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    • 4. 发明申请
    • DISPLACEMENT CONTROL SYSTEM FOR A VARIABLE DISPLACEMENT COMPRESSOR
    • 可变位移压缩机的位移控制系统
    • US20100175401A1
    • 2010-07-15
    • US12666593
    • 2008-06-25
    • Yukihiko TaguchiYoshihiro Ochiai
    • Yukihiko TaguchiYoshihiro Ochiai
    • B60H1/32F04B49/06F04B27/14F25B1/02
    • F04B27/1804F04B2027/1827F04B2027/1854F04B2027/1859F04B2205/05
    • A discharge displacement control system for a variable displacement compressor includes controlled object setting means. The controlled object setting means selects a control mode out of two or more control modes in accordance with external information detected by external information detection means, and sets a controlled object matching the selected control mode. In accordance with the external information detected by the external information detection means, the controlled object setting means sets, as the controlled object, a target pressure for one of a pressure in a suction pressure region and a pressure in a crank chamber in a first control mode, which is one of the control modes, and a target working pressure difference between a pressure in a discharge pressure region and one of the pressure in the suction pressure region and the pressure in the crank chamber in a second control mode, which is another of the control modes.
    • 用于可变排量压缩机的排放位移控制系统包括受控物体设定装置。 受控对象设定装置根据由外部信息检测装置检测的外部信息,从两个以上的控制模式中选择控制模式,并且设定与所选择的控制模式相匹配的受控对象。 根据外部信息检测单元检测出的外部信息,受控物体设定单元将第一控制中的吸入压力区域的压力和曲柄室内的压力中的一个的目标压力设定为受控对象 模式,其为控制模式之一,并且在第二控制模式中,排出压力区域中的压力与吸入压力区域中的压力和曲柄室中的压力之间的目标工作压力差是另一种 的控制模式。
    • 5. 发明授权
    • Solenoid connector
    • 电磁连接器
    • US07559794B2
    • 2009-07-14
    • US11573315
    • 2005-08-03
    • Yukihiko TaguchiYoshihiro Ochiai
    • Yukihiko TaguchiYoshihiro Ochiai
    • H01R13/60
    • H01R24/66F04B27/1804F04C2240/803H01R13/5219H01R13/6271H01R13/639H01R24/20H01R2101/00
    • A connector is provided to be connected to a solenoid embedded in a hole formed on a housing of a device to be attached. The connector is provided with connector electric terminal members which can be engaged with electric terminal members of the solenoid, and a case which stores the connector electric terminal members, is removably attached to the solenoid and covers an opening edge part of the hole. The structure of the connector requires lower process cost for ensuring waterproof and corrosion resistance of the solenoid, compared with a conventional structure. Optionally, a seal between the case and opening edge part of the hole and a diode between the connector electric terminal members and electric terminal members of the solenoid is provided.
    • 连接器被设置成连接到嵌入在要附接的装置的外壳上的孔中的螺线管。 连接器设置有可与螺线管的电气端子构件接合的连接器电气端子构件,并且存储连接器电气端子构件的壳体可移除地附接到螺线管并且覆盖孔的开口边缘部分。 与常规结构相比,连接器的结构需要较低的工艺成本来确保螺线管的防水和耐腐蚀性。 可选地,提供了壳体与孔的开口边缘部分之间的密封以及连接器电气端子构件和螺线管的电气端子构件之间的二极管。
    • 6. 发明申请
    • Scroll-Type Fluid Machiner
    • 滚动式流体机械
    • US20120237374A1
    • 2012-09-20
    • US13497959
    • 2010-10-21
    • Yoshihiro Ochiai
    • Yoshihiro Ochiai
    • F04C18/00F04C23/02
    • F04C18/0215F04C23/008F04C2240/52
    • A scroll-type fluid machine is configured so that the scroll-type fluid machine has compact, lightweight, and long life characteristics obtained by mounting, without increasing the diameter of the barrel, a bearing having a higher load capacity and so that a degradation in the performance due to a pressure loss during a high flow-rate operation is minimized by providing the gas flow path in the center plate with a sufficient cross-sectional area. A scroll-type fluid machine is provided with: a first housing which contains a scroll mechanism; a second housing which contains an electric motor; and a center plate which is disposed between both the housings, which contains a motion conversion mechanism for converting rotational motion to orbiting motion, which has mounted thereto a rotation prevention mechanism for preventing the rotation of a movable scroll, and which holds the bearing for supporting the main shaft. At least a part of the fluid path, which connects the insides of the first and second housings through the portion at which the center plate is disposed, is configured to connect an axial recess and a radial recess which are formed in the center plate, the axial recess facing the inside of the second housing and extending in the axial direction, the radial recess being located closer to the first housing than the bearing and extending in the radial direction.
    • 涡旋式流体机构被构造为使得涡旋式流体机械具有紧凑,重量轻且寿命长的特性,其通过在不增加筒的直径的情况下安装具有较高负载能力的轴承,并且使得 通过在中心板中提供足够的横截面积的气体流动路径,在高流量操作期间由于压力损失引起的性能被最小化。 一种涡旋式流体机器具有:第一壳体,其包含涡旋机构; 包含电动机的第二壳体; 以及设置在两个壳体之间的中心板,其包含用于将旋转运动转换为轨道运动的运动转换机构,该运动转换机构安装有用于防止可动涡旋件旋转的防旋转机构,并且保持用于支撑的轴承 主轴。 连接第一和第二壳体的内部通过中心板设置的部分的流体路径的至少一部分构造成连接形成在中心板中的轴向凹部和径向凹部, 轴向凹槽面向第二壳体的内部并在轴向方向上延伸,径向凹槽比轴承更靠近第一壳体并沿径向方向延伸。
    • 8. 发明申请
    • Power transmission device of compressor
    • 压缩机动力传动装置
    • US20050261092A1
    • 2005-11-24
    • US11130189
    • 2005-05-17
    • Yoshihiro OchiaiAtsushi Ozawa
    • Yoshihiro OchiaiAtsushi Ozawa
    • F04B35/00B62M9/00F16D41/06F16D41/066F16F15/12F16H35/10F16H55/36F16H61/00F16H63/00
    • F16D41/066F16D41/067F16H55/36
    • The present invention provides a power transmission device of a compressor that can always transmit power satisfactorily without transmitting a rotation number fluctuation applied from a power source to a pulley to a transmission member. Specifically, a one-way clutch is provided between the pulley and a torque plate, thereby allowing torque in one direction only of the pulley to be transmitted to the torque plate. Therefore, even if power from a power source such as an internal combustion engine in which the rotation number fluctuates in a short cycle is transmitted to the pulley, torque at the time of reduction in the rotation number is not transmitted to the torque plate, and inertial torque of a rotation component of the compressor produced by the reduction in the rotation number is reduced to reduce vibration or noise of the compressor. The one-way clutch is placed between a pulley body and a support portion, thereby reducing an axial size of the entire power transmission device to save space.
    • 本发明提供一种压缩机的动力传递装置,其能够始终发送功率,而不会将从动力源施加到滑轮的旋转数量波动传递到传动构件。 具体而言,在滑轮与扭矩板之间设置有单向离合器,从而仅使滑轮的一个方向的扭矩传递到扭矩板。 因此,即使来自旋转数量在短周期内变动的内燃机等动力源的动力传递给滑轮,转速减小时的转矩也不会传递给扭矩板, 通过减少转数而产生的压缩机的旋转分量的惯性力矩减小,以减少压缩机的振动或噪音。 单向离合器被放置在滑轮主体和支撑部之间,从而减小整个动力传递装置的轴向尺寸以节省空间。
    • 9. 发明授权
    • Compressor
    • 压缩机
    • US08079837B2
    • 2011-12-20
    • US12517532
    • 2007-12-05
    • Yoshihiro Ochiai
    • Yoshihiro Ochiai
    • H01J17/22
    • F04B27/109
    • Compressor (1) having a region of pressure intermediate between discharge pressure and suction pressure (especially, crank chamber (10)), characterized in that a valve mechanism (21) is provided for introducing discharge gas into the region of intermediate pressure so as to render constant the difference between intermediate pressure and suction pressure. A compressor structure is provided which can stably introduce a mixture of discharge gas and refrigerating machine oil into the crank chamber without using pressure reducing means such as an aperture and in a manner easy to form a passageway, thereby improving the lubricity of rolling part and slide part in the crank chamber.
    • 具有在排出压力和吸入压力之间的压力区域(特别是曲柄室(10))的压缩机(1),其特征在于,设置有用于将排出气体引入中压区域的阀机构(21),以便 使中间压力和吸入压力之间的差值保持恒定。 提供一种压缩机结构,其可以将排气和冷冻机油的混合物稳定地引入曲柄室,而不使用诸如孔的减压装置并且以易于形成通道的方式,从而提高滚动部分和滑动件的润滑性 部分在曲柄室。
    • 10. 发明申请
    • VEHICULAR REFRIGERATING CYCLE
    • 车辆制冷循环
    • US20100037643A1
    • 2010-02-18
    • US12514581
    • 2007-11-12
    • Kiyokazu YamamotoYoshihiro Ochiai
    • Kiyokazu YamamotoYoshihiro Ochiai
    • B60H1/32
    • F04B27/1081B60H1/3217B60H2001/327F04B27/1804F04B39/125
    • Provided is a vehicular refrigerating cycle comprising a compressor, which uses carbon dioxide refrigerant and which has a displacement control valve capable of controlling a displacement in response to an external signal. The vehicular refrigerating cycle comprises a falling-off preventing means for stopping a movement of the displacement control valve in a direction in which the displacement control valve comes out of its mounting position on the compressor, disposed at a portion which is positioned in the direction for the displacement control valve to come out of its mounting position on the compressor and positioned on this side of a position for the displacement control valve to completely fall off from the compressor. The displacement control valve can be prevented from exerting unpreferred influences upon the environment, even if the displacement control valve being mounted on the compressor should become so unfixed for some reason as could pop out of the compressor.
    • 提供一种车辆制冷循环,其包括使用二氧化碳制冷剂并具有能够响应于外部信号控制位移的排量控制阀的压缩机。 车辆制冷循环包括防脱装置,用于使位移控制阀沿着位于压缩机上的安装位置的方向停止位移控制阀的移动,该位置设置在位于 位移控制阀从其位于压缩机上的安装位置排出并位于用于排量控制阀的位置的这一侧,从压缩机完全脱落。 即使安装在压缩机上的排量控制阀由于某种原因也可能因压缩机而流出,因此能够防止排量控制阀对环境施加不利影响。