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    • 44. 发明授权
    • Scroll fluid machine with cooling fan and passage
    • 滚动流体机,带冷却风扇和通道
    • US09115719B2
    • 2015-08-25
    • US13953335
    • 2013-07-29
    • Hitachi Industrial Equipment Systems Co., Ltd.
    • Kosuke SadakataKiminori IwanoYoshio Kobayashi
    • F04C29/04F04C15/00F04C18/02F01C21/10
    • F04C29/04F01C21/10F04C15/0096F04C18/0215
    • A scroll fluid machine having: a compressor body including a fixed scroll and an orbiting scroll opposed to the fixed scroll, the orbiting scroll orbiting; a drive shaft connected to the orbiting scroll; a cooling fan provided on another side of the drive shaft opposite to the orbiting scroll, the cooling fan generating a cooling wind; and a cooling wind passage surrounded by walls in all directions, the cooling wind passage sending the cooling wind of the cooling fan to the compressor body, when the cooling wind passage being disposed left and the drive shaft being disposed right when seen from a direction in which the drive shaft extends, a size of the cooling wind passage in the left and right directions being smaller in upstream than downstream of the cooling wind passage.
    • 一种涡旋流体机械,具有:压缩机主体,包括固定涡旋盘和与所述固定涡旋盘相对的绕动涡旋盘,所述绕动涡旋盘旋转; 连接到所述绕动涡盘的驱动轴; 所述冷却风扇设置在所述驱动轴的与所述绕动涡盘相对的另一侧,所述冷却风扇产生冷却风; 以及冷却风通道,其被各个壁的壁围绕,冷却风路将冷却风扇的冷却风送到压缩机主体,当冷却风通道设置在左侧时,驱动轴从从 所述驱动轴延伸,所述冷却风通道在左右方向上的尺寸比所述冷却风通道的下游小。
    • 45. 发明申请
    • Refrigerant Compressor and Refrigeration Cycle Device
    • 制冷剂和制冷循环装置
    • US20150159649A1
    • 2015-06-11
    • US14402965
    • 2012-05-22
    • Masaki KoyamaKeiji Sasao
    • Masaki KoyamaKeiji Sasao
    • F04C15/00F04C15/06F04C2/02
    • F04C15/0096F04B39/04F04B39/06F04C2/025F04C15/06F04C18/0215F04C18/30F04C23/008F04C29/026F04C29/045F04C29/12
    • A refrigerant compressor (100) includes: a sealed vessel (103); a compression mechanism (101) that sucks refrigerant, sucked in the sealed vessel (103), for compression; a motor (102) that drives the compression mechanism (101); a suction pipe (104) for sucking the refrigerant into the sealed vessel (103) when sucking the refrigerant; a cover (117a) arranged to face an outlet of the suction pipe (104), to force the refrigerant sucked through the suction pipe (104) to collide against the cover for gas-liquid separation, and to allow liquid refrigerant from the separation to drop on a coil (126) of the motor (102); and a suction passage (118) that introduces gas refrigerant from the gas-liquid separation, for which the refrigerant sucked through the suction pipe is forced to collide against the cover (117a), to an inlet of the compression chamber provided in the compression mechanism (101). Thus, a decrease in density of the refrigerant to be compressed, sucked into the sealed vessel (103), can be prevented to prevent a decrease in refrigeration capacity, and the temperature of the motor (102) can be lowered to improve a motor efficiency.
    • 制冷剂压缩机(100)包括:密封容器(103); 吸入被密封容器(103)中的制冷剂压缩的压缩机构(101) 驱动压缩机构(101)的马达(102)。 吸入管(104),用于在吸入制冷剂时将制冷剂吸入密封容器(103); 设置成与吸入管104的出口相对的盖子(117a),以迫使吸入管(104)吸入的制冷剂与用于气液分离的盖碰撞,并使液体制冷剂从分离 落在电动机(102)的线圈(126)上; 以及吸入通道(118),其将来自吸入管吸入的制冷剂的气液分离引入气体制冷剂,该吸入通道被迫与盖体(117a)碰撞到设置在压缩机构中的压缩室的入口 (101)。 因此,可以防止吸入密封容器(103)中被压缩的制冷剂的密度降低,以防止制冷量的降低,并且可以降低电动机(102)的温度以提高电动机效率 。
    • 47. 发明申请
    • ROTARY PUMP OR MOTOR WITH ORBITAL PISTON ASPIRATION, METHODS OF PRODUCTION AND USES THEREOF
    • 旋转泵或电动机,带有活塞式活塞,其生产方法及其用途
    • US20150132167A1
    • 2015-05-14
    • US14450566
    • 2014-08-04
    • Fritz ForgyJohn Novak, JR.
    • Fritz ForgyJohn Novak, JR.
    • F04C15/06F04C15/00F04C2/08
    • F04C15/06F01C1/20F01C19/005F04C2/084F04C15/0096F05C2225/00
    • Rotary components are described that include a housing comprising a rotor having a rotor working face and a gate having a gate working face and a pocket; at least one vane, wherein the vane is coupled to the rotor; at least one wiper coupled to the vane; a plurality of endplates coupled to the housing, wherein at least one of the endplates is a float plate; an intake chamber; and an outlet chamber. In addition, methods of aspirating a working medium by utilizing the rotary component having at least one float plate includes pulling the working medium into the intake chamber, depositing the working medium into a working chamber that is located between the intake chamber and the outlet chamber; maintaining the working medium in a stationary position until the vane sweeps around toward the outlet chamber; accumulating the working medium into the outlet channel of the outlet chamber; and centrifugally ejecting the working medium into the outlet chamber and out of the system.
    • 描述了包括壳体的旋转部件,该壳体包括具有转子工作面的转子和具有闸门工作面和口袋的闸门; 至少一个叶片,其中所述叶片联接到所述转子; 耦合到所述叶片的至少一个擦拭器; 耦合到所述壳体的多个端板,其中所述端板中的至少一个是浮板; 进气室 和出口室。 另外,通过利用具有至少一个浮板的旋转部件吸入工作介质的方法包括将工作介质拉入进气室,将工作介质沉积到位于进气室和出口室之间的工作室中; 将工作介质保持在静止位置,直到叶片朝向出口腔室周围扫过; 将工作介质积聚到出口室的出口通道中; 并将工作介质离心地排出到出口室并离开系统。