EP4169013A1 - Panneau acoustique et procede de fabrication associe - Google Patents
Panneau acoustique et procede de fabrication associeInfo
- Publication number
- EP4169013A1 EP4169013A1 EP21742162.7A EP21742162A EP4169013A1 EP 4169013 A1 EP4169013 A1 EP 4169013A1 EP 21742162 A EP21742162 A EP 21742162A EP 4169013 A1 EP4169013 A1 EP 4169013A1
- Authority
- EP
- European Patent Office
- Prior art keywords
- acoustic panel
- cavities
- orifice
- cavity
- structures
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Pending
Links
Classifications
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- G—PHYSICS
- G10—MUSICAL INSTRUMENTS; ACOUSTICS
- G10K—SOUND-PRODUCING DEVICES; METHODS OR DEVICES FOR PROTECTING AGAINST, OR FOR DAMPING, NOISE OR OTHER ACOUSTIC WAVES IN GENERAL; ACOUSTICS NOT OTHERWISE PROVIDED FOR
- G10K11/00—Methods or devices for transmitting, conducting or directing sound in general; Methods or devices for protecting against, or for damping, noise or other acoustic waves in general
- G10K11/16—Methods or devices for protecting against, or for damping, noise or other acoustic waves in general
- G10K11/172—Methods or devices for protecting against, or for damping, noise or other acoustic waves in general using resonance effects
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B32—LAYERED PRODUCTS
- B32B—LAYERED PRODUCTS, i.e. PRODUCTS BUILT-UP OF STRATA OF FLAT OR NON-FLAT, e.g. CELLULAR OR HONEYCOMB, FORM
- B32B1/00—Layered products having a non-planar shape
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B32—LAYERED PRODUCTS
- B32B—LAYERED PRODUCTS, i.e. PRODUCTS BUILT-UP OF STRATA OF FLAT OR NON-FLAT, e.g. CELLULAR OR HONEYCOMB, FORM
- B32B27/00—Layered products comprising a layer of synthetic resin
- B32B27/06—Layered products comprising a layer of synthetic resin as the main or only constituent of a layer, which is next to another layer of the same or of a different material
- B32B27/08—Layered products comprising a layer of synthetic resin as the main or only constituent of a layer, which is next to another layer of the same or of a different material of synthetic resin
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B32—LAYERED PRODUCTS
- B32B—LAYERED PRODUCTS, i.e. PRODUCTS BUILT-UP OF STRATA OF FLAT OR NON-FLAT, e.g. CELLULAR OR HONEYCOMB, FORM
- B32B27/00—Layered products comprising a layer of synthetic resin
- B32B27/18—Layered products comprising a layer of synthetic resin characterised by the use of special additives
- B32B27/20—Layered products comprising a layer of synthetic resin characterised by the use of special additives using fillers, pigments, thixotroping agents
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B32—LAYERED PRODUCTS
- B32B—LAYERED PRODUCTS, i.e. PRODUCTS BUILT-UP OF STRATA OF FLAT OR NON-FLAT, e.g. CELLULAR OR HONEYCOMB, FORM
- B32B27/00—Layered products comprising a layer of synthetic resin
- B32B27/34—Layered products comprising a layer of synthetic resin comprising polyamides
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B32—LAYERED PRODUCTS
- B32B—LAYERED PRODUCTS, i.e. PRODUCTS BUILT-UP OF STRATA OF FLAT OR NON-FLAT, e.g. CELLULAR OR HONEYCOMB, FORM
- B32B3/00—Layered products comprising a layer with external or internal discontinuities or unevennesses, or a layer of non-planar shape; Layered products comprising a layer having particular features of form
- B32B3/10—Layered products comprising a layer with external or internal discontinuities or unevennesses, or a layer of non-planar shape; Layered products comprising a layer having particular features of form characterised by a discontinuous layer, i.e. formed of separate pieces of material
- B32B3/12—Layered products comprising a layer with external or internal discontinuities or unevennesses, or a layer of non-planar shape; Layered products comprising a layer having particular features of form characterised by a discontinuous layer, i.e. formed of separate pieces of material characterised by a layer of regularly- arranged cells, e.g. a honeycomb structure
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B32—LAYERED PRODUCTS
- B32B—LAYERED PRODUCTS, i.e. PRODUCTS BUILT-UP OF STRATA OF FLAT OR NON-FLAT, e.g. CELLULAR OR HONEYCOMB, FORM
- B32B3/00—Layered products comprising a layer with external or internal discontinuities or unevennesses, or a layer of non-planar shape; Layered products comprising a layer having particular features of form
- B32B3/10—Layered products comprising a layer with external or internal discontinuities or unevennesses, or a layer of non-planar shape; Layered products comprising a layer having particular features of form characterised by a discontinuous layer, i.e. formed of separate pieces of material
- B32B3/18—Layered products comprising a layer with external or internal discontinuities or unevennesses, or a layer of non-planar shape; Layered products comprising a layer having particular features of form characterised by a discontinuous layer, i.e. formed of separate pieces of material characterised by an internal layer formed of separate pieces of material which are juxtaposed side-by-side
- B32B3/20—Layered products comprising a layer with external or internal discontinuities or unevennesses, or a layer of non-planar shape; Layered products comprising a layer having particular features of form characterised by a discontinuous layer, i.e. formed of separate pieces of material characterised by an internal layer formed of separate pieces of material which are juxtaposed side-by-side of hollow pieces, e.g. tubes; of pieces with channels or cavities
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B32—LAYERED PRODUCTS
- B32B—LAYERED PRODUCTS, i.e. PRODUCTS BUILT-UP OF STRATA OF FLAT OR NON-FLAT, e.g. CELLULAR OR HONEYCOMB, FORM
- B32B3/00—Layered products comprising a layer with external or internal discontinuities or unevennesses, or a layer of non-planar shape; Layered products comprising a layer having particular features of form
- B32B3/26—Layered products comprising a layer with external or internal discontinuities or unevennesses, or a layer of non-planar shape; Layered products comprising a layer having particular features of form characterised by a particular shape of the outline of the cross-section of a continuous layer; characterised by a layer with cavities or internal voids ; characterised by an apertured layer
- B32B3/266—Layered products comprising a layer with external or internal discontinuities or unevennesses, or a layer of non-planar shape; Layered products comprising a layer having particular features of form characterised by a particular shape of the outline of the cross-section of a continuous layer; characterised by a layer with cavities or internal voids ; characterised by an apertured layer characterised by an apertured layer, the apertures going through the whole thickness of the layer, e.g. expanded metal, perforated layer, slit layer regular cells B32B3/12
-
- G—PHYSICS
- G10—MUSICAL INSTRUMENTS; ACOUSTICS
- G10K—SOUND-PRODUCING DEVICES; METHODS OR DEVICES FOR PROTECTING AGAINST, OR FOR DAMPING, NOISE OR OTHER ACOUSTIC WAVES IN GENERAL; ACOUSTICS NOT OTHERWISE PROVIDED FOR
- G10K11/00—Methods or devices for transmitting, conducting or directing sound in general; Methods or devices for protecting against, or for damping, noise or other acoustic waves in general
- G10K11/16—Methods or devices for protecting against, or for damping, noise or other acoustic waves in general
- G10K11/162—Selection of materials
- G10K11/168—Plural layers of different materials, e.g. sandwiches
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B29—WORKING OF PLASTICS; WORKING OF SUBSTANCES IN A PLASTIC STATE IN GENERAL
- B29C—SHAPING OR JOINING OF PLASTICS; SHAPING OF MATERIAL IN A PLASTIC STATE, NOT OTHERWISE PROVIDED FOR; AFTER-TREATMENT OF THE SHAPED PRODUCTS, e.g. REPAIRING
- B29C64/00—Additive manufacturing, i.e. manufacturing of three-dimensional [3D] objects by additive deposition, additive agglomeration or additive layering, e.g. by 3D printing, stereolithography or selective laser sintering
- B29C64/10—Processes of additive manufacturing
- B29C64/106—Processes of additive manufacturing using only liquids or viscous materials, e.g. depositing a continuous bead of viscous material
- B29C64/118—Processes of additive manufacturing using only liquids or viscous materials, e.g. depositing a continuous bead of viscous material using filamentary material being melted, e.g. fused deposition modelling [FDM]
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B32—LAYERED PRODUCTS
- B32B—LAYERED PRODUCTS, i.e. PRODUCTS BUILT-UP OF STRATA OF FLAT OR NON-FLAT, e.g. CELLULAR OR HONEYCOMB, FORM
- B32B2250/00—Layers arrangement
- B32B2250/03—3 layers
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B32—LAYERED PRODUCTS
- B32B—LAYERED PRODUCTS, i.e. PRODUCTS BUILT-UP OF STRATA OF FLAT OR NON-FLAT, e.g. CELLULAR OR HONEYCOMB, FORM
- B32B2250/00—Layers arrangement
- B32B2250/40—Symmetrical or sandwich layers, e.g. ABA, ABCBA, ABCCBA
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B32—LAYERED PRODUCTS
- B32B—LAYERED PRODUCTS, i.e. PRODUCTS BUILT-UP OF STRATA OF FLAT OR NON-FLAT, e.g. CELLULAR OR HONEYCOMB, FORM
- B32B2262/00—Composition or structural features of fibres which form a fibrous or filamentary layer or are present as additives
- B32B2262/10—Inorganic fibres
- B32B2262/106—Carbon fibres, e.g. graphite fibres
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B32—LAYERED PRODUCTS
- B32B—LAYERED PRODUCTS, i.e. PRODUCTS BUILT-UP OF STRATA OF FLAT OR NON-FLAT, e.g. CELLULAR OR HONEYCOMB, FORM
- B32B2307/00—Properties of the layers or laminate
- B32B2307/10—Properties of the layers or laminate having particular acoustical properties
- B32B2307/102—Insulating
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B32—LAYERED PRODUCTS
- B32B—LAYERED PRODUCTS, i.e. PRODUCTS BUILT-UP OF STRATA OF FLAT OR NON-FLAT, e.g. CELLULAR OR HONEYCOMB, FORM
- B32B2605/00—Vehicles
- B32B2605/18—Aircraft
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B32—LAYERED PRODUCTS
- B32B—LAYERED PRODUCTS, i.e. PRODUCTS BUILT-UP OF STRATA OF FLAT OR NON-FLAT, e.g. CELLULAR OR HONEYCOMB, FORM
- B32B2607/00—Walls, panels
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B33—ADDITIVE MANUFACTURING TECHNOLOGY
- B33Y—ADDITIVE MANUFACTURING, i.e. MANUFACTURING OF THREE-DIMENSIONAL [3D] OBJECTS BY ADDITIVE DEPOSITION, ADDITIVE AGGLOMERATION OR ADDITIVE LAYERING, e.g. BY 3D PRINTING, STEREOLITHOGRAPHY OR SELECTIVE LASER SINTERING
- B33Y10/00—Processes of additive manufacturing
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B33—ADDITIVE MANUFACTURING TECHNOLOGY
- B33Y—ADDITIVE MANUFACTURING, i.e. MANUFACTURING OF THREE-DIMENSIONAL [3D] OBJECTS BY ADDITIVE DEPOSITION, ADDITIVE AGGLOMERATION OR ADDITIVE LAYERING, e.g. BY 3D PRINTING, STEREOLITHOGRAPHY OR SELECTIVE LASER SINTERING
- B33Y80/00—Products made by additive manufacturing
Definitions
- TITLE Acoustic panel and associated manufacturing process
- the present invention relates, in general, to acoustic attenuation and, more particularly, to devices intended for acoustic attenuation, in particular in the aerospace field.
- the invention relates to an acoustic panel, in particular an acoustic panel for a propulsion unit.
- the invention also relates to a method of manufacturing such an acoustic panel.
- State of the art
- One of the known solutions allowing this reduction consists in the use of acoustic panels, for example on the internal surface of the fan casing of a turbomachine, and whose sound dissipation mechanism is based on the Helmholtz resonance principle.
- a Helmholtz (HR) resonator consists of a cavity connected to the external environment by a neck. The sound can then enter the resonator through the neck before being dissipated into the cavity.
- the resonator attenuates the sound at the natural frequency of the resonance chamber by following the following equation: where D n is the opening diameter of the neck; L n is the length of the neck; V c the volume of the cavity; f r is the resonant frequency of the resonator; and v is the speed of sound in air.
- an existing acoustic panel called a "sandwich panel”, and applying this principle, comprises two substantially parallel skins between which are located and extend cavities forming Helmholtz resonators and for example organized in a honeycomb (hexagonal section ). One of the skins is pierced with orifices opening into the cavities and forming the necks of the resonators.
- the resonator structures of known acoustic panels can only achieve absorption at a given absorption frequency, and stacking of different panels is necessary for absorption at different frequencies. Disclosure of the invention
- An acoustic panel comprising two substantially parallel skins between which are arranged cavities forming Helmholtz resonators, one of said skins being pierced with orifices each opening into one of said cavities and forming a neck of the resonators.
- one or more of said cavities are formed by a hollow structure in the form of a right prism with a triangular base.
- the acoustic panel can comprise one or more sets of structures in the form of a right prism with a triangular base delimited by side walls and each comprising one or more of said cavities.
- one or more assemblies comprise at least four structures in the form of a right prism with a triangular base each and a central cavity formed between the structures formed by a right prism with a triangular base.
- said skin pierced with orifices may comprise a first orifice and a second orifice opening respectively into a first cavity and into a second cavity among the four cavities formed by a structure in the form of a right prism with a triangular base and a third orifice opening into the central cavity.
- said skin pierced with orifices comprises a fourth orifice and a fifth orifice opening respectively into a third cavity and a fourth cavity among the four cavities formed by a structure in the form of a right prism with a triangular base.
- the acoustic panel has two or more different orifice diameters.
- the structures formed by a right triangular prism are connected to one of said skins by one of their ridges, the interface between the ridge and the skin possibly comprising an enlarged portion.
- the acoustic panel forms a monolithic structure.
- the invention also relates to a method of manufacturing an acoustic panel, the method comprising a step of manufacturing by additive manufacturing of an acoustic panel as described above.
- the step of manufacturing by additive manufacturing is carried out by the technique of deposition of molten filament known as "Fused Filament Fabrication, FFF".
- FFF Fusion Fabrication
- FIG 1 illustrates an acoustic panel according to a first embodiment according to the invention, formed by a plurality of sets of cavities in the resonance core and of a pierced skin comprising three orifices per set of cavities.
- FIG 2 is a perspective view of one set of cavities of the plurality of set of resonant heart cavities of the acoustic panel according to the first embodiment illustrated in Figure 1.
- FIG 3 is a bottom view of the resonant heart cavity assembly shown in Figure 2.
- FIG 4 illustrates an acoustic panel according to the first embodiment, in which the cavities of a set of cavities are arranged in an alternative configuration, head to tail.
- FIG 5 is a graph representing the evolution of the absorption coefficient as a function of the frequency associated with an acoustic panel according to the first embodiment illustrated in Figure 4.
- FIG 6 illustrates an acoustic panel according to a second embodiment according to the invention, formed by a plurality of sets of cavities in the resonant heart and a pierced skin comprising five orifices per set of cavities.
- FIG 7 is a graph representing the evolution of the absorption coefficient as a function of the frequency associated with an acoustic panel according to the second embodiment illustrated in Figure 6.
- FIG. 1 illustrates an acoustic panel 1 for a turbomachine, according to the invention.
- the acoustic panel 1 is a so-called “sandwich panel” panel. It comprises first and second substantially parallel skins 2 and 3 between which are arranged cavities forming Helmholtz resonators.
- One of said skins in this example the first skin 2, is pierced with orifices each opening into one of said cavities and forming a neck of the resonators.
- one or more of said cavities are formed by a hollow structure 4 in the form of a right prism with a triangular base.
- the structure 4 in the form of a right prism with a triangular base comprises two opposing triangular bases 4a and 4b and two opposite rectangular faces 4c and 4d extending from a common square face 4e.
- the junction of the two bases 4a and 4b and the two faces 4c and 4d form an edge 5 disposed opposite to the square face 4e.
- the structure 4 is hollow and thus contains a cavity.
- All the cavities are preferably formed by structures 4 in the form of a right prism with a triangular base, forming a honeycomb configuration between the two skins 2 and 3.
- the cavities of the various structures 4 in the form of a right prism with a triangular base are independent of each other and do not communicate.
- the structures 4 forming the cavities are delimited in several sets or cells by side walls 6.
- the acoustic panel is thus formed by a plurality of sets of structures 4 in the form of a right prism with a triangular base.
- each set comprises four structures 4 in the form of a right prism with a triangular base.
- a perspective view and a bottom view of an assembly are shown in Figures 2 and 3.
- the four structures 4 shown are arranged at 90 ° relative to each other, relative to an axis passing through the two skins 2 and 3 and perpendicular to the two skins 2 and 3. This arrangement advantageously makes it possible to optimize the space.
- each edge 5 is arranged opposite the second skin 3.
- Each assembly also comprises a central cavity 7 formed between the structures 4 formed by a right prism with a triangular base.
- the central cavity 7 corresponds to the free space within an assembly delimited by the side walls 6, between the structures 4.
- the skin pierced with orifices which here corresponds to the first skin 2 can include three orifices within the same assembly.
- a first orifice 8a and a second orifice 8b open out respectively into a first cavity and into a second cavity among the four cavities formed by a structure in right prism shape with triangular base, preferably at the level of the 4th square faces.
- a third orifice 9 opens into the central cavity 7.
- the first and second orifices 8a and 8b are, in this example, of different diameters.
- the diameter of the third orifice 9 is greater than the diameters of the first and second orifices 8a and 8b.
- first and second orifices 8a and 8b can be arranged so that they open into two of the four structures 4 formed by a right triangular prism, arranged diagonally within the same set of structures 4.
- two of the four structures 4 formed by a right triangular prism are not used as resonance cavity.
- the structures 4 formed by a right triangular prism are connected to one of said skins 2 and 3, in this example the second skin 3, by the edge 5.
- the interface between the edge 5 and the skin comprises an enlarged portion or border reinforcing the mechanical stability of the acoustic panel via the reinforcement of the connection between the structures 4 and the second skin.
- the four cavities of structures 4 in the form of a right prism with a triangular base thus each form a Helmholtz resonator.
- the structures 4 in the form of a right prism with a triangular base can be arranged in a head-to-tail configuration in order to optimize the space within the acoustic panel.
- the graph of FIG. 5 represents the evolution of the absorption coefficient as a function of the frequency, in Hz, measured on an acoustic panel of configuration with three orifices, as illustrated in FIG. 4, the structures arranged head to tail.
- the thickness of the first pierced skin, and therefore of the neck associated with the orifices 8a, 8b and 9 has been chosen equal to 4mm and the diameter of the first, second and third orifices 8a, 8b and 9 is respectively of 2, 2.5 and 3 mm.
- three well defined absorption peaks are observable in the figure. In this configuration, the peaks are observable around 500 Hz, 1100 Hz and 1400 Hz.
- the resonators formed by the central cavity 7, of greater volume than the cavities of the structures 4, generate the low-frequency peak around 500 Hz, while the resonators formed by the two structures 4 in the form of a right prism with a triangular base into which open the orifices 8a and 8b generate the two peaks at high frequencies, around 1100 and 1400 Hz.
- the use of the two types of cavities is particularly advantageous and makes it possible to obtain a plurality of peaks over a wide range of frequencies between 500 and 1500Hz.
- FIG. 6 illustrates a second embodiment of acoustic panel 10 in which the pierced skin comprises five orifices.
- the first skin 2 comprises a first orifice 8a and a second orifice 8b opening respectively into a first cavity and into a second cavity among the four cavities formed by a structure 4 in the form of right triangular prism, preferably at the level of the square faces 4th.
- the first skin 2 comprises a fourth orifice l ia and a fifth orifice 11b opening respectively into a third cavity and a fourth cavity among the four cavities formed by a structure 4 in the form of a right prism with a triangular base.
- the different orifices 8a, 8b, 9, 11a and 11b have four or five different diameters.
- the graph of FIG. 7 represents the evolution of the absorption coefficient as a function of the frequency, in Hz, measured on an acoustic panel of configuration with five orifices, as illustrated in FIG. 6.
- the thickness of the first pierced skin, and therefore of the neck associated with the orifices 8a, 8b and 9 has been chosen equal to 3mm and the diameter of the first, second, third, fourth and fifth orifices 8a, 8b and 9 are respectively 2 , 2.5, 3.5, 3 and 3 mm.
- Five well-defined absorption peaks can be seen in the figure. In this configuration, the peaks are observed at low frequency around 500 Hz, and at higher frequency around 800 Hz, 1100 Hz, 1400 Hz and 1500 Hz.
- the resonators formed by the central cavity 7, of greater volume than the cavities of the structures 4, generate the low-frequency peak around 500 Hz, while the resonators formed by the four structures 4 in the form of a right prism with a triangular base into which open the orifices 8a, 8b, 11a and 11b generate the four peaks at the frequencies higher.
- the use of the two types of cavities is particularly advantageous and makes it possible to obtain a plurality of peaks over a wide frequency range between 500 and 1500Hz.
- Such an acoustic panel makes it possible to obtain greater absorption than the panel comprising the three orifices, in particular between 600 and 1000 Hz.
- the acoustic panel could include a different number of three or five different orifice diameters, for example two, four or more than five.
- the acoustic panel 1, 10 forms a monolithic structure.
- the invention also relates to a method of manufacturing an acoustic panel 1, 10.
- the method comprises a manufacturing step by additive manufacturing.
- Additive manufacturing thus has the advantage of being able to manufacture an acoustic panel, for example acoustic panels 1 and 10, simply and quickly, in a single step.
- the manufacturing step by additive manufacturing is carried out by the technique of deposition of molten filament known as "Fused Filament. Manufacture, FFF ”, particularly suited to the production of a complex structure as described above, comprising structures 4 formed by right prisms with a triangular base.
- FFF molten filament
- additive manufacturing is meant the manufacture of a part by successive deposition or consolidation of layers of material.
- the acoustic elements are therefore produced in a single operation, and are therefore monolithic.
- the acoustic panel preferably manufactured by additive manufacturing, can comprise at least one reinforced thermoplastic material and / or at least one unreinforced thermoplastic material.
- reinforced material is meant a composite material in which fillers improve the properties, for example mechanical properties, of a matrix.
- the first and second skin 2 and 3 of an acoustic panel can be made of a reinforced thermoplastic material, for example by carbon fibers, while simultaneously, the cavities are made of an unreinforced thermoplastic material.
- the manufacture by additive manufacturing of such an acoustic panel can be carried out in a single operation, by a device comprising two extrusion heads, preferably by the technique of deposition of molten filament known as "Fused Filament Fabrication, FFF".
- the acoustic panel is made of a thermoplastic polymer material, for example polyamide, or of a composite material with a polymer matrix, particularly advantageous for additive manufacturing by deposition of molten filament and allowing both to strengthen and to lighten the structure.
- the composite material with a polymer matrix may include fillers of carbon fibers.
- the acoustic panel thus combines mechanical strength and high sound absorption capacity.
Landscapes
- Engineering & Computer Science (AREA)
- Physics & Mathematics (AREA)
- Acoustics & Sound (AREA)
- Multimedia (AREA)
- Chemical & Material Sciences (AREA)
- Manufacturing & Machinery (AREA)
- Materials Engineering (AREA)
- Mechanical Engineering (AREA)
- Soundproofing, Sound Blocking, And Sound Damping (AREA)
Abstract
Description
Claims
Applications Claiming Priority (2)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CA3084631A CA3084631A1 (fr) | 2020-06-23 | 2020-06-23 | Panneau acoustique et procede de fabrication associe |
| PCT/FR2021/051015 WO2021260286A1 (fr) | 2020-06-23 | 2021-06-07 | Panneau acoustique et procede de fabrication associe |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| EP4169013A1 true EP4169013A1 (fr) | 2023-04-26 |
Family
ID=76921035
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| EP21742162.7A Pending EP4169013A1 (fr) | 2020-06-23 | 2021-06-07 | Panneau acoustique et procede de fabrication associe |
Country Status (5)
| Country | Link |
|---|---|
| US (1) | US12211477B2 (fr) |
| EP (1) | EP4169013A1 (fr) |
| CN (1) | CN116075884A (fr) |
| CA (1) | CA3084631A1 (fr) |
| WO (1) | WO2021260286A1 (fr) |
Families Citing this family (3)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| US20250109586A1 (en) * | 2022-01-14 | 2025-04-03 | University Of Puerto Rico | Scutoidal sub-cell and cell arrangements |
| US20240253324A1 (en) * | 2023-02-01 | 2024-08-01 | General Electric Company | Composite panels and methods for making the same |
| FR3149540B1 (fr) | 2023-06-12 | 2026-03-13 | Eclore Actuators | Panneau acoustique |
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| BE554083A (fr) * | 1956-02-18 | |||
| US3734234A (en) | 1971-11-08 | 1973-05-22 | Lockheed Aircraft Corp | Sound absorption structure |
| US3831710A (en) * | 1973-01-24 | 1974-08-27 | Lockheed Aircraft Corp | Sound absorbing panel |
| US3819007A (en) * | 1973-04-27 | 1974-06-25 | Lockheed Aircraft Corp | Controllable laminar sound absorptive structure |
| US3887031A (en) * | 1973-06-11 | 1975-06-03 | Lockheed Aircraft Corp | Dual-range sound absorber |
| GB2038410B (en) * | 1978-12-27 | 1982-11-17 | Rolls Royce | Acoustic lining utilising resonance |
| GB2049886B (en) * | 1979-05-23 | 1982-11-24 | Coal Industry Patents Ltd | Acoustic liner for attenuating noise |
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| DE19804567C2 (de) * | 1998-02-05 | 2003-12-11 | Woco Franz Josef Wolf & Co Gmbh | Flächenabsorber für Schallwellen und Verwendung |
| GB0016149D0 (en) * | 2000-06-30 | 2000-08-23 | Short Brothers Plc | A noise attenuation panel |
| GB2364535A (en) * | 2000-07-10 | 2002-01-30 | Chiao Hsiang Wang | Sound absorbing panel |
| DE102004012929B3 (de) * | 2004-03-17 | 2005-04-21 | Dornier Gmbh | Anordnung zur Lärmreduzierung in Turbofantriebwerken |
| BR112013000807A2 (pt) * | 2010-07-15 | 2016-05-24 | Aishin Kako Kk | estrutura tendo uma característica de absorção de som |
| DE102011120979A1 (de) * | 2011-12-13 | 2013-06-13 | Rolls-Royce Deutschland Ltd & Co Kg | Akustischer Absorber |
| US9643392B2 (en) * | 2013-07-29 | 2017-05-09 | The Boeing Company | Septumization of honeycomb sandwiches |
| US8997923B2 (en) * | 2013-08-12 | 2015-04-07 | Hexcel Corporation | Sound wave guide for use in acoustic structures |
| DE102016124678A1 (de) * | 2015-12-30 | 2017-07-06 | Fraunhofer-Gesellschaft zur Förderung der angewandten Forschung e.V. | Plattenanordnung |
| US9978354B2 (en) * | 2016-04-15 | 2018-05-22 | Rohr, Inc. | Acoustic panel with vertical stiffeners |
| FR3054608B1 (fr) * | 2016-07-29 | 2020-06-26 | Safran | Panneau acoustique pour une turbomachine et son procede de fabrication |
| FR3065570B1 (fr) * | 2017-04-21 | 2019-05-03 | Office National D'etudes Et De Recherches Aerospatiales | Garniture surfacique pour absorption acoustique |
| FR3069091B3 (fr) * | 2017-07-12 | 2019-11-08 | Airbus Operations (S.A.S.) | Structure absorbante de sons |
| US10808399B2 (en) * | 2017-10-12 | 2020-10-20 | Honeywell International Inc. | Enhanced acoustic cell and enhanced acoustic panel, and methods of producing the same |
| FR3074223A1 (fr) * | 2017-11-28 | 2019-05-31 | Airbus Operations | Panneau d’attenuation acoustique pour aeronef. |
| US11059559B2 (en) * | 2018-03-05 | 2021-07-13 | General Electric Company | Acoustic liners with oblique cellular structures |
| FR3088057A1 (fr) * | 2018-11-07 | 2020-05-08 | Airbus Operations Sas | Assemblage constituant un isolant acoustique |
| FR3098143A1 (fr) * | 2019-07-05 | 2021-01-08 | Airbus Operations | Revêtement insonorisant comportant une structure alvéolaire formée de bandes longitudinales formant des résonateurs de Helmholtz et des cavités intermédiaires traitant des plages acoustiques différentes |
| FR3113169B1 (fr) * | 2020-07-31 | 2022-12-09 | Airbus Operations Sas | Procédé de fabrication d’un panneau acoustique à peau capsulaire et panneau acoustique intégrant une telle peau |
| FR3117658B1 (fr) * | 2020-12-15 | 2023-08-11 | Safran Aircraft Engines | Panneau de traitement acoustique à encombrement réduit pour turboréacteur |
| FR3123755B1 (fr) * | 2021-06-08 | 2024-02-23 | Safran | Dispositif de traitement acoustique pour ensemble propulsif d’aeronef et son procede de fabrication |
| FR3125911B1 (fr) * | 2021-07-29 | 2024-02-23 | Safran Nacelles | Élément d’obturation acoustique |
| FR3127713B1 (fr) * | 2021-10-01 | 2023-10-06 | Safran | Procédé de fabrication d’un panneau acoustique par soudage |
| CN114203137A (zh) * | 2021-11-04 | 2022-03-18 | 华中科技大学 | 兼具低频吸声与承载的多功能超材料及其增材制造方法 |
| CN117877452A (zh) * | 2023-12-01 | 2024-04-12 | 南京工业职业技术大学 | 一种基于亥姆霍兹共振的吸声结构 |
-
2020
- 2020-06-23 CA CA3084631A patent/CA3084631A1/fr active Pending
-
2021
- 2021-06-07 CN CN202180058154.4A patent/CN116075884A/zh active Pending
- 2021-06-07 US US18/012,108 patent/US12211477B2/en active Active
- 2021-06-07 WO PCT/FR2021/051015 patent/WO2021260286A1/fr not_active Ceased
- 2021-06-07 EP EP21742162.7A patent/EP4169013A1/fr active Pending
Also Published As
| Publication number | Publication date |
|---|---|
| CN116075884A (zh) | 2023-05-05 |
| CA3084631A1 (fr) | 2021-12-23 |
| US12211477B2 (en) | 2025-01-28 |
| US20230252966A1 (en) | 2023-08-10 |
| WO2021260286A1 (fr) | 2021-12-30 |
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