Composite fuselage barrel with improved EME protection and method of making thereof
A composite fuselage section, including an outer skin comprising one or more composite materials, an internal framework to support the outer skin, and one or more mechanical fasteners disposed through the outer skin, wherein the internal framework is joined to the outer skin using the one or more mechanical fasteners, and wherein the outer skin includes a conductive layer surrounding at least one of the one or more mechanical fasteners to enhance an energy distribution of a lightning strike flowing across a surface of the composite fuselage section.
1 . A composite fuselage section, comprising:
an outer skin comprising one or more layers of composite materials and a conductive layer,
an internal framework to support the outer skin, and
one or more mechanical fasteners disposed through the one or more layers of composite materials and the conductive layer of the outer skin,
wherein the internal framework is joined to the outer skin using the one or more mechanical fasteners, and
wherein the conductive layer surrounds at least one of the one or more mechanical fasteners to enhance an energy distribution of a lightning strike flowing across a surface of the composite fuselage section.
2 . The composite fuselage section of claim 1 , wherein substantially all of the one or more mechanical fasteners disposed through the outer skin are surrounded by the conductive layer.
3 . The composite fuselage section of claim 1 , wherein the composite fuselage section is configured as a forward section of an aircraft, and substantially all of the one or more mechanical fasteners disposed through the outer skin are surrounded by the conductive layer.
4 . The composite fuselage section of claim 1 , wherein the conductive layer covers an area from about 0.5 inches to about 10 inches surrounding the at least one of the one or more mechanical fasteners.
5 . The composite fuselage section of claim 2 , wherein the conductive layer covers an area from about 0.5 inches to about 10 inches surrounding the one or more mechanical fasteners.
6 . The composite fuselage section of claim 1 , wherein the outer skin comprises:
an inner layer defining an inner surface of the outer skin;
an outer layer disposed over the inner layer; and
the conductive layer disposed over the outer layer,
wherein the outer layer is conductive and the outer layer is electrically connected to the conductive layer.
7 . The composite fuselage section of claim 6 , wherein the one or more mechanical fasteners are disposed through the inner layer, the outer layer, and the conductive layer.
8 . The composite fuselage section of claim 7 , wherein the outer layer comprises an inter woven wire fabric (IWWF) layer comprising carbon fibers.
9 . The composite fuselage section of claim 8 , wherein at least some of the carbon fibers in the outer layer are in direct physical contact with the conductive layer.
10 . The composite fuselage section of claim 8 , wherein the one or more mechanical fasteners are counter-sunk through the outer layer to enhance a connection of the mechanical fasteners to the IWWF layer.
11 . The composite fuselage section of claim 1 , wherein the conductive layer comprises a copper or a copper alloy, and wherein the conductive layer has a thickness of from about 0.005 inches to about 0.020 inches.
12 . The composite fuselage section of claim 6 , wherein the outer skin comprises an adhesive layer disposed between the conductive layer and the outer layer to bond the conductive layer and the outer layer.
13 . The composite fuselage section of claim 6 , wherein the conductive layer comprises one or more conductive bands disposed over the outer layer, and wherein at least one of the one or more conductive bands defines a circumferential electrical path around the outer skin.
14 . The composite fuselage section of claim 6 , wherein the conductive layer comprises one or more conductive bands disposed over the outer layer, and wherein at least one of the one or more conductive bands defines a longitudinal electrical path along the outer skin.
15 . The composite fuselage section of claim 6 , wherein the conductive layer comprises one or more non-continuous conductive segments disposed over the outer layer.
16 . The composite fuselage section of claim 2 , wherein the internal framework comprises at least one of a plurality of circumferential frames and a plurality of longitudinal stringers attached to the outer skin using the one or more mechanical fasteners, and wherein the conductive layer is disposed to surround the one or more mechanical fasteners joining the at least one of the plurality of circumferential frames and the plurality of longitudinal stringers to the outer skin.
17 . The composite fuselage section of claim 2 , wherein the outer skin comprises one or more components, and wherein the one or more components of the outer skin are joined together using one or more mechanical fasteners, and
wherein the conductive layer is disposed to surround the one or more mechanical fasteners joining the one or more components of the outer skin.
18 . A composite fuselage section, comprising:
a composite outer skin comprising an inner layer defining an inner surface of the outer skin, an outer layer disposed over the inner layer, and a conductive layer disposed over the outer layer,
an internal framework to support the composite outer skin, and
one or more mechanical fasteners to join the internal framework to the composite outer skin,
wherein the one or more mechanical fasteners are disposed through the inner layer, the outer layer, and the conductive layer of the composite outer skin, and
wherein the conductive layer covers an area from about 0.5 inches to about 10 inches surrounding at least one of the one or more mechanical fasteners.
19 . The composite fuselage section of claim 18 , wherein the outer layer comprises an inter woven wire fabric (IWWF) layer, and wherein the one or more mechanical fasteners are disposed through the outer layer and the conductive layer to electrically connect the outer layer and the conductive layer to help disperse an energy of a lightning strike along an outer portion of the composite outer skin.
20 . A composite fuselage section, comprising:
an outer skin comprising one or more composite materials and a conductive layer,
an internal framework to support the outer skin, and
one or more mechanical fasteners disposed through the outer skin,
wherein the internal framework is joined to the outer skin using the one or more mechanical fasteners, and
wherein the conductive layer surrounds at least one of the one or more mechanical fasteners to enhance an energy distribution of a lightning strike flowing across a surface of the composite fuselage section, and
wherein the conductive layer comprises one or more conductive bands defining at least one of a circumferential electrical path around the outer skin and a longitudinal electrical path along the outer skin.