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    • 1. 发明申请
    • OPERATION CONTROL DEVICE AND METHOD OF VACUUM PUMPS
    • 真空泵的操作控制装置和方法
    • US20080063534A1
    • 2008-03-13
    • US11853942
    • 2007-09-12
    • Takamitsu NakayamaKazuaki Satoh
    • Takamitsu NakayamaKazuaki Satoh
    • F04B49/06F04B41/06
    • F04C28/02F04C28/06F04C2240/403F04C2270/07F04C2270/56
    • An operation control devices and operation methods thereof so as to eliminates the difficulties in such a case of introduction of vacuum sensors and/or inverter control is disclosed. The disclosure relates to a control of plural sets of vacuum pumps. In order to comply with the subjects to overcome the difficulties, the disclosure proposes to utilize current detection approach instead of direct pressure detection approach, while showing how to estimate a vacuum degree achieved under the operation of the pumps as well as presenting a method on the control of the number of pumps. It is also described how organically a current detecting device, a vacuum degree estimating device, a working pump control device and related methods to satisfy the subjects are linked. The usefulness of the disclosure is also revealed.
    • 公开了一种操作控制装置及其操作方法,以消除在引入真空传感器和/或逆变器控制的情况下的困难。 本公开涉及多组真空泵的控制。 为了克服困难,本文提出利用电流检测方法代替直接压力检测方法,同时展示了如何估计在泵的运行下实现的真空度,并提出了一种方法 控制泵数。 还描述了如何有机地将电流检测装置,真空度估计装置,工作泵控制装置和满足受试者的相关方法联系起来。 还披露了披露的有用性。
    • 2. 发明申请
    • EVACUATION APPARATUS
    • 撤离装置
    • US20080080984A1
    • 2008-04-03
    • US11861005
    • 2007-09-25
    • Shiro TANIGAWATakamitsu NAKAYAMARyusuke MUTOMinako TODA
    • Shiro TANIGAWATakamitsu NAKAYAMARyusuke MUTOMinako TODA
    • F04B23/04F04B41/06
    • F04C18/126F04C23/005F04C25/02F04C28/02F04C28/06F04C2220/12F04C2250/102
    • The present invention discloses an evacuation apparatus for evacuating a tank, a chamber, and the like; wherein a mechanical vacuum booster pump is provided at an up-stream side of an exterior side vacuum pump; wherein the mechanical booster pump has a discharge openings for low compression and a discharge opening for discharging a high compression gas; wherein, in case when the exterior side vacuum pump starts discharging a gas, the gas is sent to the exterior side vacuum pump through all of the discharge openings for low compression and the discharge opening for discharging a high compression gas and, in case when the discharged gas pressure reaches afterward an ultimate pressure (a medium vacuum) attainable by the exterior side vacuum pump, the gas is sent to the exterior side vacuum pump only through the discharge opening for discharging a high compression gas.
    • 本发明公开了一种用于抽空罐,腔室等的排气装置; 其中在外侧真空泵的上游侧设置有机械真空增压泵; 其中所述机械增压泵具有用于低压缩的排出口和用于排出高压缩气体的排出口; 其中,在外侧真空泵开始排出气体的情况下,气体通过所有的低压排出口和用于排出高压缩气体的排出口被送到外侧真空泵,而在 排出气体压力之后达到由外侧真空泵可达到的极限压力(中等真空),仅通过用于排出高压缩气体的排出口将气体送至外侧真空泵。
    • 3. 发明申请
    • FLUID MACHINE CONNECTED TO A DRIVE SOURCE VIA A MAGNETIC COUPLING
    • 流体机械通过磁耦合连接到驱动源
    • US20080159888A1
    • 2008-07-03
    • US11961714
    • 2007-12-20
    • Takamitsu NAKAYAMATakashi SERITA
    • Takamitsu NAKAYAMATakashi SERITA
    • F04B17/03
    • F04C29/04F04C18/0215F04C18/0223F04C29/0064
    • The present invention aims to propose a fluid machine in which a magnetic coupling includes an outer rotor 32 to the cylinder-bottom part of which a drive shaft of the drive component is connected, outer rotor side magnets 33 placed on an inner periphery of the outer rotor, an inner rotor 23 fitted to a drive shaft of the fluid machine, inside the outer rotor, inner rotor side magnets 21 placed on an outer periphery of the inner rotor, whereby attraction workings and repulsion workings between the outer rotor side magnets and the inner rotor side magnets transmit torques of the drive component to the fluid machine, and a sealing assembly 20 a partition part of which is placed between the inner rotor 23 and the outer rotor 32 and surrounds a drive shaft of the fluid machine so as to secure gas-tightness, the shaft including the inner rotor 23 and the inner rotor side magnets 21; further an air ventilation device for ventilating a space inside the outer rotor by means of inducing and/or discharging ambient air is provided into the outer rotor 32 of the magnetic coupling so as to cool the sealing assembly 20 and the outer rotor side magnets 33.
    • 本发明的目的在于提出一种流体机械,其中,磁耦合包括:外转子32,其连接驱动部件的驱动轴的汽缸底部,外转子侧磁体33设置在外周 转子,安装在流体机械的驱动轴上的内转子23,位于外转子内部,内转子侧磁体21配置在内转子的外周上,由此在外转子侧磁铁与外转子侧磁铁之间的吸引作用和排斥作用 内转子侧磁体将驱动部件的扭矩传递到流体机械,以及密封组件20,其分隔部分被放置在内转子23和外转子32之间并且围绕流体机械的驱动轴,以便固定 包括内转子23和内转子侧磁体21的轴的气密性; 进一步地,通过引导和/或释放环境空气使外转子内的空间通风的通气装置设置在磁耦合器的外转子32中,以冷却密封组件20和外转子侧磁体33。
    • 4. 发明申请
    • DRIVE TRANSMISSION MECHANISM BETWEEN TWO OR MORE ROTARY SHAFTS AND OIL-FREE FLUID MACHINE EQUIPPED WITH THE MECHANISM
    • 两台或更多旋转轴与机械配套的无油流量机之间的传动机构
    • US20080181804A1
    • 2008-07-31
    • US11946218
    • 2007-11-28
    • Shiro TANIGAWATakamitsu NAKAYAMAYuki TAKADA
    • Shiro TANIGAWATakamitsu NAKAYAMAYuki TAKADA
    • F01C1/18H02K49/00
    • F04C29/005F04C25/02F04C29/0064Y10T464/30
    • A drive transmission mechanism for transmitting torque between two or more rotary shafts in synchronization with one another without need for lubrication thereby eliminating occurrence of oil contamination, and an oil-free fluid machine equipped with the mechanism, are provided. A magnetic drive disk 16 and a synchronization gear 18 are attached to a rotary shaft 14 connected to a drive motor 11, a magnetic drive disk 17 and a synchronization gear 19 is attached to a rotary shaft 15, torque transmission from the rotary shaft 14 to the rotary shaft 15 is carried out in two ways, via the magnetic drive disks 16, 17 and via the synchronization gears 18, 19, and at least one of the synchronization gears is made of plastic material. With the construction, torque transmit load between the rotary shafts via the synchronization gears is decreased, and a plastic gear or gears can be adopted for synchronization gears without reducing life of the gears without need for lubrication oil.
    • 一种用于在两个或更多个旋转轴之间彼此同步地传递扭矩的驱动传递机构,而不需要润滑,从而消除了油污染的发生,并且提供了具有该机构的无油流体机械。 磁驱动盘16和同步齿轮18连接到连接到驱动马达11的旋转轴14,磁驱动盘17和同步齿轮19附接到旋转轴15,从旋转轴14到扭矩传递 旋转轴15经由磁驱动盘16,17和经由同步齿轮18,19以两种方式执行,并且至少一个同步齿轮由塑料材料制成。 通过这种结构,通过同步齿轮的旋转轴之间的扭矩传递负载减小,并且可以采用塑料齿轮或齿轮同步齿轮,而不会减少齿轮的寿命而不需要润滑油。
    • 5. 发明授权
    • Scroll fluid machine having an adiabatic expansion chamber
    • 具有绝热膨胀室的涡旋流体机械
    • US07341439B2
    • 2008-03-11
    • US11708655
    • 2007-02-20
    • Takamitsu NakayamaTakashi Serita
    • Takamitsu NakayamaTakashi Serita
    • F03C2/00F04C18/00
    • F04C29/04F04C18/0223
    • A scroll fluid machine comprises a driving shaft having an eccentric axial portion at one end; a fixed scroll having a fixed wrap; and an orbiting scroll having an orbiting wrap and rotatably mounted to the eccentric axial portion of the driving shaft. A gas introduced through an inlet on the outer circumference of the fixed scroll is compressed by a compression chamber between the fixed and orbiting wraps towards the center and discharged through an outlet close to the center. Between the eccentric axial portion and the innermost winding portion of the fixed wrap, an adiabatic expansion chamber is formed thereby cooling the compressed gas right before discharging.
    • 涡旋流体机械包括:驱动轴,其一端具有偏心轴向部分; 固定涡卷,具有固定的包裹; 以及具有绕动涡卷并且可旋转地安装在驱动轴的偏心轴向部分上的绕动涡盘。 通过固定涡旋件的外周上的入口引入的气体被压缩室压缩在固定涡卷与绕动涡卷之间的中心,并通过靠近中心的出口排出。 在固定包装的偏心轴向部分和最内卷绕部分之间形成绝热膨胀室,从而在排放之前冷却压缩气体。
    • 6. 发明申请
    • Scroll fluid machine
    • 滚动流体机
    • US20070196226A1
    • 2007-08-23
    • US11708655
    • 2007-02-20
    • Takamitsu NakayamaTakashi Serita
    • Takamitsu NakayamaTakashi Serita
    • F01C1/02F01C1/063F03C2/00F03C4/00
    • F04C29/04F04C18/0223
    • A scroll fluid machine comprises a driving shaft having an eccentric axial portion at one end; a fixed scroll having a fixed wrap; and an orbiting scroll having an orbiting wrap and rotatably mounted to the eccentric axial portion of the driving shaft. A gas introduced through an inlet on the outer circumference of the fixed scroll is compressed by a compression chamber between the fixed and orbiting wraps towards the center and discharged through an outlet close to the center. Between the eccentric axial portion and the innermost winding portion of the fixed wrap, an adiabatic expansion chamber is formed thereby cooling the compressed gas right before discharging.
    • 涡旋流体机械包括:驱动轴,其一端具有偏心轴向部分; 固定涡卷,具有固定的包裹; 以及具有绕动涡卷并且可旋转地安装在驱动轴的偏心轴向部分上的绕动涡盘。 通过固定涡旋件的外周上的入口引入的气体被压缩室压缩在固定涡卷与绕动涡卷之间的中心,并通过靠近中心的出口排出。 在固定包装的偏心轴向部分和最内卷绕部分之间形成绝热膨胀室,从而在排放之前冷却压缩气体。
    • 7. 发明授权
    • Drive transmission mechanism between two or more rotary shafts and oil-free fluid machine equipped with the mechanism
    • 驱动两个或多个旋转轴之间的传动机构和装有该机构的无油流体机械
    • US07578665B2
    • 2009-08-25
    • US11946218
    • 2007-11-28
    • Shiro TanigawaTakamitsu NakayamaYuki Takada
    • Shiro TanigawaTakamitsu NakayamaYuki Takada
    • F01C1/18F03C2/00
    • F04C29/005F04C25/02F04C29/0064Y10T464/30
    • A drive transmission mechanism for transmitting torque between two or more rotary shafts in synchronization with one another without need for lubrication thereby eliminating occurrence of oil contamination, and an oil-free fluid machine equipped with the mechanism, are provided. A magnetic drive disk and a synchronization gear are attached to a rotary shaft connected to a drive motor, a magnetic drive disk and a synchronization gear is attached to a rotary shaft, torque transmission from the rotary shaft to the rotary shaft is carried out in two ways, via the magnetic drive disks and via the synchronization gears and at least one of the synchronization gears is made of plastic material. With the construction, torque transmit load between the rotary shafts via the synchronization gears is decreased, and a plastic gear or gears can be adopted for synchronization gears without reducing life of the gears without need for lubrication oil.
    • 一种用于在两个或更多个旋转轴之间彼此同步地传递扭矩的驱动传递机构,而不需要润滑,从而消除了油污染的发生,并且提供了具有该机构的无油流体机械。 磁驱动盘和同步齿轮安装在与驱动马达连接的旋转轴上,磁盘驱动盘和同步齿轮安装在旋转轴上,从旋转轴到旋转轴的转矩传递由两个 通过磁驱动盘和经由同步齿轮的方式,并且至少一个同步齿轮由塑料材料制成。 通过这种结构,通过同步齿轮的旋转轴之间的扭矩传递负载减小,并且可以采用塑料齿轮或齿轮同步齿轮,而不会减少齿轮的寿命而不需要润滑油。