Nova Patents
EP0903835A1

Axial flow pump/marine propeller

Abstract

An axial flow pump/marine propeller (10; 100; 200; 300; 400) has a pump body carrying a stator (20; 120; 220; 320; 420) which defines a cylindrical inner space, a rotor member (40; 140; 260; 360; 460) being rotatably located in the inner space, and electromagnetic means (24, 26, 44; 124, 126, 144) arranged between the stator and the rotor for generating a rotational magnetic field to drive the rotor to rotate. The rotor has a hollow structure with one or more propelling blades (48; 148; 283; 366) for driving the fluid to flow along the central axis of the pump. This arrangement provides a driving force which produces minimum fluid disturbance and drag therefore a high energy efficiency. The rotor is supported in the pump body by a suspension bearing mechanism which provide rotational and thrust bearing in response to the rotor's rotational and/or axial movements to retain the rotor at a balanced position. In the disclosed embodiments, the bearing means can be formed by mechanical (50; 380; 480), magnetic (150; 190; 240; 250) or hydraulic (49; 149; 270; 356) mechanisms, or a combination of any of them, which keep the rotor fully suspended in and coaxially aligned with the pump body during its operation while at the same time reduce the friction and wear of the rotating parts. By using the magnetic and/or hydraulic suspension to support the rotor, it also avoids the problems and costs of having sealing and lubricating arrangements for the rotary parts, therefore reduce both the manufacturing and maintenance costs. Further arrangements (160, 166) are incorporated into the structure to automatically adjust the axial position of the rotor when it is fully suspended by the hydraulic and/or magnetic mechanisms. Compressible spiral blades can be used to cope with frequent changes of electric inputs and/or output loads. Some of the disclosed embodiments provide clog-free structures suitable for a wide range of applications, such as sewerage pump, sludge pump or marine propeller. An arrangement of two anti-spiral driving members (366, 370; 466, 470) are disclosed for high pressure applications. <IMAGE>

EP0903835A1, drawing sheet 1
Sheet 1 of 17

Term

Term ended

Projected expiry passed 29 March 2016, 10.5 years ago.

  1. Priority
  2. Filed
  3. Published
  4. Projected expiry
  5. Today

17 claims: 9 independent, 8 dependent

  1. 1
    An axial flow pump/marine propeller (10; 100; 200; 300; 400) characterised by comprising:a hollow body with a stator (20;120;220;320;420) defining an inner space;a rotor (40;140;260;360;460) with propelling means (48;148;283;366) in the inner space;and electromagnetic means (24, 26, 44;124, 126, 144) for generating a rotational magnetic field in said inner space;wherein the rotor is supported by suspension means for rotational and thrust bearing to retain it at a balanced position in response to its rotational and/or axial movements.
  2. 3
    An apparatus of any preceding claim, further comprising sealing means at each end of the rotor to seal said gap, so that a lubricating and/or cooling liquid can be filled in the sealed gap.
  3. 5
    An apparatus of any preceding claim, wherein annular members of high magnetic resistance are fitted to corresponding positions on the stator and rotor to form a magnetic registration mechanism therebetween.
  4. 6
    An apparatus of any preceding claim, wherein said bearing means include magnetic suspension arrangement comprising:magnetic means annularly arranged on said stator and matching magnetic means arranged on said rotor so as to form repelling or attracting suspension forces therebetween.
  5. 10
    An apparatus of any preceding claim, wherein a throttle ring is fitted to an axial end of said rotor, which ring restricts the peripheral flow when the rotor moves towards that end.
  6. 11
    An apparatus of any preceding claim, wherein the suspension bearing includes flow dividing means for forming two opposite peripheral flows, so as to keep the rotor's position self-balanced.
  7. 12
    An apparatus of any of the preceding claim, wherein said propelling means includes one or more flexible helical blades which are compressible in response to changes of power input or working load.
  8. 14
    An apparatus of any preceding claim, wherein said propelling means includes two coaxial helical means in opposite spiral directions so as to cancel each other's swirling effects and produce high pressure output.
  9. 17
    An apparatus of any the preceding claim, wherein said propelling means includes a conical impeller.