto
    • Yoji MoriMasami Hashimoto
    • F04B5300
    • F04D13/066F04D7/02F04D13/024F04D29/426
    • A recovery pump capable of reliably recovering floating oil and/or floating matter such as scum or the like while being significantly down-sized. A pump casing is provided in a lower section thereof with a suction passage and a discharge passage. The suction passage is horizontally arranged and has a suction opening and the discharge passage is horizontally arranged below the suction passage. The passages are arranged so as to communicate with each other through a through-hole and the discharge passage is provided therewithin right below the through-hole with an impeller, which is driven by a drive motor located on an upper section of the pump casing. The suction opening is provided with a recovery section for recovering the floating oil and/or floating matter.
    • 能够可靠地回收漂浮油和/或漂浮物质(例如浮渣等)同时显着减小尺寸的回收泵。 泵壳体的下部设有吸入通道和排出通道。 吸入通道水平布置并具有吸入口,并且排出通道水平地布置在吸入通道下方。 通道布置成通过通孔彼此连通,并且排出通道在通孔的正下方设置有叶轮,该叶轮由位于泵壳体上部的驱动马达驱动。 吸入口设置有用于回收浮动油和/或浮动物质的回收部。
    • 7. 发明授权
    • Solenoid-operated valve for thermally insulated piping and attachment
construction therefor
    • 用于隔热管道及其附件结构的电磁阀
    • US5623960A
    • 1997-04-29
    • US436422
    • 1995-05-23
    • Hideki KawamuraYoji MoriMinoru Ueta
    • Hideki KawamuraYoji MoriMinoru Ueta
    • F16K31/06H01F7/16F16L7/00F16K49/00
    • F16K31/0655F16K31/0651H01F7/1607Y10T137/5987Y10T137/6416Y10T137/7036
    • The present invention relates to a solenoid-operated valve for a thermally insulated piping having a thermally insulated outer periphery suitable for transporting low-temperature fluid, high-temperature fluid or the like and relates also to an attachment construction for the valve.Conventionally, with this type of solenoid-operated valve for a thermally insulated piping, since it is necessary to to increase a magnetic flux density of the solenoid coil by increasing the number of turns of the oil or the electric current to be applied thereto, there has been the problem of high production costs and running costs.In the case of the solenoid-operated valve for a thermally insulated piping according to the present invention, inside a heat-insulating layer (6) surrounding flow passages (7, 20, 21, 26, 33) in the form of a pipe, there is provided a fixed core (23) constituting a magnetic circuit between a solenoid coil (17) and a movable coil (18). Then, magnetic resistance between the solenoid coil and the movable core may be reduced, without entailing enlargement of the movable core and the production costs and the running costs may be reduced.
    • PCT No.PCT / JP93 / 01839 Sec。 371日期:1995年5月23日 102(e)日期1995年5月23日PCT提交1993年12月17日PCT公布。 出版物WO94 / 15127 日期:1994年7月7日本发明涉及一种用于隔热管道的电磁阀,其具有适用于输送低温流体,高温流体等的绝热外周边,还涉及用于 阀。 通常,对于这种用于隔热管道的电磁阀,由于需要通过增加油的匝数或施加到其上的电流来增加螺线管线圈的磁通密度,所以 一直是高生产成本和运行成本的问题。 在根据本发明的用于绝热管道的电磁阀的情况下,围绕管道形式的流动通道(7,20,21,26,33)的隔热层(6)内部, 提供构成螺线管线圈(17)和可动线圈(18)之间的磁路的固定铁心(23)。 于是,可以减小螺线管线圈和可动铁芯之间的磁阻,而不需要增大可动铁芯,并且可以降低生产成本并降低运行成本。