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    • 4. 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%。
    • 7. 发明申请
    • FLUID MACHINERY
    • 流体机械
    • US20100322809A1
    • 2010-12-23
    • US12517847
    • 2007-12-04
    • Masanori MasudaYoshitaka ShibamotoKazuhiro FurushoKenichi SataTakazo SotojimaTakashi Shimizu
    • Masanori MasudaYoshitaka ShibamotoKazuhiro FurushoKenichi SataTakazo SotojimaTakashi Shimizu
    • F01C1/02
    • F04C27/005F04C18/0215F04C18/045F04C18/322F04C23/008
    • A fluid machinery includes a rotary mechanism, an annular back pressure chamber and an oil passage. The rotary mechanism includes first and second cooperating members, each including an engaging member extending from an end plate, with the cooperating members being arranged to oscillate relative to each in order to change volumes of operation chambers formed between the cooperating members. The annular back pressure chamber is formed on the back surface side of the end plate of the first cooperating member, and communicates with an intermediate operation chamber of the operation chambers to thrust the first cooperating member against the second cooperating member. The intermediate operation chamber is in an intermediate pressure state. The oil passage is arranged to communicate an oil into the back pressure chamber to fill the back pressure chamber with the oil. The rotary mechanism can include a piston and cylinder, or can include a fixed and orbiting scroll.
    • 流体机械包括旋转机构,环形背压室和油通道。 旋转机构包括第一和第二配合构件,每个配合构件包括从端板延伸的接合构件,配合构件被布置成相对于每个配合构件摆动,以便改变在配合构件之间形成的操作室的容积。 环形背压室形成在第一配合构件的端板的背面侧,并与操作室的中间操作室连通,以将第一配合构件推向第二配合构件。 中间操作室处于中压状态。 油通道布置成将油传送到背压室中以用油填充背压室。 旋转机构可以包括活塞和气缸,或者可以包括固定和绕动涡旋件。