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    • 2. 发明申请
    • Valve device
    • 阀门装置
    • US20050150558A1
    • 2005-07-14
    • US11013986
    • 2004-12-16
    • Shigeru OzawaTetsuhiko Hara
    • Shigeru OzawaTetsuhiko Hara
    • F16K31/06F16K11/072F16K31/02F16K31/04F16K31/08
    • F16K31/042F16K31/045Y10T137/86863
    • A valve device includes a main body case to which an inflow pipe and an outflow pipe are connected, a valve element which is disposed inside of the main body case to open or close an outflow aperture part of the main body case, a motor for moving the valve element in an open direction and a closed direction, a valve element drive means which is driven by the motor and includes a rotary member rotated by the motor and a rotation side permanent magnet mounted in the rotary member, a valve element side permanent magnet mounted in the valve element, and a holding member which movably holds the valve element. The valve element is urged in the open direction or the closed direction by a magnetic attractive force or a magnetic repulsive force generated between the rotation side permanent magnet and the valve element side permanent magnet.
    • 阀装置包括连接有流入管和流出管的主体壳体,设置在主体壳体内部以打开或关闭主体壳体的流出孔部的阀元件,用于移动的电动机 阀元件沿打开方向和关闭方向;阀元件驱动装置,其由电动机驱动并且包括由电动机旋转的旋转构件和安装在旋转构件中的旋转侧永磁体;阀元件侧永磁体 安装在阀元件中,以及保持构件,其可移动地保持阀元件。 阀元件通过在旋转侧永磁体和阀元件侧永久磁铁之间产生的磁力吸引力或磁力排斥力在打开方向或闭合方向上被推压。
    • 4. 发明授权
    • Valve drive device
    • 阀门驱动装置
    • US07475704B2
    • 2009-01-13
    • US11234426
    • 2005-09-22
    • Tetsuhiko HaraShigeru Ozawa
    • Tetsuhiko HaraShigeru Ozawa
    • F16K11/074F16K3/30F16K31/53
    • F16K11/0743F16K31/041F25B41/04F25B2600/2511Y10T137/86501
    • A valve drive device includes a valve seat plate in which an inflow port and an outflow port for fluid are formed, a sealing case covering the front face side of the valve seat plate, an inflow pipe and an outflow pipe which are fixed in the rear face side of the valve seat plate so as to be in communication with the inflow port and the outflow port, and a valve element which slides on an area where the outflow port is formed on the front face side of the valve seat plate to open or close the outflow port. The valve seat plate includes a first plate member which constructs an area where the outflow port is formed, a second plate member which is thinner than the first plate member and is jointed with the first plate member, and a deformation preventing member which is attached on the rear face of the second plate member and prevents the second plate member from being deformed due to an internal-pressure in a sealed space constructed by the sealing case and the valve seat plate.
    • 阀驱动装置包括阀座板,其中形成有用于流体的流入口和流出口,覆盖阀座板前表面的密封壳,固定在后侧的流入管和流出管 阀座板的正面与流入口和流出口连通;阀元件,其在形成有流出口​​的区域上在阀座板的正面侧滑动以打开, 关闭流出口。 阀座板包括构成出口端口的区域的第一板构件,比第一板构件更薄并与第一板构件连接的第二板构件,以及安装在第一板构件上的变形防止构件 第二板构件的后表面,并且防止第二板构件由于由密封壳体和阀座板构成的密封空间中的内压而变形。
    • 6. 发明授权
    • Temperature control method for refrigerator
    • 冰箱温度控制方法
    • US06865900B2
    • 2005-03-15
    • US10606281
    • 2003-06-24
    • Shigeru OzawaTetsuhiko Hara
    • Shigeru OzawaTetsuhiko Hara
    • F25D13/02F16K31/04F16K31/53F25B5/02F25B41/00F25B41/04
    • F25B41/04F16K31/043F16K31/535F25B5/02F25B2500/01F25B2600/2511
    • A temperature control method for a refrigerator includes providing a valve device, in which an inflow port where a refrigerant flows into, at least two outflow ports having a first outflow port and a second outflow port where the refrigerant flows out, and a valve element for performing opening/closing of the outflow ports are positioned in a sealed space. The method also includes providing a valve element drive device for driving the valve element. The method further includes controlling the valve element drive device, at the time a power source of the refrigerator is turned on, to reciprocate between a first mode as an OPEN-CLOSE mode and a second mode on a CLOSE-OPEN mode until a temperature in a first chamber where the refrigerant is supplied through the first outflow port, and a temperature in a second chamber where the refrigerant is supplied through the second outflow port, are lowered to reach to a prescribed temperature.
    • 一种冰箱的温度控制方法,其特征在于,具备:制冷剂流入的流入口的阀装置,具有第一流出口和制冷剂流出的第二流出口的至少两个流出口;以及阀元件, 执行打开/关闭流出口位于密封空间中。 该方法还包括提供用于驱动阀元件的阀元件驱动装置。 该方法还包括在冰箱的电源打开的时候控制阀元件驱动装置,以在第一模式作为OPEN-CLOSE模式和CLOSE-OPEN模式之间的第二模式之间往复运动,直到温度 通过第一流出口供给制冷剂的第一室和通过第二流出口供给制冷剂的第二室中的温度降低到规定温度。
    • 7. 发明授权
    • Valve device
    • 阀门装置
    • US07284571B2
    • 2007-10-23
    • US11013986
    • 2004-12-16
    • Shigeru OzawaTetsuhiko Hara
    • Shigeru OzawaTetsuhiko Hara
    • F16K11/072
    • F16K31/042F16K31/045Y10T137/86863
    • A valve device includes a main body case to which an inflow pipe and an outflow pipe are connected, a valve element which is disposed inside of the main body case to open or close an outflow aperture part of the main body case, a motor for moving the valve element in an open direction and a closed direction, a valve element drive means which is driven by the motor and includes a rotary member rotated by the motor and a rotation side permanent magnet mounted in the rotary member, a valve element side permanent magnet mounted in the valve element, and a holding member which movably holds the valve element. The valve element is urged in the open direction or the closed direction by a magnetic attractive force or a magnetic repulsive force generated between the rotation side permanent magnet and the valve element side permanent magnet.
    • 阀装置包括连接有流入管和流出管的主体壳体,设置在主体壳体内部以打开或关闭主体壳体的流出孔部的阀元件,用于移动的电动机 阀元件沿打开方向和关闭方向;阀元件驱动装置,其由电动机驱动并且包括由电动机旋转的旋转构件和安装在旋转构件中的旋转侧永磁体;阀元件侧永磁体 安装在阀元件中,以及保持构件,其可移动地保持阀元件。 阀元件通过在旋转侧永磁体和阀元件侧永久磁铁之间产生的磁力吸引力或磁力排斥力在打开方向或闭合方向上被推压。