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    • 4. 发明授权
    • Scroll type fluid machine with prevention of stress concentration
    • 滚动式流体机械,防止应力集中
    • US4666380A
    • 1987-05-19
    • US745393
    • 1985-06-14
    • Takahisa HiranoShoji FukamiYasuharu MaruiwaTakuyuki ItohTamio SugimotoTetsuo OnoMasatoshi Mukai
    • Takahisa HiranoShoji FukamiYasuharu MaruiwaTakuyuki ItohTamio SugimotoTetsuo OnoMasatoshi Mukai
    • F01C1/02F01C1/04B23P9/04B23P15/00F01C21/08
    • F01C1/0246Y10T29/4924
    • A scroll type fluid machine comprising a pair of mutually engaged scroll members each including a side plate and a spiral lap uprightly disposed on an inside surface of the side plate; when the scroll members are relatively resolved in solar motion relationship, a fluid volume in sealed chambers defined by the pair of engaged scroll members being varied, so that a pressure of the fluid in the sealed chambers is thereby varied in order to discharge a gas therefrom, characterized by constituting so that stress may not concentrate at stress concentration portions of the scroll members, i.e., at corners of inner end base portions of the laps and the inside surfaces of the side plates in an eddy center section of the scroll members; and a method for forming the scroll members which permit improving productivity, characterized by forming, at the stress concentration portion of each scroll member, a round having a relatively large curvature radius which is enough to provide it with fatigue strength, and then finishing a relatively small round by means of a cutter for finish working.
    • 一种涡旋式流体机械,包括一对相互接合的涡旋构件,每个涡旋构件包括竖直地设置在侧板的内表面上的侧板和螺旋叠层; 当涡旋构件在太阳运动关系中相对分辨时,由一对接合的涡旋构件限定的密封室中的流体体积变化,从而改变密封室中的流体的压力以便从其中排出气体 其特征在于,在所述涡旋构件的涡流中心部中,在所述涡卷构件的所述圈的内端基部和所述侧板的内表面的拐角处,应力集中部分不能集中, 以及用于形成能够提高生产率的涡旋构件的方法,其特征在于,在每个涡旋构件的应力集中部分处形成具有相对大的曲率半径的圆形,其足以使其具有疲劳强度,然后完成相对 通过切割机小圆做完工作。
    • 5. 发明授权
    • Method for forming scroll members used in a scroll type fluid machine
    • 用于涡旋式流体机械中使用的涡旋件的形成方法
    • US4696084A
    • 1987-09-29
    • US833180
    • 1986-02-26
    • Takahisa HiranoShoji FukamiYasuharu MaruiwaTakuyuki ItohTamio SugimotoTetsuo OnoMasatoshi Mukai
    • Takahisa HiranoShoji FukamiYasuharu MaruiwaTakuyuki ItohTamio SugimotoTetsuo OnoMasatoshi Mukai
    • F01C1/02B23P15/00
    • F01C1/0246Y10S29/026Y10T29/4924Y10T29/49995
    • A scroll type fluid machine comprising a pair of mutually engaged scroll members each including a side plate and a spiral lap uprightly disposed on an inside surface of the side plate; when the scroll members are relatively revolved in solar motion relationship, a fluid volume in sealed chambers defined by the pair of engaged scroll members being varied, so that a pressure of the fluid in the sealed chambers is thereby varied in order to discharge a gas therefrom, characterized by constituting so that stress may not concentrate at stress concentration portions of the scroll members, i.e., at corners of inner end base portions of the laps and the inside surfaces of the side plates in an eddy center section of the scroll members; and a method for forming the scroll members which permit improving productivity, characterized by forming, at the stress concentration portion of each scroll member, a round having a relatively large curvature radius which is enough to provide it with fatigue strength, and then finishing a relatively small round by means of a cutter for finish working.
    • 一种涡旋式流体机械,包括一对相互接合的涡旋构件,每个涡旋构件包括竖直地设置在侧板的内表面上的侧板和螺旋叠层; 当涡旋构件以太阳运动关系相对旋转时,由一对接合的涡旋构件限定的密封室中的流体体积变化,从而改变密封腔中的流体的压力以便从其中排出气体 其特征在于,在所述涡旋构件的涡流中心部中,在所述涡卷构件的所述圈的内端基部和所述侧板的内表面的拐角处,应力集中部分不能集中, 以及用于形成能够提高生产率的涡旋构件的方法,其特征在于,在每个涡旋构件的应力集中部分处形成具有相对大的曲率半径的圆形,其足以使其具有疲劳强度,然后完成相对 通过切割机小圆做完工作。
    • 7. 发明授权
    • Scroll type fluid machinery with counter weight on drive bushing
    • 滚动式流体机械,其配重在驱动套管上
    • US5199862A
    • 1993-04-06
    • US939438
    • 1992-09-04
    • Hiroaki KondoTakahisa Hirano
    • Hiroaki KondoTakahisa Hirano
    • F01C1/02F01C21/00
    • F01C1/0215F01C21/003
    • A scroll type fluid machinery has a stationary scroll and a revolving scroll in which spiral wraps are set up at end plates, and are engaged with each other. A drive bushing is fitted rotatably into a boss projected at the central part of the outer surface of the end plate of the revolving scroll, and a drive pin projecting from the rotary shaft is fitted slidably into a slide hole bored in the drive bushing. A counter weight which generates a centrifugal force having an opposite direction to a centrifugal force acting on the revolving scroll at the time of revolving motion in a solar motion thereof is provided on the drive bushing. Further, the contact pressure between the wrap of the revolving scroll and the wrap of the stationary scroll is prevented from becoming excessive even at the time of high speed rotation of the rotary shaft.
    • 涡旋式流体机械具有固定涡卷和旋转涡卷,螺旋形涡卷在端板上设置并彼此接合。 驱动衬套可旋转地安装在突出于回转涡卷的端板的外表面的中心部分的凸台中,并且从旋转轴突出的驱动销可滑动地装配到驱动套筒中钻孔的滑动孔中。 在驱动衬套上设置有配重,其产生离心力,该离心力具有与在太阳运动中的旋转运动时作用在回转涡卷上的离心力相反的方向。 此外,即使在旋转轴的高速旋转时,也能够防止旋转涡卷与固定涡旋盘的卷绕部之间的接触压力变得过大。