A mounting assembly for attaching a ducted fan gas turbine engine that includes an intake, a propulsive fan, a fan case surrounding the fan, and a core engine. The air intake is attached to the front of the fan case such that loads acting on the air intake are transmitted to the fan case. The mounti
A mounting assembly for attaching a ducted fan gas turbine engine that includes an intake, a propulsive fan, a fan case surrounding the fan, and a core engine. The air intake is attached to the front of the fan case such that loads acting on the air intake are transmitted to the fan case. The mounting assembly includes: a support structure extending in an axial direction of the engine and having a rearward region adapted to attach to the aircraft; and a load distribution ring coaxial with and rearward of the fan case, adapted to join to the fan case, and joined to a forward region of the support structure. The support structure and the load distribution ring are adapted such that the primary load path for the loads transmitted to the fan case by the air intake is through the load distribution ring and the support structure.
대표청구항▼
1. A mounting assembly for attaching a ducted fan gas turbine engine to an aircraft, the engine having an air intake, a propulsive fan, a fan case surrounding the fan, and a core engine, the air intake being attached to the front of the fan case such that loads acting on the air intake are primarily
1. A mounting assembly for attaching a ducted fan gas turbine engine to an aircraft, the engine having an air intake, a propulsive fan, a fan case surrounding the fan, and a core engine, the air intake being attached to the front of the fan case such that loads acting on the air intake are primarily transmitted to the fan case, wherein the assembly includes: a support structure extending in an axial direction of the engine and having a rearward region which is adapted to attach to the aircraft, anda front engine mount comprising a load distribution ring that is coaxial with, and perpendicular to, the fan case and a thrust reverse unit and that is rearward of the fan case and forward of the thrust reverse unit, the load distribution ring integrally forming a single, non-disassemblable body with the fan case, and being joined to a forward region of the support structure; andwherein, in use, the support structure and the load distribution ring provide a primary load path for the loads transmitted to the fan case by the air intake, and thence to the aircraft. 2. A mounting assembly according to claim 1, wherein the primary load path is circumferentially distributed around an annular joint between the fan case and the load distribution ring. 3. A mounting assembly according to claim 1, wherein the load distribution ring is integrally formed with the forward region of the support structure. 4. A mounting assembly according to claim 1, wherein the engine further has a row of outlet guide vanes rearward of the fan case, the load distribution ring surrounding the outlet guide vanes. 5. A mounting assembly according to claim 1 wherein the support structure and the load distribution ring are predominantly formed of composite material. 6. A ducted fan gas turbine engine having an air intake, a propulsive fan, a fan case surrounding the fan, and a core engine, the air intake being attached to the front of the fan case such that loads acting on the air intake are primarily transmitted to the fan case, wherein the gas turbine engine further has a mounting assembly according to claim 1 for attaching the gas turbine engine to an aircraft. 7. An engine according to claim 6 further having a row of outlet guide vanes rearward of the fan case, the load distribution ring surrounding the outlet guide vanes. 8. An engine according to claim 7 whereby the fan case comprises one or more annular flanges, the one or more annular flanges being coaxial with the fan case, and wherein the radially inner ends of the outlet guide vanes terminate at the one or more annular flanges, a non-permanent rigid interface being formed between the engine core and the one or more annular flanges. 9. A mounting assembly for attaching a ducted fan gas turbine engine to an aircraft, the engine having an air intake, a propulsive fan, a fan case surrounding the fan, and a core engine, the air intake being attached to the front of the fan case such that loads acting on the air intake are primarily transmitted to the fan case, wherein the assembly includes: a support structure extending in an axial direction of the engine and having a rearward region which is adapted to attach to the aircraft, a front engine mount comprising a load distribution ring that is coaxial with the fan case and a thrust reverse unit and that is rearward of the fan case and forward of the thrust reverse unit, the load distribution ring integrally forming a single, non-disassemblable body with the fan case, and being joined to a forward region of the support structure; and a plurality of circumferentially distributed load transfer webs extending forward from the load distribution ring towards the fan case, wherein, in use, the support structure and the load distribution ring provide a primary load path for the loads transmitted to the fan case by the air intake, and thence to the aircraft.
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이 특허에 인용된 특허 (5)
Journade, Frederic; Lafont, Laurent; Agostini, Laurent; Renaud, Eric; Jalbert, Delphine, Aircraft assembly including an element for mounting an engine and associated aircraft.
Diochon, Lionel; Mastroberti, Raffaella; Petrissans, Isabelle, Engine assembly for aircraft comprising an engine as well as a device for locking said engine.
LaChapelle, Donald George; Glynn, Christopher Charles; Gardner, Donald Lee; Mitchell, Stephen Craig; Srinivas, Mullahalli Venkataramaniah; Rainous, Edward Atwood; Pennekamp, David Lance, Integrated nacelle assembly.
Brodell Robert F. (Marlborough CT) Hovan Edward J. (Manchester CT) Selfors Steven T. (Somerville MA) Loffredo Constantino V. (Newington CT) Duesler Paul W. (Manchester CT), Nacelle and mounting arrangement for an aircraft engine.
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