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    • 1. 发明授权
    • Solenoid-operated reciprocating pump
    • 电磁式往复泵
    • US5100304A
    • 1992-03-31
    • US675274
    • 1991-03-26
    • Toshio OsadaTamotsu MoriMasaaki Tanabe
    • Toshio OsadaTamotsu MoriMasaaki Tanabe
    • F04B17/04F04B35/04
    • F04B17/042
    • A solenoid-operated reciprocating pump includes a casing having a cylinder with a central axis. A main shaft is disposed in and secured at one end to the casing in alignment with the central axis of the cylinder. A piston having a piston head is slidably fitted over the main shaft such that the piston head is disposed within the cylinder for axial motion. A coil spring extends between the piston and casing to bias the piston in a first axial direction and an armature radially extends from the outer periphery of the piston for interaction with an electromagnet disposed around the longitudinal periphery of the piston. The electromagnet attracts the armature and hence the piston in a second axial direction opposite from the first direction. On end of the coil spring is fixed to one of the piston or the casing and the other end of the spring is rotatably supported on the other of the piston or the casing by a spring retainer seated on a plurality of spherical balls which are in turn seated on said other of the piston or the casing means. The balls are positioned at equal distances radially from the central axis of the coil spring and at equal circumferential spacings around the axis.
    • 电磁操作的往复泵包括具有中心轴的气缸的壳体。 主轴设置在壳体的一端并与其中心轴对准的一端固定。 具有活塞头的活塞可滑动地装配在主轴上,使得活塞头设置在气缸内用于轴向运动。 螺旋弹簧在活塞和壳体之间延伸以在第一轴向方向上偏压活塞,并且电枢从活塞的外周径向延伸,以与设置在活塞的纵向周边周围的电磁体相互作用。 电磁体在与第一方向相反的第二轴向方向上吸引电枢并因此吸引活塞。 在螺旋弹簧的端部固定到活塞或壳体中的一个,并且弹簧的另一端通过安置在多个球形球上的弹簧保持器可旋转地支撑在活塞或壳体的另一端上 坐在活塞或套管装置上的另一个上。 球从螺旋弹簧的中心轴线径向相等的距离定位,并围绕轴线以相等的圆周间隔定位。
    • 2. 发明授权
    • Electromagnetic reciprocating pump
    • 电磁往复泵
    • US5222878A
    • 1993-06-29
    • US827712
    • 1992-01-29
    • Toshio OsadaTamotsu MoriMasaaki TanabeToshio Mikiya
    • Toshio OsadaTamotsu MoriMasaaki TanabeToshio Mikiya
    • F04B17/04F04B35/04F04B53/08
    • F04B53/08F04B17/046
    • An electromagnetic reciprocating pump comprising of a closed-type casing provided with a cylinder in front thereof, a main shaft as least the front end of which is fixed to the casing, a piston having a piston head in front thereof, which piston is slidably fitted over the outer periphery of the main shaft to reciprocate, and coaxially supporting an armature, a spring disposed between the piston and the casing for biasing the piston in one direction, an electromagnet fixed to the casing so as to attract the armature in the opposite direction against the biasing force of the spring, suction ports and suction valves for sucking a fluid into a pressure chamber defined by the cylinder and the piston head, and a discharge port and a discharge valve for discharging the pressurized fluid from the pressure chamber.
    • 一种电磁往复泵,包括在其前面设置有气缸的封闭式壳体,至少其前端固定到壳体的主轴,具有活塞头前部的活塞,该活塞可滑动地安装 在所述主轴的外周上方往复运动并且同轴地支撑电枢;弹簧,设置在所述活塞和所述壳体之间,用于沿一个方向偏压所述活塞;电磁体,固定到所述壳体,以便沿相反方向吸引所述电枢 抵抗弹簧的偏压力,用于将流体吸入由气缸和活塞头限定的压力室的吸入口和吸入阀以及用于从压力室排出加压流体的排出口和排出阀。
    • 3. 发明授权
    • Electromagnetic pump
    • 电磁泵
    • US4886429A
    • 1989-12-12
    • US218962
    • 1988-07-14
    • Toshio OsadaMasaaki Tanabe
    • Toshio OsadaMasaaki Tanabe
    • F04B43/04H02K33/06H02K33/16
    • F04B43/04H02K33/06H02K33/16
    • An electromagnetic pump comprising fluid operation chambers for discharging fluid to the outside; and electromagnet connected to an AC power source device for polarity switching for every half cycle of AC when energized; a permanent magent which moves together with the electromagnets; and a reciprocative shaft holding the permanent magnet, which reciprocates in the shaft direction when the electromagnet is energized. The width of a securement portion for the permanent magnet of the reciprocative shaft is relatively narrow compared to the other portions, and the permanent magnet consists of a pair of permanent magnet pieces bonded together by sandwiching the securement portion therebetween. The electromagnetic pump further comprises a fluid operation member for expanding or contracting the volume in the fluid operation chamber by the reciprocation movement of the reciprocative shaft so as to guide fluid out.
    • 一种电磁泵,包括用于将流体排放到外部的流体操作室; 电磁铁连接到交流电源装置,用于在通电时每半个周期进行极性切换; 与电磁铁一起移动的永久性魔法; 以及保持永磁体的往复运动轴,当电磁铁通电时,永磁体在轴向上往复运动。 往复轴的永磁体的固定部分的宽度与其它部分相比相对较窄,并且永磁体由一对通过将固定部夹在两者之间而结合在一起的永磁体组成。 电磁泵还包括流体操作构件,用于通过往复运动轴的往复运动使流体操作室中的体积膨胀或收缩,以便引导流体流出。
    • 5. 发明授权
    • Electromagnetic reciprocating compressor
    • 电磁往复式压缩机
    • US06540491B1
    • 2003-04-01
    • US09890045
    • 2001-07-25
    • Masaaki Tanabe
    • Masaaki Tanabe
    • F04B1704
    • F04B35/045
    • There is provided a compressor having two compression portions arranged in parallel. A compression chamber is formed into an air-tight chamber surrounded by a head of a piston, a cylinder, and a head cover. A discharge chamber is provided to the periphery of each cylinder, and these discharge chambers communicate with each other by a through hole. Two field cores of each electromagnet for driving each piston are formed in the integral structure, and a half wave of an alternating electric current is supplied to each coil wound around these coils in such a manner that the excitation directions of the respective field cores are opposed from each other.
    • 提供一种压缩机,其具有平行布置的两个压缩部。 压缩室形成为由活塞头,气缸盖和头罩包围的气密室。 排气室设置在每个气缸的周边,并且这些排放室通过通孔相互连通。 用于驱动每个活塞的每个电磁体的两个磁芯形成在一体结构中,并且以这样的方式将缠绕在这些线圈周围的每个线圈供给交流电的半波,使得各个磁场的激励方向相对 从彼此。
    • 6. 发明授权
    • Magnet holder for electromagnetic diaphragm pump
    • 电磁隔膜泵用磁铁座
    • US4968225A
    • 1990-11-06
    • US446428
    • 1989-12-05
    • Atsuki HashimotoMasaaki Tanabe
    • Atsuki HashimotoMasaaki Tanabe
    • F04B43/04H02K1/34H02K33/06
    • H02K1/34F04B43/04H02K33/06
    • A magnet holder for an electromagnetic diaphragm pump comprising a reinforcing member having at least in part thereof a width smaller than the distance between a pair of magnets placed in the predetermined positions in magnet insertion windows is provided integrally with the magnet holder between the pair of magnet insertion windows for juxtaposing and holding a pair of flat plate-shaped magnets in the same plane, so that the mechanical strength of the magnet holder is prevented from decreasing. And positioning members may be formed in the reinforcing member for pressing the pair of magnets inserted into the magnet insertion windows toward the diaphragms attached to opposite ends of the magnet holder, thereby positioning the magnets with enough accuracy and determining the distance between the magnets.
    • 一种用于电磁隔膜泵的磁体保持器,包括至少部分地具有小于放置在磁体插入窗口中的预定位置中的一对磁体之间的距离的宽度的加强构件,与磁体保持器一体地设置在一对磁体之间 插入窗口,用于将一对平板状磁体并置并保持在同一平面内,从而防止磁体保持器的机械强度降低。 并且定位构件可以形成在加强构件中,用于将插入到磁体插入窗口中的一对磁体朝向附接到磁体保持器的相对端的隔膜挤压,从而以足够的精度定位磁体并确定磁体之间的距离。
    • 9. 发明授权
    • Substrate coating device with control section that synchronizes substrate moving velocity and delivery pump
    • 具有控制部分的基板涂层装置,其同步基板移动速度和输送泵
    • US08770141B2
    • 2014-07-08
    • US13377606
    • 2010-04-19
    • Yoshinori IkagawaMitsunori OdaMinoru YamamotoTakashi KawaguchiHideo HirataMasaaki Tanabe
    • Yoshinori IkagawaMitsunori OdaMinoru YamamotoTakashi KawaguchiHideo HirataMasaaki Tanabe
    • B05C11/00C23C16/52B05D1/02
    • B05C5/0262B05C5/0258B05C11/1013B05C11/1015B05C11/1023
    • A substrate coating device is provided which is capable of reducing non-uniform film thickness areas that take place in a coating start portion and a coating end portion during coating using a slit nozzle coater.The substrate coating device (10) includes at least a slider driving motor (4), a pump (8), a delivery state quantity measuring section (82), and a control section (5). The slider driving motor (4) scans a slit nozzle (1) over a substrate (100) at an established velocity relative to the substrate (100). The pump (8) controls the supply of the coating liquid to the slit nozzle (1). The delivery state quantity measuring section (82) is configured to measure a state quantity indicative of a delivery state of the coating liquid from the tip of the slit nozzle (1). The control section (5) corrects control information to be fed to the slider driving motor (4) in such a manner as to cancel out a difference between control information fed to the pump (8) and measurement information fed from the delivery state quantity measuring section (82) based on difference information indicative of the difference.
    • 提供一种基板涂布装置,其能够在使用狭缝喷嘴涂布机的涂布期间减少在涂层起始部分和涂覆端部发生的不均匀的膜厚度区域。 基板涂布装置(10)至少包括滑块驱动电机(4),泵(8),输送状态量测量部(82)和控制部(5)。 滑块驱动电机(4)以相对于基板(100)的建立速度在基板(100)上扫描狭缝喷嘴(1)。 泵(8)控制向狭缝喷嘴(1)供给涂布液。 输送状态量测量部(82)被配置为从狭缝喷嘴(1)的前端测量表示涂布液的输送状态的状态量。 所述控制部(5)以与所述输送状态量计量供给的所述测量信息和从所述输送状态量计量得到的测量信息之间的差异来取消供给到所述滑块驱动电动机(4)的控制信息, (82)基于指示差异的差异信息。