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    • 3. 发明授权
    • Multi-stage capacity-controlled scroll compressor
    • 多级容量控制涡旋压缩机
    • US06478550B2
    • 2002-11-12
    • US10052530
    • 2002-01-23
    • Kenji MatsubaShigeki HagiwaraYoshitaka ShibamotoHiroyuki Kuroiwa
    • Kenji MatsubaShigeki HagiwaraYoshitaka ShibamotoHiroyuki Kuroiwa
    • F04B4900
    • F04C28/16F04C18/0215
    • A first bypass valve (27) that sets discharge capacity to 60% is provided in a first scroll 21 of an asymmetrical spiral-type scroll compressor. Also, a second bypass valve (40) that makes suction side and discharge side communicated with each other so that set load of the compressor becomes 50% is provided outside a scroll of the first scroll (21). In this way, by closing the first and second bypass valves (27, 40), effective load of the compressor is set to 100%. Also, by opening the first bypass valve (27) and concurrently closing the second bypass valve (40), the effective load of the compressor is set to 60%. Further, by opening both the first and second bypass valves (27, 40), the effective load of the compressor is set to 30%.
    • 在非对称螺旋式涡旋压缩机的第一涡旋盘21中设置有将排气容量设定为60%的第一旁通阀(27)。 此外,在第一涡旋件(21)的涡旋件的外侧设置有使吸入侧和排出侧彼此连通以使得压缩机的设定负载变为50%的第二旁通阀(40)。 以这种方式,通过关闭第一和第二旁通阀(27,40),压缩机的有效负载被设定为100%。 此外,通过打开第一旁通阀(27)并同时关闭第二旁通阀(40),将压缩机的有效负荷设定为60%。 此外,通过打开第一和第二旁通阀(27,40),将压缩机的有效负载设定为30%。
    • 4. 发明授权
    • Horizontal type scroll compressor having inlet ports at an upper level
of the casing
    • 水平式涡旋压缩机,其具有位于壳体上部的入口
    • US5683237A
    • 1997-11-04
    • US591652
    • 1996-02-12
    • Shigeki HagiwaraTakekazu ObitaniHiromichi UenoShuichi Jomura
    • Shigeki HagiwaraTakekazu ObitaniHiromichi UenoShuichi Jomura
    • F04C18/02F04C23/00F04C28/28F04C29/02F04C29/12F04C18/04
    • F04C29/02F04C18/0215F04C23/008F04C2240/603F04C2250/101F05B2250/501
    • In a horizontal type scroll compressor an external end of a volute (2b) of a fixed scroll (2) is extended near to an external end side of a volute (3b) of a movable scroll (3). By the extension of the volute (2b), inlet ports (22, 23) opening to compression rooms (RA, RB) respectively are disposed near to each other and are located at an upper level in a closed casing (1). An inlet passage (24) is formed at the top of a housing (4) which divides the closed casing (1) into a compression element chamber (12A) and a motor chamber (12B). The opening position of an inlet pipe (11) is displaced circumferentially with respect to the inlet passage (24). The inlet passage (24) is displaced circumferentially with respect to the inlet ports (22, 23) of the compression rooms (RA, RB). The inlet passage (24) is displaced forward in a traveling direction of the movable scroll (3) with respect to the inlet ports (22, 23).
    • PCT No.PCT / JP95 / 01233 Sec。 371日期:1996年2月12日 102(e)日期1996年2月12日PCT归档1995年6月21日PCT公布。 出版物WO96 / 00350 日期1996年1月4日在水平式涡旋压缩机中,固定涡旋件(2)的蜗壳(2b)的外端在动涡旋盘(3)的蜗壳(3b)的外端侧附近延伸。 通过蜗壳(2b)的延伸,通向压缩室(RA,RB)的入口端口(22,23)分别靠近并设置在封闭壳体(1)中的上部位置。 入口通道(24)形成在壳体(4)的顶部,壳体(4)将封闭壳体(1)分成压缩元件室(12A)和电动机室(12B)。 入口管(11)的打开位置相对于入口通道24周向移位。 入口通道(24)相对于压缩室(RA,RB)的入口端口(22,23)周向移位。 入口通道(24)相对于入口(22,23)在动涡旋盘(3)的行进方向上向前移位。
    • 6. 发明授权
    • Scroll type fluid machine
    • 滚动式流体机
    • US6139287A
    • 2000-10-31
    • US180249
    • 1998-11-03
    • Hiroyuki KuroiwaShigeki Hagiwara
    • Hiroyuki KuroiwaShigeki Hagiwara
    • F04C28/26F04C18/02F04C28/16F04C28/18F04C29/00F04C29/02F04C29/12F16K31/42F04B49/00F01C1/02
    • F04C28/16F04C28/26F04C18/0215F04C18/0223
    • A scroll type fluid machine having a bypass hole structure for capacity control is disclosed. The scroll type fluid machine comprises a first scroll having a first spiral blade, and a second scroll having a second spiral blade. A first fluid working chamber is formed between an inner surface of the first spiral blade, and a second scroll having a second spiral blade. A first fluid working chamber is formed between an inner surface of the first spiral blade and an outer surface of the second spiral blade, and a second fluid working chamber is formed between an outer surface of the first spiral blade and an inner surface of the second spiral blade. A winding end of the first spiral blade is extended so that the first fluid working chamber and the second fluid working chamber open and close with respect to a single low-pressure port. A common bypass hole making the first and second fluid working chambers communicate with the low-pressure port in common is provided.
    • PCT No.PCT / JP97 / 02013 Sec。 371日期:1998年11月3日 102(e)日期1998年11月3日PCT 1997年6月11日PCT公布。 第WO98 / 57066号公报 日期:1998年12月17日公开了一种具有用于容量控制的旁通孔结构的涡旋式流体机械。 涡旋式流体机械包括具有第一螺旋叶片的第一涡旋件和具有第二螺旋叶片的第二涡旋件。 第一流体工作室形成在第一螺旋叶片的内表面和具有第二螺旋叶片的第二涡旋件之间。 第一流体工作室形成在第一螺旋叶片的内表面和第二螺旋叶片的外表面之间,第二流体工作室形成在第一螺旋叶片的外表面和第二螺旋叶片的内表面之间 螺旋叶片。 第一螺旋叶片的卷绕端部被延伸,使得第一流体工作室和第二流体工作室相对于单个低压端口打开和关闭。 提供了制造第一和第二流体工作室的公共旁路孔与低压端口共同连通。