Composite gas turbine engine component
US-9151166-B2 · Oct 6, 2015 · US
US10273829B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-10273829-B2 |
| Application number | US-201514695821-A |
| Country | US |
| Kind code | B2 |
| Filing date | Apr 24, 2015 |
| Priority date | Oct 25, 2012 |
| Publication date | Apr 30, 2019 |
| Grant date | Apr 30, 2019 |
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A cylindrical case includes a case main body made of a composite material of reinforcing fibers impregnated with a thermosetting resin, and an outward flange on the case main body. The outward flange includes: a bonding layer; a foundation layer disposed on the bonding layer; one flange constituting layer having a leg layer which is laminated from one slope surface of the foundation layer to the bonding layer and a wall layer which rises from the one slope surface; and the other flange constituting layer having a leg layer which is laminated from the other slope surface of the foundation layer to the bonding layer and a wall layer which rises from the other slope surface. The foundation layer is formed by laminating roving layers, while the flange constituting layers are formed by laminating a plurality of biaxial fabric layers including a biaxial fabric of a non-crimp structure.
Opening claim text (preview).
The invention claimed is: 1. A cylindrical case made of a composite material of reinforcing fibers impregnated with a thermosetting resin, the cylindrical case including: a case main body which forms a cylindrical shape; and an outward flange which is disposed on an outer peripheral surface of the case main body annularly along a circumferential direction, wherein the outward flange includes: a bonding layer bonded on the outer peripheral surface of the case main body; a foundation layer having a triangular shape in cross-section and disposed on the bonding layer in the circumferential direction of the case main body; one flange constituting layer integrally having a leg layer which is laminated from one slope surface of the foundation layer to the bonding layer on a side of the one slope surface, and a wall layer which rises from the one slope surface of the foundation layer in a distal direction; and an other flange constituting layer integrally having a leg layer which continues to the bonding layer and is laminated from the other slope surface of the foundation layer to the bonding layer on a side of the other slope surface, and a wall layer which rises from the other slope surface of the foundation layer in the distal direction and overlaps with the wall layer of the one flange constituting layer, the foundation layer is formed by laminating roving layers including a roving composed of a bundle of reinforcing fibers, and the one flange constituting layer integrally having the leg layer and the wall layer and the other flange constituting layer integrally having the bonding layer, the leg layer, and the wall layer are both formed by laminating a plurality of biaxial fabric layers including a biaxial fabric of a non-crimp structure composed of two axes of reinforcing fiber bands having an orientation angle of ±15-75° to an axial direction of the case main body. 2. The cylindrical case according to claim 1 , wherein the outer peripheral surface of the case main body and each of the wall layers of both flange constituting layers are all coated with a protective layer made of a composite material of reinforcing fibers impregnated with a thermosetting resin. 3. The cylindrical case according to claim 1 , wherein the cylindrical case is used as a fan case for covering fan blades of an aircraft jet engine. 4. The cylindrical case according to claim 2 , wherein the cylindrical case is used as a fan case for covering fan blades of an aircraft jet engine. 5. A manufacturing method of the cylindrical case according to claim 1 , including: forming the outward flange by going through the following steps: laminating a bonding layer part of the other flange constituting layer having a sheet-like shape on a die to form the bonding layer; forming the foundation layer having a triangular shape in cross-section on the bonding layer in the other flange constituting layer having a sheet-like shape which is laminated on the die; laminating a leg layer part of the one flange constituting layer having a sheet-like shape from the one slope surface of the foundation layer to the bonding layer located on the side of the one slope surface in the other flange constituting layer to form the leg layer; raising a wall layer part of the one flange constituting layer on the one slope surface of the foundation layer to form the wall layer; folding a part of the other flange constituting layer which continues to the bonding layer on the side of the other slope surface of the foundation layer and laying the folded part from the bonding layer over the other slope surface of the foundation layer to form the leg layer of the other flange constituting layer, and at the same time raising the folded part on the other slope surface of the foundation layer to form the wall layer so as to overlap with the wall layer of the one flange constituting layer; and placing a pressure receiving die on the side of the other flange constituting layer and heating and pressurizing the laminate in a bagged state to cure the thermosetting resin with which each of the reinforcing fibers of the fabric layers are impregnated, and thereafter bonding the outward flange, which is released from the die, onto the outer peripheral surface of the cylindrical case main body which is made of a composite material of reinforcing fibers impregnated with a thermosetting resin. 6. A manufacturing method of the cylindrical case according to claim 2 , including: forming the outward flange by going through the following steps: laminating a bonding layer part of the other flange constituting layer having a sheet-like shape on a die to form the bonding layer; forming the foundation layer having a triangular shape in cross-section on the bonding layer in the other flange constituting layer having a sheet-like shape which is laminated on the die; laminating a leg layer part of the one flange constituting layer having a sheet-like shape from the one slope surface of the foundation layer to the bonding layer located on the side of the one slope surface in the other flange constituting layer to form the leg layer; raising a wall layer part of the one flange constituting layer on the one slope surface of the foundation layer to form the wall layer; folding a part of the other flange constituting layer which continues to the bonding layer on the side of the other slope surface of the foundation layer and laving the folded part from the bonding layer over the other slope surface of the foundation layer to form the leg layer of the other flange constituting layer, and at the same time raising the folded part on the other slope surface of the foundation layer to form the wall layer so as to overlap with the wall layer of the one flange constituting layer; and placing a pressure receiving die on the side of the other flange constituting layer and heating and pressurizing the laminate in a bagged state to cure the thermosetting resin with which each of the reinforcing fibers of the fabric layers are impregnated, and thereafter bonding the outward flange, which is released from the die, onto the outer peripheral surface of the cylindrical case main body which is made of a composite material of reinforcing fibers impregnated with a thermosetting resin. 7. A manufacturing method of the cylindrical case according to claim 3 , including: forming the outward flange by going through the following steps: laminating a bonding layer part of the other flange constituting layer having a sheet-like shape on a die to form the bonding layer; forming the foundation layer having a triangular shape in cross-section on the bonding layer in the other flange constituting layer having a sheet-like shape which is laminated on the die; laminating a leg layer part of the one flange constituting layer having a sheet-like shape from the one slope surface of the foundation layer to the bonding layer located on the side of the one slope surface in the other flange constituting layer to form the leg layer; raising a wall layer part of the one flange constituting layer on the one slope surface of the foundation layer to form the wall layer; folding a part of the other flange constituting layer which continues to the bonding layer on the side of the other slope surface of the foundation layer and laying the folded part from the bonding layer over the other slope surface of the foundation layer to form the leg layer of the other flange constituting layer, and at the same time raising the folded part on the other slope surface of the foundation layer to form the wall layer so as to overlap with the wall layer of the one flange constituting layer; and placing a pressure receiving die on the side of the other flange constituting layer and heating and pressurizing the lam
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