Acoustic liners with oblique cellular structures
The present disclosure provides acoustic structures and related systems and methods which may be used to dampen or attenuate sound waves, including, for example, noise generated by or emanating from various aspects or components of turbomachines such as turbine engines. These acoustic structures include oblique polyhedral cellular structures, including converging polyhedral cells and diverging polyhedral cells, and related systems and methods of making and using such acoustic structures.
1. An acoustic liner comprising:
a core layer comprising a plurality of strips of core material folded to form an array of oblique polyhedral cellular structures, the array of oblique polyhedral cellular structures comprising:
a plurality of converging polyhedral cells; and
a plurality of diverging polyhedral cells;
wherein at least some of the plurality of converging polyhedral cells are bisected by a polygonal bottom face and/or at least some of the plurality of diverging polyhedral cells bisected by a polygonal top face; and
wherein the array of oblique polyhedral cellular structures comprises hollow cellular structures.
2. The acoustic liner of claim 1 , further comprising:
a face sheet; and
a back sheet, wherein the core layer is positioned between the face sheet and the back sheet.
3. The acoustic liner of claim 1 , wherein the array of oblique polyhedral cellular structures comprises oblique polyhedral cellular structures combined with parallel polyhedral cellular structures, the parallel polyhedral cellular structures comprising a right prism.
4. The acoustic liner of claim 1 , wherein at least some of the converging polyhedral cells and/or at least some of the diverging polyhedral cells comprise a pyramid or wedge.
5. The acoustic liner of claim 1 , wherein at least some of the converging polyhedral cells and/or at least some of the diverging polyhedral cells comprise a frustum or a frustal polyhedron.
6. The acoustic liner of claim 5 , wherein the frustum or frustal polyhedron comprises: a trigonal frustum, a tetragonal frustum, a pentagonal frustum, a hexagonal frustum, a heptagonal frustum, an octagonal frustum, a nonagonal frustum, a decagonal frustum, a hendecagonal frustum, or a dodecagonal frustum.
7. The acoustic liner of claim 5 , wherein at least some of the converging polyhedral cells comprise a frustum factor of less than 1.0 and/or at least some of the diverging polyhedral cells comprise a frustum factor of greater than 1.0.
8. The acoustic liner of claim 2 , wherein at least some of the converging polyhedral cells and/or at least some of the diverging polyhedral cells comprise at least one lateral face perpendicular to a top face and/or a bottom face of the converging or diverging polyhedral cells, the top face oriented towards the inside surface of the face sheet and the bottom face oriented towards the inside surface of the back sheet.
9. The acoustic liner of claim 1 , wherein at least a portion of the acoustic liner comprises a flat planar profile and/or a curvilinear planar profile.
10. The acoustic liner of claim 1 , wherein at least some of the converging polyhedral cells comprise a convergence angle of within a range from 1 to 30 degrees.
11. The acoustic liner of claim 1 , wherein:
at least some of the converging polyhedral cells comprise a hexagonal top face; and
at least some of the diverging polyhedral cells comprise a tetragonal bottom face.
12. The acoustic liner of claim 11 , wherein:
at least some of the converging polyhedral cells comprise a plurality of lateral faces bisected by a hexagonal bottom face.
13. The acoustic liner of claim 11 , wherein:
at least some of the converging polyhedral cells comprise a plurality of lateral faces converging at a lateral bottom edge.
14. The acoustic liner of claim 11 , wherein:
at least some of the diverging polyhedral cells comprise a plurality of lateral faces bisected by a hexagonal top face.
15. The acoustic liner of claim 11 , wherein:
at least some of the diverging polyhedral cells comprise a plurality of lateral faces bisected by a tetragonal bottom face.
16. The acoustic liner of claim 1 , wherein the plurality of strips of core material in their unfolded state exhibit one or more of a linear configuration, or a curvilinear configuration, the curvilinear configuration comprising one or more of a circular configuration, and elliptical configuration, a spiral configuration, and an oscillating configuration.
17. The acoustic liner of claim 1 , wherein the core material comprises one or more of a synthetic fiber and a metal alloy.
18. The acoustic liner of claim 17 , wherein the synthetic fiber comprises one or more of: aramid fiber, meta-aramid fiber, para-aramid fiber, carbon fiber, polyethylene fiber, rayon, polyester, and nylon.
19. A turbomachine comprising:
a turbine; and
a nacelle surrounding the turbine, the nacelle defining an inlet and a fan duct having a duct inner wall; and
one or more acoustic liners disposed annularly along the duct inner wall, at least one of the one or more acoustic liners comprising a core layer having a plurality of strips of core material folded to form an array of oblique polyhedral cellular structures, the array of oblique polyhedral cellular structures comprising:
a plurality of converging polyhedral cells; and
a plurality of diverging polyhedral cells;
wherein at least some of the plurality of converging polyhedral cells are bisected by a polygonal bottom face and/or at least some of the plurality of diverging polyhedral cells bisected by a polygonal top face; and
wherein the array of oblique polyhedral cellular structures comprises hollow cellular structures.
20. A method of forming a core layer for use in an acoustic liner, the method comprising:
forming a plurality of strips of core material;
selectively adhering the plurality of strips of core material to one another at a multitude of adherence regions located at selected length intervals along respective strips; and
concurrently or subsequently folding each of the plurality of strips of core material, thereby separating the respective strips of core material from one another at a multitude of expansion regions respectively located between the multitude of adherence regions, to form an array of oblique polyhedral cellular structures, the array of oblique polyhedral cellular structures comprising:
a plurality of converging polyhedral cells; and
a plurality of diverging polyhedral cells;
wherein at least some of the plurality of converging polyhedral cells are bisected by a polygonal bottom face and/or at least some of the plurality of diverging polyhedral cells bisected by a polygonal top face; and
wherein the array of oblique polyhedral cellular structures comprises hollow cellular structures.