IP Library › Granted Patent US 10,994,824
Granted Patent B2
US 10,994,824 · App. 16/852,841 · Granted May 4, 2021

Fused porogen process for acoustic septa fabrication

Inventors: Erin E. Stache (Glendale, CA); Eric Herrera (Mukiteo, WA); Larken E. Cumberland (Mailbu, CA); Shahriar Alam (Chandler, AZ); Christopher S. Roper (Oak Park, CA); Geoffrey McKnight (Malibu, CA)
Assignee: The Boeing Company
B64C1/40B29C33/52B29D24/005B32B3/12E04C2/365F02C7/045F02C7/24G10K11/168G10K11/172
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Quick Facts
Patent No.
US 10,994,824
App. No.
16/852,841
Granted
May 4, 2021
Kind
B2
Abstract

An example method for manufacturing a multicellular structure for acoustic damping is described that includes applying a porogen material to a solid support, inserting a multicellular frame into the solid support and through the porogen material so as to fill cells of the multicellular frame with the porogen material, fusing the porogen material, removing the multicellular frame from the solid support, and the multicellular frame contains a suspended fused porogen network attached to walls of the cells of the multicellular frame. The method also includes applying a solution to the suspended fused porogen network in the cells of the multicellular frame to percolate the suspended fused porogen network, curing the solution, and removing the suspended fused porogen network from the multicellular frame resulting in porous septum membranes of the cured solution in cells of the multicellular frame.

Claims (24)

1. An aircraft comprising an acoustic modifying structure, the acoustic modifying structure comprising:

a multicellular frame; and

at least one porous septum membrane positioned in lumen of cells of the multicellular frame, wherein the at least one porous septum membrane comprises a substantially continuous matrix, and wherein the at least one porous septum membrane includes pores with a size less than about 25% of a thickness of the septum membrane, wherein the at least one porous septum membrane comprises a porogen material.

2. The aircraft of claim 1 , wherein the acoustic modifying structure comprises one of a nacelle, an engine inlet, and an exhaust structure.

3. The aircraft of claim 1 , wherein the multicellular frame comprises a honeycomb frame.

4. The aircraft of claim 1 , wherein the at least one porous septum membrane includes pores in a range of about 1 μm to about 175 μm.

5. The aircraft of claim 1 , wherein the at least one porous septum membrane includes pores in a thickness of about 1.0 mm to about 5.0 mm.

6. The aircraft of claim 1 , wherein the pores within one porous membrane within one lumen are interconnected.

7. The aircraft of claim 1 , wherein a single lumen contains two separate porous membranes.

8. The aircraft of claim 1 , wherein the at least one porous septum membrane comprises the porogen material selected from a type of material consisting of a salt, a sugar, an organic solid, and a polymer particle.

9. The aircraft of claim 8 , wherein the porogen material is selected from a type of material consisting of a cubic particle, a spherical particle, an amorphous particle, a rod particle, a whisker-like particle, a leachable particle, and a non-removable polymer particle.

10. The aircraft of claim 1 , wherein the at least one porous septum membrane creates a pressure barrier for controlling transmission of acoustic noise.

11. The aircraft of claim 1 , wherein the at least one porous septum membrane creates a flow restrictor for controlling transmission of acoustic noise.

12. The aircraft of claim 1 , wherein the at least one porous septum membrane creates a resonant cavity for controlling transmission of acoustic noise.

13. An aircraft comprising an acoustic modifying structure, the acoustic modifying structure comprising:

a multicellular frame; and

at least one porous septum membrane positioned in lumen of cells of the multicellular frame, wherein the at least one porous septum membrane has a thickness of about 1.0 mm to about 5.0 mm and wherein the at least one porous septum membrane has pores with a size less than about 25% of the thickness of the septum membrane, wherein the at least one porous septum membrane comprises a porogen material.

14. The aircraft of claim 13 , wherein the at least one porous septum membrane has pores with a size less than about 15% of the thickness of the septum membrane.

15. The aircraft of claim 13 , wherein the at least one porous septum membrane includes pores in a range of about 1 μm to about 175 μm.

16. The aircraft of claim 13 , wherein the pores within one porous membrane within one lumen are interconnected.

17. The aircraft of claim 13 , wherein a single lumen contains two separate porous membranes.

18. The aircraft of claim 13 , wherein the porogen material is selected from a type of material consisting of a cubic particle, a spherical particle, an amorphous particle, a rod particle, a whisker-like particle, a leachable particle, and a non-removable polymer particle.

19. The aircraft of claim 13 , wherein the at least one porous septum membrane creates one or more of a pressure barrier, a flow restrictor, and a resonant cavity for controlling transmission of acoustic noise.

20. The aircraft of claim 13 , wherein the multicellular frame comprises a honeycomb frame.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 20, 2020
From: STACHE, ERIN E.; HERRERA, ERIC; CUMBERLAND, LARKEN E.; ALAM, SHAHRIAR; ROPER, CHRISTOPHER S.; MCKNIGHT, GEOFFREY
To: THE BOEING COMPANY
Reel/Frame 052442/0807 →
Continuity (3)
Division 16415366 · May 17, 2019
Division 14641537 · Mar 9, 2015
Related Publication 20200247524A1 · Aug 6, 2020