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    • 2. 发明申请
    • Electromagnetic reciprocating fluid device
    • 电磁往复流体装置
    • US20070228312A1
    • 2007-10-04
    • US11805663
    • 2007-05-24
    • Haruki NakaoKunihiro YamamotoFuminori Hirose
    • Haruki NakaoKunihiro YamamotoFuminori Hirose
    • F16K31/02
    • F04B35/045F04B17/042
    • A magnetic armature is attracted and driven by a magnetic force which is intermittently generated between magnetic poles, and a piston reciprocated by being pushed back by a coil spring is not rotated by the coil spring. When the magnetic armature (28) as attracted between the magnetic pole members (10,12) by the magnetic force comes to a predetermined rotational angle position about the axis, the armature receives a rotational torque that is derived from the magnetic force and acts in a direction opposite to that of the rotational torque applied by a coil spring (30), thereby preventing the armature from being rotated in the predetermined direction. More specifically, the armature (28) has a circular cross-section as a whole and has a chamfered part (28′) parallel to the axis. When the chamfered part enters between the magnetic pole members, the armature receives a rotational torque that is derived from the magnetic force.
    • 磁性衔铁由在磁极间歇地产生的磁力吸引并驱动,并且通过被螺旋弹簧推回而往复运动的活塞不被螺旋弹簧旋转。 当通过磁力吸引在磁极部件(10,12)之间的磁性衔铁(28)绕轴线到达规定的旋转角度位置时,电枢接收从磁力导出的旋转转矩, 与由螺旋弹簧(30)施加的旋转扭矩的方向相反的方向,从而防止电枢沿预定方向旋转。 更具体地,电枢(28)整体上具有圆形横截面并且具有平行于该轴线的倒角部分(28')。 当倒角部分进入磁极部件之间时,电枢接收从磁力导出的旋转转矩。
    • 3. 发明授权
    • Electromagnetic reciprocating fluid device
    • 电磁往复流体装置
    • US07963751B2
    • 2011-06-21
    • US11805663
    • 2007-05-24
    • Haruki NakaoKunihiro YamamotoFuminori Hirose
    • Haruki NakaoKunihiro YamamotoFuminori Hirose
    • F04B17/00
    • F04B35/045F04B17/042
    • A magnetic armature is attracted and driven by a magnetic force which is intermittently generated between magnetic poles, and a piston reciprocated by being pushed back by a coil spring is not rotated by the coil spring. When the magnetic armature (28) as attracted between the magnetic pole members (10,12) by the magnetic force comes to a predetermined rotational angle position about the axis, the armature receives a rotational torque that is derived from the magnetic force and acts in a direction opposite to that of the rotational torque applied by a coil spring (30), thereby preventing the armature from being rotated in the predetermined direction. More specifically, the armature (28) has a circular cross-section as a whole and has a chamfered part (28′) parallel to the axis. When the chamfered part enters between the magnetic pole members, the armature receives a rotational torque that is derived from the magnetic force.
    • 磁性衔铁由在磁极间歇地产生的磁力吸引并驱动,并且通过被螺旋弹簧推回而往复运动的活塞不被螺旋弹簧旋转。 当通过磁力吸引在磁极部件(10,12)之间的磁性衔铁(28)绕轴线到达规定的旋转角度位置时,电枢接收从磁力导出的旋转转矩, 与由螺旋弹簧(30)施加的旋转扭矩的方向相反的方向,从而防止电枢沿预定方向旋转。 更具体地,电枢(28)整体上具有圆形横截面并且具有平行于该轴线的倒角部分(28')。 当倒角部分进入磁极部件之间时,电枢接收从磁力导出的旋转转矩。
    • 5. 发明申请
    • Pneumatic Body Treating Apparatus
    • 气动身体治疗仪
    • US20090018474A1
    • 2009-01-15
    • US11887442
    • 2006-03-29
    • Haruki Nakao
    • Haruki Nakao
    • A61H9/00
    • F16K31/0627A61H9/0078F16K11/044
    • A pneumatic body treating device 12 of a pneumatic body treating apparatus includes a plurality of airtight chambers 16, 18, 20, and 22 to and from which pressurized air is supplied and discharged, a hose 21 having a connecting end connectable to a pressurized air source 148 of a pneumatic body treating apparatus body 14, and a plurality of electromagnetic valves 24, 26, 28, and 30 which are connected between the hose and the airtight chambers 16, 18, 20, and 22, respectively, and which supply pressurized air from the hose 21 to the corresponding airtight chambers and discharge the pressurized air from the corresponding airtight chambers. With this arrangement, it is possible to reduce the number of connecting hoses for supplying pressurized air to the pneumatic body treating device which, when used, is worn around the upper limbs and the lower limbs.
    • 气动体处理装置的气动体处理装置12包括供给并排出加压空气的多个气密室16,18,20和22,具有可连接到加压空气源的连接端的软管21 气动体处理装置主体14,14和多个电磁阀24,26,28,30分别连接在软管和气密室16,18,20和22之间,并且供给加压空气 从软管21到相应的气密室,并从相应的气密室排出加压空气。 通过这种布置,可以减少向气动体处理装置供给加压空气的连接软管的数量,该气动体处理装置在使用时被佩戴在上肢和下肢周围。
    • 6. 发明授权
    • Gas separation/extraction apparatus for separating and extracting a
desired gas from a gas mixture and a balance valve therefor
    • 用于从气体混合物中分离和提取所需气体的气体分离/提取装置及其平衡阀
    • US4900338A
    • 1990-02-13
    • US340691
    • 1989-04-20
    • Iwaji ShiomiHaruki Nakao
    • Iwaji ShiomiHaruki Nakao
    • B01D53/04B01D53/047
    • B01D53/0454B01D53/0446B01D2256/12B01D2257/102B01D2259/40003B01D53/047
    • A gas separation/extraction apparatus comprises a tank for separating and extracting a specific gas element from a gas mixture, the tank containing an adsorbent for adsorbing the gas element from the gas mixture, a pump having a cylinder and a piston housed therein, the pump being adapted to alternately pressurize and decompress the inside of the tank as the piston reciprocates, a first three-way solenoid valve connected between an exhaust port of the tank and a suction port of the pump, a second three-way solenoid valve connected between a discharge port of the pump and the suction port of the tank, and a pressure balance unit connected between the second three-way solenoid valve and a suction port of the tank, and adapted gradually to eliminate a difference in pressure between the tank and the pump as the tank is switched from a decompressed state to a pressurized state.
    • 气体分离/提取装置包括用于从气体混合物中分离和提取特定气体元素的罐,所述罐包含用于从气体混合物吸附气体元素的吸附剂,具有容纳在其中的气缸和活塞的泵,所述泵 适于在所述活塞往复运动时交替地对所述罐的内部进行加压和减压;连接在所述罐的排气口和所述泵的吸入口之间的第一三通电磁阀,连接在所述泵的吸入口之间的第二三通电磁阀 泵的排出口和容器的吸入口以及连接在第二三通电磁阀和容器的吸入口之间的压力平衡单元,并且逐渐地适应以消除罐和泵之间的压力差 因为罐从减压状态切换到加压状态。
    • 7. 发明授权
    • Electromagnetic reciprocating fluid device
    • 电磁往复流体装置
    • US08529225B2
    • 2013-09-10
    • US13183766
    • 2011-07-15
    • Shigemitsu IshibashiHaruki NakaoFuminori Hirose
    • Shigemitsu IshibashiHaruki NakaoFuminori Hirose
    • F04B17/04F04B35/04
    • F04B35/045H01F7/1646H02K33/16
    • An electromagnetic reciprocating fluid device in which a movable member is equipped with permanent magnets, resists a torque rotating the movable member about an axis thereof in the reciprocating direction. The electromagnetic reciprocating fluid device has a pair of electromagnets facing each other, and permanent magnets disposed in a space between the opposed electromagnets and held by a movable member. When an alternating current is applied to coils formed in the electromagnets, a magnetic force is generated between the electromagnets and the permanent magnets, whereby a driving force for reciprocation is applied to the movable member. One end of the movable member is connected to a piston of a first piston-cylinder assembly, while the other end is connected to a piston of a second piston-cylinder assembly. The first and second piston-cylinder assemblies are arranged such that an axis line of the first piston-cylinder assembly and an axis line of the second piston-cylinder assembly are non-coaxial and vertically offset from an axis of the movable member.
    • 一种电磁往复流体装置,其中可移动部件配备有永磁体,抵抗使可移动部件绕往其方向的轴线旋转的转矩。 电磁往复流体装置具有彼此面对的一对电磁体,永久磁铁设置在相对的电磁体之间的空间中并由可动构件保持。 当将交流电施加到形成在电磁体中的线圈时,在电磁体和永磁体之间产生磁力,由此向可动件施加往复运动的驱动力。 可动构件的一端连接到第一活塞 - 气缸组件的活塞,而另一端连接到第二活塞 - 气缸组件的活塞。 第一和第二活塞 - 气缸组件被布置成使得第一活塞 - 气缸组件的轴线和第二活塞 - 气缸组件的轴线线与可动构件的轴线不同轴并垂直偏移。
    • 8. 发明申请
    • ELECTROMAGNETIC RECIPROCATING FLUID DEVICE
    • 电磁循环流体装置
    • US20110274571A1
    • 2011-11-10
    • US13183766
    • 2011-07-15
    • Shigemitsu IshibashiHaruki NakaoFuminori Hirose
    • Shigemitsu IshibashiHaruki NakaoFuminori Hirose
    • F04B17/00
    • F04B35/045H01F7/1646H02K33/16
    • An electromagnetic reciprocating fluid device in which a movable member is equipped with permanent magnets, resists a torque rotating the movable member about an axis thereof in the reciprocating direction. The electromagnetic reciprocating fluid device has a pair of electromagnets facing each other, and permanent magnets disposed in a space between the opposed electromagnets and held by a movable member. When an alternating current is applied to coils formed in the electromagnets, a magnetic force is generated between the electromagnets and the permanent magnets, whereby a driving force for reciprocation is applied to the movable member. One end of the movable member is connected to a piston of a first piston-cylinder assembly, while the other end is connected to a piston of a second piston-cylinder assembly. The first and second piston-cylinder assemblies are arranged such that an axis line of the first piston-cylinder assembly and an axis line of the second piston-cylinder assembly are non-coaxial and vertically offset from an axis of the movable member.
    • 一种电磁往复流体装置,其中可移动部件配备有永磁体,抵抗使可移动部件绕往其方向的轴线旋转的转矩。 电磁往复流体装置具有彼此面对的一对电磁体,永久磁铁设置在相对的电磁体之间的空间中并由可动构件保持。 当将交流电施加到形成在电磁体中的线圈时,在电磁体和永磁体之间产生磁力,由此向可动件施加往复运动的驱动力。 可动构件的一端连接到第一活塞 - 气缸组件的活塞,而另一端连接到第二活塞 - 气缸组件的活塞。 第一和第二活塞 - 气缸组件被布置成使得第一活塞 - 气缸组件的轴线和第二活塞 - 气缸组件的轴线线与可动构件的轴线不同轴并垂直偏移。
    • 10. 发明申请
    • ELECTROMAGNETIC VALVE AND PNEUMATIC MASSAGE APPARATUS
    • 电磁阀和气动按摩器
    • US20090312674A1
    • 2009-12-17
    • US12308698
    • 2007-06-28
    • Haruki NakaoHiroki Kawashima
    • Haruki NakaoHiroki Kawashima
    • F16K31/06F16K15/18A61H7/00
    • F16K15/185A61H9/0078A61H2201/5002F16K11/044F16K31/0627Y10T137/87394
    • A compact and lightweight electromagnetic valve with a check valve is provided. In the electromagnetic valve, a plunger 16 is moved toward an end wall 22 of a housing of the electromagnetic valve by applying a voltage to a solenoid 14. Then, an annular valve seat engaging portion 64 of a valve member 48 attached to the plunger is urged against a valve seat around a fluid outlet 26 formed in the end wall 22 while being elastically deformed, thereby closing the fluid outlet 26. At the same time, a valve pressing member 46 attached to the plunger is separated from a valve member 52 disposed at a fluid opening 24 of an end wall 20 of the housing. Thus, the valve member 52 disposed at the fluid inlet 24 of the housing functions as a check valve to allow pressurized air to flow in from a pump. In a case where a voltage is not applied to the solenoid 14, the plunger 16 is biased toward the fluid inlet by means of a compression spring 60. Therefore, the valve pressing member 46 urges the first valve member 52 against a valve seat around the fluid inlet 24 to close the fluid inlet 24. The second valve member 48 is separated from the fluid outlet 26, whereby the fluid outlet 26 is opened and pressurized air is discharged to the atmosphere.
    • 提供一种紧凑轻便的带止回阀的电磁阀。 在电磁阀中,通过向螺线管14施加电压,柱塞16向电磁阀壳体的端壁22移动。然后,安装在柱塞上的阀构件48的环形阀座接合部64是 在形成在端壁22中的流体出口26周围的阀座周围被推压,同时弹性变形,从而关闭流体出口26.同时,附接到柱塞的阀推动构件46与设置的阀构件52分离 在壳体的端壁20的流体开口24处。 因此,设置在壳体的流体入口24处的阀构件52用作止回阀,以允许加压空气从泵流入。 在不向螺线管14施加电压的情况下,柱塞16通过压缩弹簧60朝向流体入口偏压。因此,阀按压部件46将第一阀部件52推压在围绕 流体入口24以关闭流体入口24.第二阀构件48与流体出口26分离,由此流体出口26打开,并且加压空气排放到大气中。