NZ577485A

Compact low noise efficient blower for CPAP devices with a shield to prevent a line-of-sight path within

Abstract

A volute blower (400) for a non-invasive ventilation device is disclosed. Conventional blowers use a design where the air leaves the volute tangentially. A disadvantage of this blower design is it tends to produce blade pass tonal and turbulence noises. To minimise the production of these types of noises the air passing from a first impeller blade (450) is guided to a vane structure (485) following it which modifies the air flow from the tangential flow induced by the impeller (450) to an axial flow. Merely placing the impeller (450) and vane structure (485) side by side creates its own noise though and this needs to be prevented. This is achieved by a shield (490) preventing a line-of-sight connection between the two. The impeller blade pressure pulse is thus prevented from interacting with the vane leading edges and creating noise and air leaving the blower (400) has the desired axial flow. The blower may have a second impeller (452) and vane structure (487), both impellers being driven by a singe motor (440). Air is drawn in through the axial inlet (430) and exits through an axial outlet on the other end of the housing.

NZ577485A, drawing sheet 1
Sheet 1 of 26

Term

0.7 yearsto projected expiry

Projected expiry 24 May 2027, counted from filing; an application has no term until it is granted.

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

32 claims: 19 independent, 13 dependent

  1. 1
    CLAIMS:1. A blower for a non-invasive ventilation device comprising: an electric motor having a shaft, said shaft defines a shaft axis;a housing having a housing inlet and a housing outlet between which is defined a flow path for gas;the housing outlet is structured to direct gas exiting the blower in a substantially axial first direction;the motor has a first side proximal said housing inlet, and a second side distal said housing inlet;a first impeller having a plurality of blades adapted to accelerate gas tangentially and to direct it radially outward and being attached to the shaft on the first side of the motor;a stationary portion including: a gas flow path defined between the motor external wall and a wall of the stationary portion, said flow path being of sufficient width to allow a flow of gas therethrough without introducing excessive pressure drop, said flow path directing gas to flow in a generally axial direction from the first side of the motor to the second side of the motor;a first stationary vane structure located downstream of the first impeller, the first stationary vane structure adapted to direct gas exiting the first impeller from flowing in a substantially tangential direction to flowing in both a radial and axial direction;and a shield adapted to prevent any line-of-sight path between the first stationary vane structure and the blades of the first impeller to isolate leading edges of the first stationary vane structure from an impeller blade pressure pulse.
  2. 3
    The blower of any one of claims 1 -2, wherein the first stationary vane structure includes a plurality of stator vanes.
  3. 4
    The blower of any one of claims 1 -3 wherein the shield is a circular disc. Received at IPONZ 1 December 2010
  4. 5
    The blower of any one of claims 1 -4 wherein the shield extends radially beyond the outer edge of the first stationary vane structure.
  5. 6
    The blower of any one of claims 1 -5 wherein the shield is integral to the first impeller such that a lower shroud of the first impeller acts as a rotating shield.
  6. 7
    The blower of any one of claims 1-6 wherein there is an annular gap between the outer edge of the shield and the wall of the stationary portion.
  7. 9
    The blower of any one of claims 1 -8 wherein the shield is welded to the first stator vane structure.
  8. 10
    The blower of any one of claims 1 -9 wherein the first stator vane structure is on the first side of the motor.
  9. 11
    The blower of any one of claims 1 -9 wherein the first stator vane structure is on the second side of the motor.
  10. 12
    The blower of any one of claims 1-11 wherein the width of the flow path defined between the motor external wall and a wall of the stationary portion is between 0.1 mm and 100 mm.
  11. 14
    The blower of any one of claims 1-13, further comprising a second impeller coupled to the shaft and adapted to receive a flow of gas flowing in said first direction exiting from said first stationary vane structure.
  12. 16
    The blower of any one of claims 14-15, wherein the second impeller is attached to the shaft on said second side of the motor. Received at IPONZ 1 December 2010
  13. 17
    The blower of any one of claims 14-16, wherein said stationary portion is further adapted to direct gas exiting said second impeller through an annular gap between an outer edge of the second impeller and a wall of the stationary portion.
  14. 18
    The blower of any one of claims 14-17, further comprising a second stationary vane structure constructed to promote a smooth transition by guiding the gas flow direction from a substantially tangential direction to a substantially radial inward direction, a leading edge of said second stationary vane structure is axially displaced from said second impeller.
  15. 21
    The blower of any one of claims 1-20 wherein the first impeller has a diameter in the range of 20 mm to 200 mm.
  16. 23
    The blower according to claims 14-20 wherein the second impeller has a diameter in the range of 20 mm to 200 mm.
  17. 25
    The blower of any one of claims 14-24, further comprising a shield located between said second impeller and said second stationary vane structure, said shield extends radially beyond an outer edge of said second stationary vane structure.
  18. 28
    The blower of any one of claims 1-27, wherein said first stationary vane structure comprises between 2 and 100 stator vanes.
  19. 31
    A CPAP apparatus for supplying air at positive pressure to a patient comprising a blower according to any one of claims 1-30.
Independent claims19