Nova Patents
WO9101034A2

An acoustic liner

Abstract

An acoustic liner comprising a sound permeable inside plate forming a first closed annulus, and a sound impermeable outside plate forming a second closed annulus located outside of and extending around the first closed annulus. The inside and outside plates are spaced apart and thus form an annular chamber therebetween; and a core member is secured in this annular chamber, between the inside and outside plates. The core member forms or has the shape of a sine wave form annularly extending around the inside plate, and the core member and the inside plate form a multitude of varying depth sound absorption chambers to attenuate sound waves over a broad band of frequencies.

WO9101034A2, drawing sheet 1
Sheet 1 of 4

Term

No projected expiry on record.

  1. Priority and filed
  2. Published
  3. Today

17 claims: 10 independent, 7 dependent

  1. 1
    WHAT IS CLAIMED IS; 1. An acoustic liner comprising:a sound permeable inside plate forming a first closed annulus;a sound impermeable outside plate forming a second closed annulus located outside of and extending around the first closed annulus, the inside and outside plates being spaced apart and forming an annular chamber therebetween;and a core member secured in the annular chamber, between the inside and outside plates, the core member forming a sinusoidal waveform annularly extending around the inside ' plate, wherein the core member and the inside plate form a multitude of varying depth sound absorption chambers to attenuate sound waves over a broad range of frequencies.
  2. 3
    An acoustic liner according to claims 1 or 2 wherein:the closed annular chamber defines an axis;and the core member forms a multitude of inside and outside axially extending edges.
  3. 5
    An acoustic liner according to claims 3 or 4, wherein:the inside edges of the core member are secured to the inside plate;and the outside edges of the core member are secured to the outside plate.
  4. 7
    An acoustic liner according to any preceeding claim, further comprising a multitude of honeycomb structures located in the sound absorption chambers to further attenuate the sound waves.
  5. 9
    An acoustic liner according to any preceeding claim, further comprising a bulk sound absorbing material located in the outer chambers to further attenuate the sound waves.
  6. 11
    A jet engine having an axially and circumferentially extending shroud defining an engine axis, a fan rotatably mounted inside the shroud, a compressor and a turbine secured within the shroud, and an acoustic liner circumferentially extending around the engine axis to attenuate sound waves generated in the engine, the acoustic liner comprising:a sound permeable inside plate circumferentially extending completely around the engine axis;a sound impermeable outside plate circumferentially extending completely around the engine axis, concentric with and radially spaced from the inside plate;and a core member secured between the inside and outside plates, and having the shape of a sinusoidal waveform circumferentially extending completely around the engine axis, wherein the core member and the inside plate form a multitude of varying depth sound absorption chambers to attenuate,sound waves over a broad range of frequencies.
  7. 13
    An acoustic liner according to claims 11 or 12, wherein:the core member includes a multitude of inside and outside axially extending edges;the inside edges are secured to the inside plate;and the outside edges are secured to the outside plate.
  8. 14
    An acoustic liner according to claims 11, 12 or 13, wherein the core member is sound impermeable and comprises a multitude of layers of reinforced carbon fibers.
  9. 15
    A jet engine according to claims 11, 12, 13 or 14, further comprising a multitude of honeycomb structures located in the sound absorption chambers to further attentuate the sound waves.
  10. 17
    A jet engine according to any of claims 11-16, further comprising a bulk sound absorbing material located in the outer chambers to further attenuate the sound waves.