DEVICE FOR ATTENUATING INTAKE NOISE AND RADIATED NOISE
20180156172 ยท 2018-06-07
Inventors
Cpc classification
F02M35/1211
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F02M35/1272
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F02M35/1266
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F02M35/1216
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F02M35/1277
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
Abstract
The invention concerns a device (1) for attenuating intake noise and radiated noise that comprises an internal gas delivery conduit (2) linked to a combustion engine, the conduit (2) having a peripheral wall (23) on at least one portion of which there is disposed at least one element porous to air (4), sound attenuation means comprising at least one tube (3) disposed in the delivery conduit, at least one peripheral chamber (5) being delimited inside the conduit (2) between the tube (3) and the peripheral wall (23) of the conduit (2), the tube (3) comprising at least one portion having an opening (30) allowing the inside of the tube (3) to communicate with the peripheral chamber (5).
Claims
1. A device for attenuating suction noises and radiated noises, wherein it comprises a gas delivery conduit intended to be connected to a combustion engine, the conduit having a peripheral wall over at least one portion of which is disposed at least one air-porous element, sound attenuating means comprising at least one tube disposed in the delivery conduit, at least one peripheral chamber being delimited inside the conduit between the tube and the peripheral wall of the conduit, the tube comprising at least one portion having an orifice which enables the inside of the tube to communicate with the peripheral chamber.
2. The device according to claim 1, wherein the conduit has at least one substantially transverse inner partition wall positioned around the tube and allowing delimiting at least two compartments of the peripheral chamber.
3. The device according to claim 1, wherein at least one portion of the tube surrounded by one of the compartments has a plurality of orifices so that said tube portion and the corresponding compartment form an absorption silencer.
4. The device according to claim 1, wherein at least one portion of the tube surrounded by one of the compartments has an orifice so that said tube portion and the corresponding compartment form a resonator.
5. The device according to claim 1, wherein at least one portion of the tube surrounded by any of the compartments has two diametrically opposed orifices so that said tube portion and the corresponding compartment form an expansion chamber of the gas circulating in the tube.
6. The device according to claim 1, wherein the device has at least three successive portions forming absorption silencers, at least one portion forming an expansion chamber and at least one portion forming a resonator.
7. The device according to claim 1, wherein the air-porous element has at least one strip of air-porous material.
8. The device according to claim 1, wherein the device comprises at least two diametrically opposed air-porous elements on the peripheral wall of the conduit.
9. The device according to claim 2, wherein at least one portion of the tube surrounded by one of the compartments has a plurality of orifices so that said tube portion and the corresponding compartment form an absorption silencer.
10. The device according to claim 2, wherein at least one portion of the tube surrounded by one of the compartments has an orifice so that said tube portion and the corresponding compartment form a resonator.
11. The device according to claim 2, wherein at least one portion of the tube surrounded by any of the compartments has two diametrically opposed orifices so that said tube portion and the corresponding compartment form an expansion chamber of the gas circulating in the tube.
12. The device according to claim 2, wherein the device has at least three successive portions forming absorption silencers, at least one portion forming an expansion chamber and at least one portion forming a resonator.
13. The device according to claim 3, wherein the device has at least three successive portions forming absorption silencers, at least one portion forming an expansion chamber and at least one portion forming a resonator.
14. The device according to claim 9, wherein the device has at least three successive portions forming absorption silencers, at least one portion forming an expansion chamber and at least one portion forming a resonator.
15. The device according to claim 2, wherein the air-porous element has at least one strip of air-porous material.
16. The device according to claim 3, wherein the air-porous element has at least one strip of air-porous material.
17. The device according to claim 9, wherein the air-porous element has at least one strip of air-porous material.
18. The device according to claim 2, wherein the device comprises at least two diametrically opposed air-porous elements on the peripheral wall of the conduit.
19. The device according to claim 3, wherein the device comprises at least two diametrically opposed air-porous elements on the peripheral wall of the conduit.
20. The device according to claim 9, wherein the device comprises at least two diametrically opposed air-porous elements on the peripheral wall of the conduit.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0022] Other features and advantages of the present invention will emerge from the following description, with reference to the appended drawings which represent an embodiment of the invention:
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DETAILED DESCRIPTION
[0031] Referring to
[0032] According to the embodiment herein described, the conduit 2 is made from two shells molded by injection and then assembled by their edges according to a welding process.
[0033] As observed in
[0034] According to the example herein described, the air-porous element may be an acrylic impregnated fibrous material.
[0035] Referring to
[0036] The space between the outside of the tube 3 and the peripheral wall 23 defines a chamber 5. Transverse inner partition walls 24 divide the chamber 5 into several compartments 51.
[0037] Moreover, it should be noted that different portions of the tube 3, each surrounded by a different compartment 51, have several orifices 30 with different geometries.
[0038] According to the embodiment shown in
[0039] According to the embodiment herein described, another portion of the tube 3 surrounded by a compartment 51 may have two diametrically opposed orifices 30b so as to form an expansion chamber of the gases circulating in the tube 3.
[0040] Moreover, it should be noted that another portion of the tube 3 surrounded by a compartment 51 may have a bypass at a right angle comprising an orifice 30c, to form a resonator 35.
[0041] During usage, the advantageous combination of the three silencers 31, of the expansion chamber 34, of the resonator 35 and of the air-porous element 4, allows the device 1 to attenuate the suction noises and the radiated noises over a wide frequency range.
[0042] Indeed, as shown in the graph represented in
[0043] In comparison with the graph represented in
[0044] In contrast, as it can be noted in the graph represented in
[0045] In addition, as shown in
[0046] Thus, the invention proposes a device 1 for attenuating suction noises and radiated noises allowing covering a wide range of frequencies, still without requiring a significant volume.
[0047] Of course, the invention is not limited to sole embodiments represented hereinabove, but it encompasses on the contrary all the embodiments.