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    • 5. 发明公开
    • SCREW PUMP AND SCREW ROTOR
    • SCHNECKENPUMPE UND SCHNECKENROTOR
    • EP2060789A1
    • 2009-05-20
    • EP07806598.4
    • 2007-09-03
    • KABUSHIKI KAISHA TOYOTA JIDOSHOKKI
    • IZAWA, YuyaYAMAMOTO, ShinyaINAGAKI, MasahiroYOSHIKAWA, Makoto
    • F04C2/16F04C18/16
    • F04C2/107F04C2/16
    • A cross section of a tooth profile of a first screw rotor (17) perpendicular to the rotor axis includes a tooth top arc (A1B1), a tooth bottom arc (C1D1), a first curve (A1C1), and a second curve (B1D1). The first curve (A1C1) is a first trochoidal curve that connects a first end (A1) of the tooth top arc (A1B1) to a second end (C1) of the tooth bottom arc (C1D1). The second curve (B1D1) connects the second end (B1) of the tooth top arc (A1B1) to the first end (D1) of the tooth bottom arc (C1D1). The second curve (B1D1) is a composite curve formed by an involute curve (B1E1) and a second trochoidal curve (E1D1), which extend continuously from each other at a first intersection point (E1). A screw pump (11) thus suppresses leakage of fluid with improved performance.
    • 垂直于转子轴线的第一螺杆转子(17)的齿廓的横截面包括齿顶弧(A1B1),齿底弧(C1D1),第一曲线(A1C1)和第二曲线(B1D1 )。 第一曲线(A1C1)是将齿顶弧(A1B1)的第一端(A1)与齿底弧(C1D1)的第二端(C1)连接的第一次摆线曲线。 第二曲线(B1D1)将齿顶弧(A1B1)的第二端(B1)与齿底弧(C1D1)的第一端(D1)连接。 第二曲线(B1D1)是通过在第一交点(E1)处彼此连续延伸的渐开线曲线(B1E1)和第二次摆线曲线(E1D1)形成的复合曲线。 因此,螺杆泵(11)能够以改进的性能来抑制流体泄漏。
    • 6. 发明公开
    • SCREW-TYPE FLUID MACHINE
    • 螺杆式流体机
    • EP1967734A1
    • 2008-09-10
    • EP06843248.3
    • 2006-12-26
    • KABUSHIKI KAISHA TOYOTA JIDOSHOKKI
    • YAMAMOTO, ShinyaKOSHIZAKA, RyosukeISHIHARA, KentaroINAGAKI, MasahiroIZAWA, Yuya
    • F04C18/16F04C25/02F04C29/02
    • F04C29/025F04C18/16F04C29/023F04C29/04F04C2220/10
    • A vacuum pump includes rotary shafts connected to a pair of screw-type rotors, respectively, and a pair of shaft retainers extending in the housing. Each shaft retainer supports the corresponding rotary shaft by means of a proximal bearing portion and a distal bearing portion. Each pair of the proximal and distal bearing portions are fixed in the axial direction with respect to the corresponding rotary shaft and shaft retainer. Lubricant oil is stored in an oil storage space in a gear case attached to the housing. A cooling water passage through which cooling water to cool the lubricant oil passes is formed in the gear case. A solenoid valve controls the flow rate of cooling water in the cooling water passage. A temperature sensor is provided in the oil storage space and detects the temperature of the lubricant oil. A controller controls the solenoid valve in accordance with the temperature detected by the temperature sensor, so that the temperature of the lubricant oil in the oil storage space is kept constant. With this configuration, when the bearing portions are fixed in the axial direction with respect to the rotary shafts and the shaft retainers, it is possible to prevent load from being applied to the bearing portions in the axial direction.
    • 真空泵包括分别连接到一对螺旋型转子的旋转轴和在外壳中延伸的一对轴保持器。 每个轴保持器通过近侧轴承部分和远侧轴承部分支撑相应的旋转轴。 每对近端和远端轴承部分相对于相应的旋转轴和轴保持器沿轴向固定。 润滑油储存在连接到壳体的齿轮箱中的储油空间中。 在齿轮箱内形成冷却水通道,冷却润滑油的冷却水通过该冷却水通道。 电磁阀控制冷却水通道中的冷却水的流量。 在储油空间中设置温度传感器并检测润滑油的温度。 控制器根据由温度传感器检测到的温度来控制电磁阀,使得储油空间中的润滑油的温度保持恒定。 由此,在将轴承部相对于旋转轴以及轴保持器沿轴向固定的情况下,能够防止轴承部向轴向施加载荷。