IP Library Granted Patent US 11,524,792
Granted Patent B2
US 11,524,792 · App. 16/606,859 · Granted Dec 13, 2022

Surface trim for acoustic absorption

Inventor: Frank Simon (Toulouse, FR)
Assignee: OFFICE NATIONAL D'ETUDES ET DE RECHERCHES AEROSPATIALES
B64D29/00G10K11/162G10K11/172
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Quick Facts
Patent No.
US 11,524,792
App. No.
16/606,859
Granted
Dec 13, 2022
Kind
B2
Abstract

A surface liner member includes an external wall which is provided with multiple holes, a spacer structure, and tubes which are respectively associated with the holes in the external wall. The surface liner member is intended to be applied to a base surface in order to reduce, by acoustic absorption, an acoustic wave reflected on this base surface. The acoustic absorption efficiency is improved, particularly for frequencies below 500 Hz, by varying the shape of the holes in the external wall such that the ratio of the hole perimeter to the hole area varies. Such a surface liner member may be adapted to form a surface portion of an aircraft engine nacelle, or of a leading edge of an aircraft wing.

Claims (24)

1. A surface liner member to be applied to a base surface to reduce, by acoustic absorption, an acoustic wave reflected on the base surface through the surface liner member, said surface liner member comprising:

an external wall provided with multiple holes, each hole of the multiple holes individually forming an open passage through said external wall;

a spacer structure connected to an inner face of the external wall and adapted to set a gap between said external wall and the base surface so as to form at least one acoustic cavity between the inner face of the external wall and the base surface; and

tubes connected to the external wall, and which extend into the acoustic cavity from the inner face of said external wall towards the base surface, two opposite ends of each tube of said tubes being open and being dedicated to one of the holes in the external wall with a hole section that is contained in an inner section of the tube at the external wall, wherein a length of each tube is smaller than the gap between the external wall and the base surface, said tube length being measured in a direction perpendicular to the inner face of said external wall, so that at least 10% of the gap between the external wall and the base surface, against said base surface, is devoid of tubes, and

wherein a subset of the holes in the external wall have different cross-sectional shapes, such that a quotient of a hole cross-sectional perimeter divided by a hole cross-sectional area varies between at least some of said holes so that an apparent total acoustic absorption peak of the surface liner member is broadened for acoustic wave frequencies that are less than 500 Hz.

2. The surface liner member according to claim 1 , wherein at least some of the tubes have respective lengths which are different, each measured in the direction perpendicular to the inner face of the external wall.

3. The surface liner member according to claim 1 , wherein each tube extends perpendicularly to the inner face of the external wall.

4. The surface liner member according to claim 1 , wherein the length of each tube is less than the gap between the external wall and the base surface, by a distance of between 2 mm and 40 mm, in the direction perpendicular to the inner face of said external wall.

5. The surface liner member according to claim 1 , wherein the internal cross-section of at least one of the tubes varies as a function of the distance measured from the inner face of the external wall along the direction perpendicular to said inner face of the external wall.

6. The surface liner member according to claim 1 , wherein a peripheral edge of at least one of the holes is a polygon with more than four sides.

7. The surface liner member according to claim 6 , wherein the peripheral edge of at least one of the holes has a fractal pattern of second order or higher than second order.

8. The surface liner member according to claim 1 , having a shape adapted to form a surface portion of one of an aircraft engine nacelle, a portion of a leading edge of an aircraft wing, a portion of an acoustic absorption device for an air conditioning system, and a portion of a blower inner wall.

9. The surface liner member according to claim 1 , wherein one end of the spacer structure which is opposite to the external wall is adapted to be bonded to the base surface.

10. A method for manufacturing a surface liner member which is in accordance with claim 1 , wherein the tubes are formed by a method of three-dimensional printing or injection molding from the inner face of the external wall.

11. The surface liner member according to claim 2 , wherein each tube extends perpendicularly to the inner face of the external wall.

12. The surface liner member according to claim 2 , wherein the length of each tube is less than the gap between the external wall and the base surface, by a distance of between 2 mm and 40 mm, in the direction perpendicular to the inner face of said external wall.

13. The surface liner member according to claim 3 , wherein the length of each tube is less than the gap between the external wall and the base surface, by a distance of between 2 mm and 40 mm, in the direction perpendicular to the inner face of said external wall.

14. The surface liner member according to claim 2 , wherein the internal cross-section of at least one of the tubes varies as a function of the distance measured from the inner face of the external wall along the direction perpendicular to said inner face of the external wall.

15. The surface liner member according to claim 3 , wherein the internal cross-section of at least one of the tubes varies as a function of the distance measured from the inner face of the external wall along the direction perpendicular to said inner face of the external wall.

16. The surface liner member according to claim 4 , wherein the internal cross-section of at least one of the tubes varies as a function of the distance measured from the inner face of the external wall along the direction perpendicular to said inner face of the external wall.

17. The surface liner member according to claim 2 , wherein a peripheral edge of at least one of the holes is a polygon with more than four sides.

18. The surface liner member according to claim 3 , wherein a peripheral edge of at least one of the holes is a polygon with more than four sides.

19. The surface liner member according to claim 4 , wherein a peripheral edge of at least one of the holes is a polygon with more than four sides.

20. The surface liner member according to claim 5 , wherein a peripheral edge of at least one of the holes is a polygon with more than four sides.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 25, 2020
From: SIMON, FRANK
To: OFFICE NATIONAL D'ETUDES ET DE RECHERCHES AEROSPATIALES
Reel/Frame 051913/0601 →
Priority Claims (1)
FR 17 53489 · Apr 21, 2017 · national
Continuity (1)
Related Publication 20200130854A1 · Apr 30, 2020
Cited By (3)
US 12,211,477 US 12,444,395 US 12,623,769