IPC분류정보
국가/구분 |
United States(US) Patent
등록
|
국제특허분류(IPC7판) |
|
출원번호 |
US-0906050
(2001-07-17)
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우선권정보 |
FR-0009301 (2000-07-17) |
발명자
/ 주소 |
- Fournier, Alain
- Laboure, Bernard
|
출원인 / 주소 |
|
대리인 / 주소 |
|
인용정보 |
피인용 횟수 :
12 인용 특허 :
3 |
초록
▼
The invention discloses an aeroengine nacelle afterbody of the type comprising a common nozzle for exhausting the mixed hot and cold gases originating respectively from the fan duct and from the aeroengine combustion chamber, the said nozzle having a longitudinal axis more or less coincident with th
The invention discloses an aeroengine nacelle afterbody of the type comprising a common nozzle for exhausting the mixed hot and cold gases originating respectively from the fan duct and from the aeroengine combustion chamber, the said nozzle having a longitudinal axis more or less coincident with the axis of the said engine. The common exhaust nozzle consists of two half-nozzles which are more or less symmetric with respect to a plane containing the said longitudinal axis, the said half-nozzles being, on the one hand, individually hinged via one of their longitudinal edges to a support structure hanging down from the wing structure or from the fuselage of the aircraft and, on the other hand, lockable together along their opposite longitudinal edges.
대표청구항
▼
1. An aeroengine nacelle afterbody of the type comprising a common nozzle for exhausting the mixed hot and cold gases originating respectively from the fan duct and from the aeroengine combustion chamber, the said nozzle having a longitudinal axis more or less coincident with the axis of the said en
1. An aeroengine nacelle afterbody of the type comprising a common nozzle for exhausting the mixed hot and cold gases originating respectively from the fan duct and from the aeroengine combustion chamber, the said nozzle having a longitudinal axis more or less coincident with the axis of the said engine, wherein the common exhaust nozzle consists of two half-nozzles which are more or less symmetric with respect to a plane containing the said longitudinal axis, the said half-nozzles being, on the one hand, individually hinged via one of their longitudinal edges to a support structure hanging down from the wing structure or from the fuselage of the aircraft and, on the other hand, lockable together along their opposite longitudinal edges. 2. An afterbody according to claim 1, in which the fan duct is made up of two fan half-ducts, each of which is defined between an exterior skin and an interior skin belonging to a half-fairing, the two half-fairings being more or less symmetric with respect to a plane containing the said longitudinal axis, and being, on the one hand, individually hinged via one of their longitudinal edges to the said support structure and, on the other hand, lockable together along their opposite longitudinal edges, wherein each half-fairing and each half-nozzle following on one from the other are made as a single piece. 3. An Afterbody according to claim 2,wherein it delimits both a duct for cold gases and a duct for mixed hot and cold gases, and in that it further comprises a door-type thrust reverser situated in such a location that, in the deployed position, the doors block only the flow of the cold gases. 4. An afterbody according to claim 2, wherein it delimits both a duct for cold gases and a duct for mixed hot and cold gases, and in that it further comprises a door-type thrust reverser situated in such a location that, in the deployed position, the doors block the flow of the mixed hot and cold gases. 5. A long duct mixed flow nacelle afterbody for an aeroengine comprising an upstream zone and a downstream zone by reference to the direction in which the gases flow, wherein it consists of two parts which are more or less symmetric with respect to a plane containing the longitudinal axis of the aeroengine, the said parts being, on the one hand, individually hinged by one of their longitudinal edges to a support structure hanging down from the wing structure or from the fuselage of the aircraft and, on the other hand, lockable together along their opposite longitudinal edges, each of the said parts comprising, from the outside inwards, in the upstream zone, three aerodynamic surfaces, namely a nacelle exterior surface, a cold flow duct exterior surface and a cold flow duct interior surface and, in the downstream zone, two aerodynamic surfaces, namely a nacelle exterior surface and a mixed hot and cold flow surface.
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