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    • 3. 发明授权
    • Screw vacuum pump with a coolant circuit
    • 螺杆真空泵带冷却液回路
    • US06758660B2
    • 2004-07-06
    • US10169270
    • 2002-09-30
    • Hartmut KriehnLothar Brenner
    • Hartmut KriehnLothar Brenner
    • F04C1816
    • F16H57/0415F04C18/16F04C29/04
    • A screw vacuum pump (1) has shafts (7, 8) and rotors (3, 4) secured to the shafts. Each rotor has a central hollow chamber (31) which receives the shaft or contains in built-in components rotating along with the rotor to define a relatively thin annular slot segment (32) for cross-flow circulation of coolant. The annular slot segment is disposed between the built-in components and an inner wall of the rotor's hollow chamber and between a suction side and a delivery side of the rotor. Separate feed and discharge lines (41, 55, 63, 77, 78, 81, 89, 99, 101, 103) circulate the coolant through the annular slot segment in such a way that the coolant remains cavitation-free and bubble-free.
    • 螺杆式真空泵(1)具有固定在轴上的轴(7,8)和转子(3,4)。 每个转子具有中心中空室(31),其容纳轴或包含与转子一起旋转的内置部件,以限定用于冷却剂的横流循环的相对薄的环形槽段(32)。 环形槽段设置在内置部件和转子中空室的内壁之间以及转子的吸力侧和输送侧之间。 单独的进料和排出管线(41,45,63,77,78,81,89,99,101,103)使冷却剂循环通过环形槽段,使得冷却剂保持无气泡和无气泡。
    • 4. 发明授权
    • Muffler
    • 围巾
    • US5399817A
    • 1995-03-21
    • US39477
    • 1993-04-26
    • Hanns-Peter BergesLothar BrennerHartmut KriehnSascha Bauer
    • Hanns-Peter BergesLothar BrennerHartmut KriehnSascha Bauer
    • F01N1/00F01N1/08F01N7/00F04C28/28F04C29/06F04C29/12F01N7/08
    • F04C29/06
    • A muffler arrangement includes a muffler with an essentially cylindrical housing having a face end with a central entrance opening and at least one exit opening arranged other than centrally on the face end. Baffles are disposed within the housing, the baffles being concentrically arranged pipe cylinders which extend alternatingly into one another and are closed at one end, for effecting a multiple deflection of gases traveling from the central entrance opening to the at least one exit opening. A coupling structure is secured to the muffler housing, for carrying the muffler in an operating position. The coupling structure has a central passage for connecting the muffler to an exhaust outlet of a machine, and has an other than central channel, surrounding the central passage, for connection to an exhaust gas output conduit for outputting exhaust gases from the muffler arrangement. The at least one exit opening of the muffler is thereby connected by way of the other than central channel with the exhaust gas output conduit.
    • PCT No.PCT / EP91 / 01991 Sec。 371日期:1993年4月26日 102(e)日期1993年4月26日PCT 1991年10月19日PCT PCT。 公开号WO92 / 08053 日本1991年5月14日。消声器装置包括具有基本圆柱形壳体的消音器,所述消音器具有带有中心入口开口的面端部和在面部端部不同于中心设置的至少一个出口。 挡板设置在壳体内,挡板是同心布置的管筒,它们交替地彼此延伸并且在一端封闭,用于实现从中心入口到所述至少一个出口的多个偏转。 联接结构被固定到消声器壳体上,用于将消声器运送在操作位置。 联接结构具有用于将消音器连接到机器的排气出口的中心通道,并且具有围绕中心通道的除了中心通道之外的中心通道,用于连接到废气输出管道,用于输出来自消声器装置的废气。 因此,消音器的至少一个出口通过与排气输出导管相连接而不是中心通道。
    • 7. 发明授权
    • Dry-running twin-shaft vacuum pump
    • 干式双轴真空泵
    • US5364245A
    • 1994-11-15
    • US74858
    • 1993-06-08
    • Hartmut KriehnLothar Brenner
    • Hartmut KriehnLothar Brenner
    • F04C23/00F04C25/00F04C27/00F01C1/30
    • F04C23/001F04C27/009
    • Dry-running twin-shaft vacuum pump (1) with at least one pumping chamber (11, 12, 13), with a rotor pair (4-5, 6-7, 8-9) situated in the pumping chamber and borne by the shafts, and with a drive housing (21); in the pumping of toxic media, to limit the contaminated areas to components that are easy to assemble it is proposed that between the drive housing (21) and the adjoining pumping chamber (13) an intermediate plate be provided, which is traversed by the shafts (2, 3), contains the laterally exiting exhaust duct (52), and is releasable from the wall (17) of the drive housing (21).
    • PCT No.PCT / EP92 / 00211 Sec。 371日期:1993年6月8日 102(e)日期1993年6月8日PCT提交1992年1月31日PCT公布。 出版物WO92 / 14060 PCT 日期:1992年8月20日。具有至少一个泵室(11,12,13)的带有转子对(4-5,6-7,8-9)的运行中的双轴真空泵(1) 在泵送室中并由轴承载,并具有驱动壳体(21); 在有毒介质的泵送中,为了将受污染的区域限制在容易组装的部件上,建议在驱动壳体(21)和相邻的泵送室(13)之间设置中间板,该中间板由轴 (2,3)包含横向排出的排气管道(52),并且可从驱动器壳体(21)的壁(17)释放。