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    • 2. 发明申请
    • ELECTRIC COMPRESSOR
    • 电动压缩机
    • US20130207509A1
    • 2013-08-15
    • US13878152
    • 2011-10-07
    • Hirotada ShimaguchiToshikatsu MiyajiTatsuya Osaki
    • Hirotada ShimaguchiToshikatsu MiyajiTatsuya Osaki
    • H02K1/18
    • H02K1/185F01C21/10F04B35/04F04C23/02F04C29/0085F04C2230/20F04C2230/603F04C2230/605F04C2270/12
    • Provided is an electric compressor (1), which drives, in a cylindrical housing (2), a compressor (4) using an electric motor (3) disposed in the housing (2). The electric compressor is characterized in that the electric motor (3) is formed with a stator (7), which is fixed to the housing (2), and which generates a magnetic force when a current is carried, and a rotor (9), which is rotatably disposed inside of the stator (7), and which rotates with the magnetic force generated by the stator (7). The electric compressor is also characterized in that the stator (7) is press-fitted in a cylindrical body (6) composed of a material having a linear expansion coefficient close to that of the stator (7), and that the cylindrical body (6) is partially press-fitted at a plurality of areas in the inner wall (10) of the housing (2).
    • 提供一种使用设置在壳体(2)中的电动机(3)在圆筒形壳体(2)中驱动压缩机(4)的电动压缩机(1)。 电动压缩机的特征在于,电动机(3)形成有定子(7),该定子(7)固定到壳体(2)上,并且当载流时产生磁力,转子(9) ,其可旋转地设置在定子(7)的内部,并且由定子(7)产生的磁力旋转。 电动压缩机的特征还在于定子(7)压配合在由具有接近定子(7)的线膨胀系数的材料构成的圆柱体(6)中,并且圆筒体(6) )被部分压配合在壳体(2)的内壁(10)中的多个区域。
    • 6. 发明申请
    • ELECTRIC COMPRESSOR
    • 电动压缩机
    • US20090162233A1
    • 2009-06-25
    • US12342850
    • 2008-12-23
    • Hirotada ShimaguchiMasaki WatanabeJyunya Sugamuta
    • Hirotada ShimaguchiMasaki WatanabeJyunya Sugamuta
    • F04C15/06F04B35/04
    • F04C29/045F04C23/00F04C23/008F04C29/0085
    • An electric compressor (201) includes: a compressor (203) configured to compress a refrigerant, the compressor (203) having a plurality of passage ports (207) delivering the refrigerant; an electric motor (205) configured to drive the compressor (203), the electric motor (205) having a plurality of stators (17) and an accommodation chamber (213) accommodating the plurality of stators (17); a partition wall (215) separating the compressor (203) and the an accommodation chamber (213) of the electric motor (205); and a plurality of refrigerant introducing/discharging passages (219) formed at the partition wall (215) wherein the respective refrigerant introducing/discharging passages (219) are located in a circumferential direction of the accommodation chamber (213), thereby the refrigerant being introduced into and discharged from stators (17) end in the electric motor (205) through the respective refrigerant introducing/discharging passages (219).
    • 电动压缩机(201)包括:压缩机(203),其构造成压缩制冷剂,所述压缩机(203)具有输送制冷剂的多个通路口(207) 构造成驱动压缩机(203)的电动机(205),具有多个定子(17)的电动机(205)和容纳多个定子(17)的容纳室(213)。 分隔压缩机(203)和电动机(205)的容纳室(213)的分隔壁(215)。 以及形成在分隔壁(215)处的多个制冷剂引入/排出通道(219),其中各个制冷剂引入/排出通道(219)位于容纳室(213)的圆周方向,从而导入制冷剂 通过各个制冷剂引入/排出通道(219)将定子(17)进入和排出到电动机(205)中。
    • 7. 发明授权
    • Stop mechanism for vane compressor
    • 叶片式压缩机停止机构
    • US08985963B2
    • 2015-03-24
    • US13516896
    • 2010-12-14
    • Junichirou TerazawaHirotada Shimaguchi
    • Junichirou TerazawaHirotada Shimaguchi
    • F04C2/00F04C18/00F04C14/18F04C28/18F04C18/344F01C21/08F04C28/06F04C29/00
    • F04C18/3446F01C21/0863F04C28/06F04C29/005F04C2240/20
    • A vane compressor includes a cylinder block, a cylinder chamber having an ellipsoidal inner wall, a rotor whose outer circumferential surface is provided with vane slots formed thereon, a drive source for the rotor, and vanes housed in the vane slots, respectively. The rotor is rotated by the drive source while the vanes are protruded from the vane slots by backpressure generated in backpressure spaces in the vane slots to contact end edges of the vanes with the inner wall of the cylinder chamber. The compressor further comprises a stop mechanism that makes the rotor stopped at a predetermined rotational position where a difference between a total volume of the backpressure spaces when operated and a total volume of the backpressure spaces when stopped becomes minimum. According to the compressor, chattering can be prevented without extra workings on the vanes or the rotor and without providing extra parts.
    • 叶片压缩机包括气缸体,具有椭圆形内壁的气缸室,外周面上形成有叶片槽的转子,转子的驱动源和容纳在叶片槽中的叶片。 转子通过驱动源旋转,同时叶片通过在叶片槽中的背压空间中产生的背压而从叶片槽突出,以接触叶片的端部边缘与气缸室的内壁。 压缩机还包括停止机构,该停止机构使转子停止在预定旋转位置,在预定旋转位置,当操作时背压空间的总体积与停止时的背压空间的总体积之间的差最小时。 根据压缩机,可以防止在叶片或转子上没有额外的运动而没有额外的部件的颤动。
    • 10. 发明申请
    • VANE COMPRESSOR
    • VANE压缩机
    • US20120269670A1
    • 2012-10-25
    • US13516896
    • 2010-12-14
    • Junichirou TerazawaHirotada Shimaguchi
    • Junichirou TerazawaHirotada Shimaguchi
    • F04C18/02
    • F04C18/3446F01C21/0863F04C28/06F04C29/005F04C2240/20
    • A vane compressor includes a cylinder block, a cylinder chamber having an ellipsoidal inner wall, a rotor whose outer circumferential surface is provided with vane slots formed thereon, a drive source for the rotor, and vanes housed in the vane slots, respectively. The rotor is rotated by the drive source while the vanes are protruded from the vane slots by backpressure generated in backpressure spaces in the vane slots to contact end edges of the vanes with the inner wall of the cylinder chamber. The compressor further comprises a stop mechanism that makes the rotor stopped at a predetermined rotational position where a difference between a total volume of the backpressure spaces when operated and a total volume of the backpressure spaces when stopped becomes minimum. According to the compressor, chattering can be prevented without extra workings on the vanes or the rotor and without providing extra parts.
    • 叶片压缩机包括气缸体,具有椭圆形内壁的气缸室,外周面上形成有叶片槽的转子,转子的驱动源和容纳在叶片槽中的叶片。 转子通过驱动源旋转,同时叶片通过在叶片槽中的背压空间中产生的背压而从叶片槽突出,以接触叶片的端部边缘与气缸室的内壁。 压缩机还包括停止机构,该停止机构使转子停止在预定旋转位置,在预定旋转位置,当操作时背压空间的总体积与停止时的背压空间的总体积之间的差最小时。 根据压缩机,可以防止在叶片或转子上没有额外的运动而没有额外的部件的颤动。