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    • 6. 发明授权
    • Revolution type compressor
    • 革命型压缩机
    • US08992188B2
    • 2015-03-31
    • US12637779
    • 2009-12-15
    • Satoshi NakamuraMutsunori MatsunagaTakeshi TsuchiyaMasatsugu Chikano
    • Satoshi NakamuraMutsunori MatsunagaTakeshi TsuchiyaMasatsugu Chikano
    • F04B17/03F04B35/04F04C23/00F04C29/02F04C18/02
    • F04C23/008F04C18/0215F04C29/028F04C2240/807
    • In a revolution type compressor using a balance weight for balancing a rotating mass, the effect of oil churn reduction is enhanced, and compressor input is reduced. A balance weight fixed to a drive shaft between a rotor of an electric motor 4 and a compression mechanism includes a weight portion in a substantially semicircular column shape for balancing a rotating mass, a cover portion which is substantially semi-cylindrical and has an opening in the vicinity of a top and bottom at an opposite side in a radial direction from the weight portion, and a hollow space surrounded by the weight portion and the cover portion. Further, a space for discharging oil is provided between the balance weight and the rotor. By the structure, reduction in oil churn, and reduction in input of the compressor are realized, and the compressor with less power consumption is obtained.
    • 在使用用于平衡旋转质量的平衡重的旋转式压缩机中,提高了油搅拌减少的效果,并且减小了压缩机输入。 固定到电动机4的转子和压缩机构之间的驱动轴的平衡配重包括用于平衡旋转质量体的大致半圆柱状的重量部分,基本上半圆柱形的开口部分 在距重物部分的径向相反侧的顶部和底部附近,以及由重物部分和盖部分包围的中空空间。 此外,在平衡重和转子之间设置用于排出油的空间。 通过该结构,实现了油压的减少和压缩机的输入的减少,并且获得了具有较低功耗的压缩机。
    • 9. 发明申请
    • Scroll Compressor
    • 涡旋压缩机
    • US20140010693A1
    • 2014-01-09
    • US14000941
    • 2011-03-29
    • Kouichi ImadaMutsunori MatsunagaTakeshi TsuchiyaShuji HasegawaYoshihiro FukayaHiromu TakedaMasatsugu Chikano
    • Kouichi ImadaMutsunori MatsunagaTakeshi TsuchiyaShuji HasegawaYoshihiro FukayaHiromu TakedaMasatsugu Chikano
    • F04C18/02
    • F04C18/02F04C18/0215F04C18/0253F04C23/008F04C27/005F04C29/12F04C29/126
    • A scroll compressor contains a suction chamber and a compression chamber formed between the orbiting scroll and stationary scroll; and the rear surface of the orbiting scroll includes a back pressure chamber to apply a pressing force for pressing the stationary scroll to the orbiting scroll by the pressure higher than the pressure in the suction chamber. The stationary scroll contains the communication paths 200, 201 to connect the suction chamber or the compression chamber and the back pressure chamber; and a back pressure control means for opening and closing the communication paths by way of the pressure differential along the communication paths. The inlet communication path 200 that extends from the back pressure control means to the back pressure chamber includes at least two or more path cross-sectional areas. The cross-sectional area of an inlet communication path 301 on the back pressure chamber side of this inlet communication path is formed larger than the cross-sectional area of an inlet communication path 302 on the back pressure control means side. Moreover, the opening surface area of the back pressure chamber side of the communication path 301 is configured so as to be constantly equal to or smaller than the cross-sectional area of the communication path 302 so that a section of the back pressure chamber side opening 300 of the communication path 301 is constantly blocked by the base plate of the orbiting scroll, and in this way a highly efficient and highly reliable scroll compressor is achieved.
    • 涡旋压缩机包括形成在绕动涡旋盘和固定涡旋件之间的吸入室和压缩室; 动涡旋盘的后表面包括背压室,以通过高于吸入室中的压力的​​压力施加用于将固定涡旋件按压到绕动涡旋件的按压力。 固定涡卷包括连接吸入室或压缩室和背压室的连通路径200,201; 以及背压控制装置,用于通过沿着连通路径的压力差来打开和关闭通信路径。 从背压控制装置延伸到背压室的入口连通路径200包括至少两个或更多个路径横截面区域。 该入口连通路径的背压室侧的入口连通路301的截面面积大于背压控制单元侧的入口连通路302的截面积。 此外,连通路301的背压室侧的开口面积被构造成恒定地等于或小于连通路径302的横截面面积,使得背压室侧开口部 连通路径301的300通过绕动涡盘的基板不断地被阻挡,以这种方式实现了高效率和高可靠性的涡旋压缩机。