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    • 19. 发明授权
    • Scroll compressor having separation plate between high and low pressures
    • 涡旋压缩机具有高压和低压之间的隔板
    • US6017203A
    • 2000-01-25
    • US684575
    • 1996-07-19
    • Masaaki SugawaNobukazu KosoneTetsuzou MatsugiKiyoharu IkedaShoichiro HaraNorihiko Toyoda
    • Masaaki SugawaNobukazu KosoneTetsuzou MatsugiKiyoharu IkedaShoichiro HaraNorihiko Toyoda
    • F04C23/00F04C27/00F04C29/00F04C18/04
    • F04C18/0215F04C23/008F04C27/008F04C2230/231F04C2230/60F04C2240/30Y10T29/4924
    • A high-performance and high-reliability scroll compressor which prevents seal property failure at seal necessary points, tooth tip contact, abnormal wear of an elastic body, fatigue failure, etc. A radially outward peripheral projection (4c) is formed on the full outer peripheral surface of a separation plate (4). The peripheral projection (4c) is set to an outer diameter reduced, relative to the inner diameter of the shell main body (9) before a shell lid (20) is sealed by welding, etc., by the dimension corresponding to the shrinkage amount of a shell main body (9). That is, before welding, a minute gap occurs between the outer peripheral surface of the peripheral projections (4c) and the inner peripheral surface of the shell main body (9). Then, the separation plate (4) is inserted into the shell main body (9) and further the separation plate (4) and a frame (3) are fixed. After this, when the shell main body (9) and the shell lid (20) are welded, because of shrinkage of the shell main body (9) after the welding, the outer peripheral surface of the peripheral projections (4c) of the separation plate (4) comes in tight contact with the inner peripheral surface of the shell main body (9), whereby the space is partitioned and sealed between a high pressure space (30) and a low pressure space (31).
    • 一种高性能,高可靠性的涡旋压缩机,其防止密封必要点处的密封性能失效,齿尖接触,弹性体的异常磨损,疲劳失效等。径向向外周向突起(4c)形成在完全外部 分离板(4)的周边表面。 外壳突起(4c)被设定为相对于外壳主体(9)的内径减小外壳盖(20)通过焊接等密封的尺寸相当于与收缩量相对应的尺寸 的壳主体(9)。 也就是说,在焊接之前,在周边突起(4c)的外周面和壳主体(9)的内周面之间产生微小的间隙。 然后,分离板(4)插入壳主体(9)中,并且分离板(4)和框架(3)进一步固定。 此后,当壳体主体(9)和壳盖(20)焊接时,由于壳体主体(9)在焊接之后的收缩,所以分离的外围突起(4c)的外周面 板(4)与壳主体(9)的内周表面紧密接触,由此在高压空间(30)和低压空间(31)之间分隔并密封空间。