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    • 42. 发明授权
    • Device for pressing orbiting scroll member in scroll type fluid machine
    • 涡旋式流体机械中的涡旋构件的按压装置
    • US4496296A
    • 1985-01-29
    • US456486
    • 1983-01-07
    • Nobukatsu AraiShigeru MachidaEiji SatoKenji TojoNaoshi Uchikawa
    • Nobukatsu AraiShigeru MachidaEiji SatoKenji TojoNaoshi Uchikawa
    • F01C1/02F04C18/02F04C23/00F04C27/00F04C28/26F01C19/00F04B49/02
    • F04C18/0215F04C27/005F04C23/008
    • A scroll type fluid machine having two scroll members each having an end plate and a spiral wrap formed on the end plate, the scroll members being coupled to each other such that the wraps thereof mate with each other. One of two scroll members being adapted to make an orbitary movement with respect to the other scroll member while being prevented from rotating around its own axis, so as to form at least one working chamber of different pressures between two scroll members. At least two pressing force imparting chambers are formed on the opposite side of the orbitary scroll member to the wrap. The pressing force imparting chambers includes a first chamber which is communicated through a communication passage with at least one of the working chambers which is not materially communicating with a low pressure port and is not at all communicating with a high pressure port of the machine, and a second chamber which is communicated with the high pressure port through a communication passage, so that fluid pressures of different levels are applied to the first and second pressing force imparting chambers so as to produce a force which presses the orbitary scroll member to the other scroll member.
    • 一种涡旋式流体机械,其具有两个涡旋件,每个涡旋件都具有形成在端板上的端板和螺旋形涡卷,涡旋件彼此连接,使得它们彼此配合。 两个涡旋构件中的一个适于在被阻止绕其自身轴线旋转的同时相对于另一个涡旋构件进行有轨运动,从而在两个涡旋构件之间形成不同压力的至少一个工作室。 至少两个按压力赋予室形成在涡卷构件的与卷绕物相反的一侧。 按压力赋予室包括:第一室,其通过连通通道与至少一个工作室连通,所述至少一个工作室与低压口没有实质连通,并且不与机器的高压端口连通;以及 第二室,其通过连通通道与高压端口连通,使得不同程度的流体压力被施加到第一和第二按压力施加室,以产生将轨道涡旋构件压向另一个涡旋件的力 会员。
    • 46. 发明申请
    • Scroll Fluid Machine
    • 涡旋流体机
    • US20080304994A1
    • 2008-12-11
    • US12136804
    • 2008-06-11
    • Masaru OHTAHARAMasashi MiyakeKenji TojoKazuo Sakurai
    • Masaru OHTAHARAMasashi MiyakeKenji TojoKazuo Sakurai
    • F04C18/02F04C29/02
    • F04C18/0215F04C23/008F04C27/007
    • A scroll fluid machine is configured by engaging a fixed scroll and an orbiting scroll having spiral bodies formed on base plates. A seal member is provided between a rear surface of the orbiting scroll and a frame member arranged opposite thereto to divide a rear side chamber into an inner space and an outer space. The inner space inside the seal member is subjected to a pressure substantially corresponding to a discharge pressure, and the outer space is subjected to a pressure lower than that of an inner back pressure chamber to press the orbiting scroll against the fixed scroll. The scroll members are formed such that the width of a groove and the thickness of a tooth of the spiral body formed inside the seal member are larger than those of the spiral body formed outside the seal member.
    • 涡旋流体机构通过使固定涡旋件和具有形成在基板上的螺旋体的绕动涡旋盘构成。 在动涡旋盘的后表面和与其相对设置的框架构件之间设置密封构件,以将后侧室分成内部空间和外部空间。 密封构件内的内部空间经受基本上对应于排出压力的压力,并且外部空间受到比内侧背压室低的压力,以将动涡旋件压靠在固定涡旋件上。 涡旋构件形成为使得形成在密封构件内部的槽的宽度和螺旋体的齿的厚度大于形成在密封构件外部的螺旋体的宽度。
    • 50. 发明授权
    • Refrigeration system incorporating scroll type compressor
    • 涡旋式压缩机制冷系统
    • US4475360A
    • 1984-10-09
    • US458923
    • 1983-01-18
    • Kazutaka SuefujiKensaku OguniSumihisa KotaniKenji Tojo
    • Kazutaka SuefujiKensaku OguniSumihisa KotaniKenji Tojo
    • F04C18/02F04C23/00F04C28/00F04C29/04F04C29/12F25B1/04F25B13/00F25B31/00
    • F04C28/00F04C18/0215F04C23/00F04C29/042F04C29/122F25B13/00F25B31/00
    • A refrigeration system including a scroll type compressor having a stationary scroll member, an orbiting scroll member, a discharge port formed in the central portion of the end plate of the fixed scroll member, a suction port formed in a peripheral portion of the fixed scroll member, and at least one gas injection port formed through the thickness of an end plate of the fixed scroll member in a portion of the end plate near the spiral wrap, at a position spaced from the wall of the spiral wrap by a radial distance less than the thickness of the spiral wrap. A discharge pipe is connected to the discharge port, with a suction pipe being connected to the suction port. A refrigerant circuit is connected between the suction pipe and the discharge pipe of the scroll type compressor and includes a four-way valve, indoor heat exchanger, first pressure reducer, gas-liquid separator, second pressure reducer and an outdoor heat exchanger. A gas injection passage is connected between the gas outlet formed in an upper part of the gas-liquid separator and the gas injection port, so as to permit the refrigerant gas in the upper part of the gas-liquid separator to be additionally supplied into the compression chambers under compression in the scroll type compressor.
    • 一种制冷系统,包括具有固定涡旋构件的涡旋式压缩机,形成在固定涡旋构件的端板的中心部的旋转涡旋构件,排出口,形成在固定涡旋构件的周向部分中的吸入口 以及至少一个气体注入口,其通过所述固定涡旋构件的端板的厚度在所述端板的靠近所述螺旋形涡卷的部分中形成,所述至少一个气体注入口在与所述螺旋状涡卷的壁间隔开径向距离小于 螺旋卷的厚度。 排出管连接到排出口,吸入管连接到吸入口。 在涡旋式压缩机的吸入管和排出管之间连接有制冷剂回路,包括四通阀,室内热交换器,第一减压器,气液分离器,第二减压器和室外热交换器。 在气液分离器的上部形成的气体出口和气体注入口之间连接有气体注入通道,以便将气液分离器的上部的制冷剂气体另外供给到 在涡旋式压缩机中受压缩的压缩室。