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    • 1. 发明授权
    • Variable displacement compressor
    • 可变排量压缩机
    • US06076449A
    • 2000-06-20
    • US49515
    • 1998-03-27
    • Masahiro KawaguchiMasakazu MuraseTetsuhiko FukanumaHiroshi Kubo
    • Masahiro KawaguchiMasakazu MuraseTetsuhiko FukanumaHiroshi Kubo
    • F04B27/08F04B27/10F01B13/04
    • F04B27/1054
    • A variable displacement compressor includes a swash plate supported tiltably on a drive shaft and slidable in axial directions of the drive shaft. The swash plate has a central support hole into which the drive shaft is inserted. The swash plate has a top dead center point for positioning the piston at a top dead center position and a bottom dead center point for positioning the piston at a bottom dead center position. The center of gravity of the swash plate is displaced from the axis of the drive shaft toward the top dead center point. This location of the center of gravity maintains the radial position of the swash plate relative to the drive shaft by centrifugal force acting on the swash plate when the swash plate rotates. As a result, the compressor is quieter and more stable.
    • 可变排量压缩机包括可倾斜地支撑在驱动轴上并可在驱动轴的轴向方向上滑动的斜盘。 旋转斜盘具有中心支撑孔,驱动轴插入该中心支撑孔。 斜盘具有用于将活塞定位在上死点位置的上止点和用​​于将活塞定位在下死点位置的下止点。 斜盘的重心从驱动轴的轴向向上死点移动。 当旋转斜盘旋转时,该重心位置通过作用在斜盘上的离心力来保持旋转斜盘相对于驱动轴的径向位置。 因此,压缩机更安静,更稳定。
    • 3. 发明申请
    • Heat-insulating mechanism for compressor
    • 压缩机隔热机构
    • US20050106033A1
    • 2005-05-19
    • US10990234
    • 2004-11-16
    • Fuminobu EnokijimaMasaki OtaTetsuhiko FukanumaMasakazu MuraseTatsuya KoideMasahiro Kawaguchi
    • Fuminobu EnokijimaMasaki OtaTetsuhiko FukanumaMasakazu MuraseTatsuya KoideMasahiro Kawaguchi
    • F04B27/08F04B27/10F04B39/06F04B39/12F04B1/12
    • F04B39/06
    • A heat-insulating mechanism in a compressor which introduces refrigerant gas from a suction pressure region to a compression chamber and discharges the refrigerant gas from the compression chamber to a discharge pressure region has a circular passage, a communication passage, a cylindrical member and a passage heat-insulating member. The circular passage, which is a portion of the suction pressure region, has a circular cross-section, and is in communication with an external refrigerant circuit. The communication passage, which is a portion of the suction pressure region, intersects the circular passage for connection therewith, and is communicable with the compression chamber. The cylindrical member is fitted into the circular passage. The passage heat-insulating member made of an insulating material covers at least a portion of a passage wall surface which forms the communication passage. Rotation of the cylindrical member is prevented by engaging the passage heat-insulating member with the cylindrical member.
    • 将制冷剂气体从吸入压力区域引入压缩室并将制冷剂气体从压缩室排出到排出压力区域的压缩机中的隔热机构具有圆形通路,连通通路,筒状构件和通路 绝热构件。 作为吸入压力区域的一部分的圆形通道具有圆形横截面,并且与外部制冷剂回路连通。 作为吸入压力区域的一部分的连通通路与用于连接的圆形通道相交,并且可与压缩室连通。 圆柱形构件安装在圆形通道中。 由绝缘材料制成的通道绝热构件覆盖形成连通通道的通道壁表面的至少一部分。 通过将通道绝热构件与圆柱形构件接合来防止圆柱形构件的旋转。
    • 4. 发明授权
    • Heat-insulating mechanism for compressor
    • 压缩机隔热机构
    • US07540720B2
    • 2009-06-02
    • US10990234
    • 2004-11-16
    • Fuminobu EnokijimaMasaki OtaTetsuhiko FukanumaMasakazu MuraseTatsuya KoideMasahiro Kawaguchi
    • Fuminobu EnokijimaMasaki OtaTetsuhiko FukanumaMasakazu MuraseTatsuya KoideMasahiro Kawaguchi
    • F04B1/12F04B27/08
    • F04B39/06
    • A heat-insulating mechanism in a compressor which introduces refrigerant gas from a suction pressure region to a compression chamber and discharges the refrigerant gas from the compression chamber to a discharge pressure region has a circular passage, a communication passage, a cylindrical member and a passage heat-insulating member. The circular passage, which is a portion of the suction pressure region, has a circular cross-section, and is in communication with an external refrigerant circuit. The communication passage, which is a portion of the suction pressure region, intersects the circular passage for connection therewith, and is communicable with the compression chamber. The cylindrical member is fitted into the circular passage. The passage heat-insulating member made of an insulating material covers at least a portion of a passage wall surface which forms the communication passage. Rotation of the cylindrical member is prevented by engaging the passage heat-insulating member with the cylindrical member.
    • 将制冷剂气体从吸入压力区域引入压缩室并将制冷剂气体从压缩室排出到排出压力区域的压缩机中的隔热机构具有圆形通路,连通通路,筒状构件和通路 绝热构件。 作为吸入压力区域的一部分的圆形通道具有圆形横截面,并且与外部制冷剂回路连通。 作为吸入压力区域的一部分的连通通路与用于连接的圆形通道相交,并且可与压缩室连通。 圆柱形构件安装在圆形通道中。 由绝缘材料制成的通道绝热构件覆盖形成连通通道的通道壁表面的至少一部分。 通过将通道绝热构件与圆柱形构件接合来防止圆柱形构件的旋转。
    • 5. 发明授权
    • Piston-type compressor
    • 活塞式压缩机
    • US06338613B1
    • 2002-01-15
    • US09552274
    • 2000-04-19
    • Takuya OkunoTetsuhiko FukanumaMasahiro KawaguchiHiroshi Kubo
    • Takuya OkunoTetsuhiko FukanumaMasahiro KawaguchiHiroshi Kubo
    • F01B302
    • F04B27/1063F16C19/30
    • A housing includes a crank chamber and cylinder bores. Pistons are accommodated in the cylinder bores. A drive shaft is supported by the housing to pass through the crank chamber. A lug plate is fixed to the drive shaft. The pistons are coupled to the lug plate, which converts rotation of the drive shaft into reciprocation of the pistons and compresses gas in the cylinder bores. A thrust bearing is located between the housing and the lug plate and transmits a thrust load applied to the lug plate. The thrust bearing includes a front race located next to the housing, a rear race located next to the lug plate, and rollers located between the front and rear races. A front seat for supporting the front race is formed on the housing. A rear seat for supporting the rear race is formed on the lug plate. The diameters of the front and rear seats are different, which causes elastic deformation of the races when a thrust load is applied.
    • 壳体包括曲柄室和气缸孔。 活塞容纳在缸孔中。 驱动轴由壳体支撑以通过曲柄室。 凸耳板固定在驱动轴上。 活塞联接到凸耳板,其将驱动轴的旋转转换成活塞的往复运动并压缩气缸孔中的气体。 止推轴承位于壳体和凸耳板之间,并传递施加到凸耳板的推力。 推力轴承包括位于壳体旁边的前座圈,位于接片板旁边的后座圈和位于前后座圈之间的滚子。 在外壳上形成用于支撑前座的前座。 用于支撑后座圈的后座形成在凸耳板上。 前排座椅和后排座椅的直径不同,当施加推力载荷时,这些直径会引起种族的弹性变形。
    • 6. 发明授权
    • Undulating current supplying means for the solenoid of a displacement
control valve in a variable displacement compressor
    • 用于可变排量压缩机中​​的排量控制阀的螺线管的电流供应装置
    • US6126405A
    • 2000-10-03
    • US876410
    • 1997-06-16
    • Masahiro KawaguchiMasanori SonobeHiroshi KuboTetsuhiko Fukanuma
    • Masahiro KawaguchiMasanori SonobeHiroshi KuboTetsuhiko Fukanuma
    • F04B49/06F04B27/14F04B27/18F04B53/10F16K31/06F04B1/26
    • F04B27/1804F04B2027/1827F04B2027/1854F04B2027/1859
    • A compressor has a drive plate located in a crank chamber and tiltably mounted on a drive shaft and a piston operably coupled to the drive plate and located in a cylinder bore. The inclination of the drive plate is variable according to a difference between the pressure in the crank chamber and the pressure in the cylinder bore. The compressor has an adjusting mechanism for adjusting the pressure in one of the crank chamber and a suction chamber to vary the difference between the pressure in the crank chamber and the pressure in the cylinder bore. The adjusting mechanism includes a gas passage for passing the gas used for adjusting the pressure and a control valve for adjusting the amount of the gas flowing in the gas passage. The control valve includes a valve body, a reacting member and a solenoid. The valve body adjusts the opening size of the gas passage. The reacting member moves the valve body in accordance with the pressure of the gas supplied to the compressor from the external circuit. The solenoid biases the valve body in a direction with the force based on a value of current supplied to the solenoid. A supplying apparatus supplies undulating current to the solenoid. The supplying apparatus varies the average value of the undulating current to vary the biasing force of the solenoid.
    • 压缩机具有位于曲柄室中并可倾斜地安装在驱动轴上的驱动板和可操作地联接到驱动板并位于气缸孔中的活塞。 驱动板的倾斜度根据曲柄室内的压力与气缸孔中的压力之差而变化。 压缩机具有用于调节曲柄室和吸入室中的一个中的压力的​​调节机构,以改变曲柄室中的压力和气缸孔中的压力之间的差。 调节机构包括用于调节用于调节压力的气体的气体通道和用于调节在气体通道中流动的气体量的控制阀。 控制阀包括阀体,反作用构件和螺线管。 阀体调节气体通道的开口尺寸。 反作用构件根据从外部回路供给到压缩机的气体的压力移动阀体。 螺线管基于提供给螺线管的电流值,以一定的方向使阀体偏压阀体。 供给装置向螺线管供给波动电流。 供给装置改变波动电流的平均值以改变螺线管的偏置力。