Noise reduction structure and supercharging device
US-2018223873-A1 · Aug 9, 2018 · US
US10473121B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-10473121-B2 |
| Application number | US-201815884861-A |
| Country | US |
| Kind code | B2 |
| Filing date | Jan 31, 2018 |
| Priority date | Jan 31, 2018 |
| Publication date | Nov 12, 2019 |
| Grant date | Nov 12, 2019 |
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The present disclosure provides a turbocharger which reduces noise generated from the wastegate. The turbocharger includes a turbocharger housing, a rotary assembly, and a wastegate door. The turbocharger housing defines a wastegate opening, a resonator proximate to the wastegate opening, a compressor inlet, a compressor outlet, a turbine inlet, and a turbine outlet. The rotary assembly includes a turbine and a compressor attached to one another by a shaft wherein the rotary assembly is disposed in the turbocharger housing. The wastegate door may be moveably affixed to the turbocharger housing.
Opening claim text (preview).
What is claimed is: 1. A turbocharger comprising: a turbocharger housing defining a wastegate opening, a resonator located proximate to the wastegate opening and including a resonator cavity and a resonator passageway, a compressor inlet, a compressor outlet, a turbine inlet, and a turbine outlet; a rotary assembly including a turbine and a compressor attached to one another by a shaft, the rotary assembly being disposed in the turbocharger housing; and a wastegate door moveably affixed to the turbocharger housing and located downstream of the resonator passageway, wherein the resonator is configured to attenuate noise generated at the wastegate opening, the resonator being arranged with the wastegate opening such that the resonator cavity is in direct fluid communication with a wastegate exhaust flow via the resonator passageway when the wastegate door is in an open position. 2. The turbocharger as defined in claim 1 further comprising an engagement surface at the wastegate opening, the engagement surface configured to abut a peripheral interior surface of the wastegate door. 3. The turbocharger as defined in claim 2 further comprising a sound absorbing layer disposed within the resonator cavity. 4. The turbocharger as defined in claim 3 , wherein the sound absorbing material is affixed to an interior surface of the resonator cavity. 5. The turbocharger as defined in claim 3 , wherein the sound absorbing material is a porous wire mesh. 6. The turbocharger as defined in claim 3 , wherein the sound absorbing material is a sprayable foam. 7. A turbocharger for a vehicle comprising: a turbocharger housing defining a compressor inlet, a compressor outlet, a turbine inlet, a turbine outlet, a wastegate opening, and a resonator mount proximate to the wastegate opening; a rotary assembly including a turbine and a compressor attached to one another by a shaft, the rotary assembly being disposed in the turbocharger housing; a resonator affixed to the resonator mount; and a wastegate door moveably affixed to a portion of the turbocharger housing located adjacent the wastegate opening, wherein the resonator is configured to attenuate noise generated at the wastegate opening, the resonator including a resonator cavity and a resonator passageway defined in the turbocharger housing, the resonator passageway being located upstream of the wastegate door and the resonator mount and the wastegate opening being arranged with one another such that the resonator cavity is in direct fluid communication with a wastegate exhaust flow via the resonator passageway when the wastegate door is in an open position. 8. The turbocharger as defined in claim 7 , wherein the resonator is affixed to the resonator mount via a mechanical fastener. 9. The turbocharger as defined in claim 7 further comprising an engagement surface at the wastegate opening, the engagement surface configured to abut a peripheral interior surface of the wastegate door. 10. The turbocharger as defined in claim 8 further comprising a sound absorbing layer disposed within the resonator cavity. 11. The turbocharger as defined in claim 10 , wherein the sound absorbing material is affixed to an interior surface of the resonator cavity. 12. The turbocharger as defined in claim 10 wherein the sound absorbing material is a porous wire mesh. 13. The turbocharger as defined in claim 10 , wherein the sound absorbing layer is a sprayable foam.
in turbochargers · CPC title
Arrangements of bypass valves or actuators therefor · CPC title
having sound-absorbing materials in resonance chambers · CPC title
Helmholtz resonators · CPC title
the driving means being assisted by a power recovery turbine · CPC title
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