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    • 2. 发明授权
    • Control valve unit with independently operable valve mechanisms for
variable displacement compressor
    • 控制阀单元,具有可变排量压缩机的可独立操作的阀机构
    • US6010312A
    • 2000-01-04
    • US903293
    • 1997-07-30
    • Ken SuitouMasahiro KawaguchiHiroyuki NagaiTetsuhiko Fukanuma
    • Ken SuitouMasahiro KawaguchiHiroyuki NagaiTetsuhiko Fukanuma
    • F04B27/18F04B1/26
    • F04B27/1804F04B2027/1813F04B2027/1827F04B2027/1831F04B2027/1854F04B2027/1859
    • A control valve in a variable displacement compressor is disclosed. The compressor adjusts the discharge displacement based on control of the inclination of a swash plate located in a crank chamber. The compressor includes a supply passage for connecting a discharge chamber with the crank chamber to supply the gas from the discharge chamber to the crank chamber and a bleeding passage for connecting the crank chamber with a suction chamber to release the gas from the crank chamber to the suction chamber. The control valve includes a first valve mechanism for selectively opening and closing the supply passage, a second valve mechanism for adjusting the flow rate of the gas released from the crank chamber to the suction chamber through the bleeding passage, and a solenoid mechanism for actuating the first valve mechanism and the second valve mechanism. The first valve mechanism and the second valve mechanism operate independently. The first valve mechanism, the second valve mechanism and the solenoid mechanism are retained in a single housing.
    • 公开了一种可变排量压缩机中​​的控制阀。 压缩机基于对位于曲柄室中的斜盘的倾斜度的控制来调节排出位移。 压缩机包括用于将排出室与曲柄室连接以将气体从排出室供给到曲柄室的供给通道和用于将曲柄室与吸入室连接以将气体从曲柄室释放到排气口的排出通道, 吸气室。 控制阀包括用于选择性地打开和关闭供给通道的第一阀机构,用于调节通过排出通道从曲柄室释放到吸入室的气体的流量的第二阀机构,以及用于致动 第一阀机构和第二阀机构。 第一阀机构和第二阀机构独立地操作。 第一阀机构,第二阀机构和螺线管机构保持在单个壳体中。
    • 3. 发明授权
    • Variable displacement compressor
    • 可变排量压缩机
    • US6146107A
    • 2000-11-14
    • US148528
    • 1998-09-04
    • Masahiro KawaguchiTetsuhiko FukanumaKazuaki IwamaHiroyuki Nagai
    • Masahiro KawaguchiTetsuhiko FukanumaKazuaki IwamaHiroyuki Nagai
    • F04B39/00F04B27/08F04B27/10F04B1/26
    • F04B27/1072
    • A drive plate or lug plate is supported on a drive shaft for integral rotation therewith. A cam plate is coupled to the lug plate by a hinge mechanism to integrally rotate with the drive shaft and tilt with respect to the axis of the drive shaft. The cam plate is coupled to a piston to convert the rotation of the drive shaft into linear reciprocating movement of the piston in a cylinder to compress gas supplied from an external circuit and to discharge the compressed gas outward from the cylinder. The hinge mechanism has a first guide pin projecting to the lug plate from the cam plate, a second guide pin projecting to the lug plate from the cam plate in a position following the first guide pin which is the leading pin with respect to the direction of rotation of the drive shalt, a first guide hole formed in a support arm projecting from the lug plate to receive the first guide pin and a second guide hole formed in a second support arm projecting from the drive plate to receive the second guide pin. The first guide hole is located in a position offset from the second guide hole away from the rear surface of the lug plate by a distance which corresponds to the amount of movement of the cam plate and first guide pin caused by compression reaction on the piston during the compression stroke.
    • 驱动板或凸耳板支撑在驱动轴上以与其一体旋转。 凸轮板通过铰链机构联接到凸耳板,以与驱动轴一体旋转并相对于驱动轴的轴线倾斜。 凸轮板联接到活塞,以将驱动轴的旋转转换为活塞在气缸中的线性往复运动,以压缩从外部电路供应的气体并将压缩气体从气缸排出。 所述铰链机构具有从所述凸轮板突出到所述凸耳板的第一引导销,从所述凸轮板突出到所述凸耳板的第二引导销,所述第二引导销在与所述第一引导销相对的位置上相对于 驱动器的旋转,形成在从凸耳板突出以支撑第一引导销的支撑臂中的第一引导孔和形成在从驱动板突出以接收第二引导销的第二支撑臂中的第二引导孔。 第一引导孔位于与第二引导孔偏离离开凸耳板的后表面的位置上,该距离对应于由活塞上的压缩反应引起的凸轮板和第一引导销的移动量 压缩冲程。
    • 7. 发明授权
    • Variable displacement compressor
    • 可变排量压缩机
    • US6077047A
    • 2000-06-20
    • US12696
    • 1998-01-23
    • Hiroyuki NagaiMasahiro KawaguchiMasanori SonobeKen SuitouTakuya OkunoKoji Kawamura
    • Hiroyuki NagaiMasahiro KawaguchiMasanori SonobeKen SuitouTakuya OkunoKoji Kawamura
    • F04B27/10F04B27/18F04B1/26
    • F04B27/1804F04B27/1072F04B2027/1813F04B2027/1827F04B2027/1854F04B2027/1859
    • A variable displacement type compressor is disclosed. The compressor includes a housing, a cylinder bore within the housing, a piston located in the cylinder bore, a drive shaft rotatably supported by the housing, a rotary support mounted on the drive shaft, and a cam plate connected to the piston. The cam plate is supported tiltably on the drive shaft and is slidable in axial directions of the drive shaft. The cam plate inclines between a maximum inclination position and a minimum inclination position when the displacement of the compressor is changed. A first moment is applied to the cam plate by a compression reaction force of the piston when the compressor is operating. A hinge mechanism is located between the rotary support and the cam plate. The cam plate is rotated integrally with the drive shaft, the rotary support, and the hinge mechanism. An urging device is located between the rotary support and the cam plate for urging the cam plate toward the minimum go inclination angle position An applying mechanism applies a second moment to the swash plate in the same direction as the first moment when the compressor is not operating.
    • 公开了一种可变排量型压缩机。 压缩机包括壳体,壳体内的气缸孔,位于气缸孔中的活塞,由壳体可旋转地支撑的驱动轴,安装在驱动轴上的旋转支撑件和连接到活塞的凸轮板。 凸轮板可倾斜地支撑在驱动轴上并且可沿驱动轴的轴向方向滑动。 当压缩机的位移改变时,凸轮板在最大倾斜位置和最小倾斜位置之间倾斜。 当压缩机运行时,通过活塞的压缩反作用力将凸轮板施加第一时刻。 铰链机构位于旋转支架和凸轮板之间。 凸轮板与驱动轴,旋转支撑件和铰链机构一体地旋转。 推动装置位于旋转支撑件和凸轮板之间,用于将凸轮板朝向最小向下倾斜角度位置推动。施加机构沿着与压缩机不工作的第一时刻相同的方向向斜盘施加第二力矩 。
    • 9. 发明申请
    • RANKINE CYCLE
    • US20140208754A1
    • 2014-07-31
    • US14342876
    • 2012-08-14
    • Hiroyuki NagaiTomohiko SaitouTakayuki IshikawaShinichiro Mizoguchi
    • Hiroyuki NagaiTomohiko SaitouTakayuki IshikawaShinichiro Mizoguchi
    • F01K23/10
    • F01K23/10F01K23/065F01K23/14F01K25/10F01N5/02F02G5/04F02G2260/00Y02T10/166
    • A Rankine cycle includes an waste-heat recovery device that is configured to exchange heat between cooling water coming out from an engine and exhaust gas exhausted from the engine, a heat exchanger including an evaporator through which the cooling water coming out from the engine flows to recover waste-heat of the engine to refrigerant, and a superheater through which the cooling water coming out from the waste-heat recovery device flows to recover the waste-heat of the engine to the refrigerant, an expander that is configured to generate power using the refrigerant coming out from the heat exchanger, a condenser that is configured to condense the refrigerant coming out from the expander, and a refrigerant pump that is configured to supply the refrigerant coming out from the condenser to the heat exchanger by being driven by the expander. The cooling water coming out from the superheater is returned to the engine after being joined with the cooling water coming out from the evaporator.
    • 兰金循环包括废热回收装置,其被配置为在从发动机排出的冷却水和从发动机排出的废气之间进行热交换,包括蒸发器的热交换器,从发动机流出的冷却水通过该蒸发器流向 将发动机的废热回收到制冷剂;以及过热器,从废热回收装置排出的冷却水通过该过热器流动,以将发动机的废热回收到制冷剂;膨胀机,其被配置为使用 从热交换器排出的制冷剂,冷凝器,其被配置为冷凝从膨胀机排出的制冷剂;以及制冷剂泵,其构造成通过由膨胀机驱动从冷凝器排出的制冷剂供给到热交换器 。 与从蒸发器出来的冷却水接合后,从过热器出来的冷却水返回发动机。