Thermally conductive unmanned aerial vehicle and method of making same
An unmanned aerial vehicle includes a body and a heat source disposed in the body. The heat source includes at least one of an electronic controller system and a motor. The unmanned aerial vehicle further includes a plurality of rotor blades. At least a portion of the body is constructed of crystalline carbon fibers.
1. An unmanned aerial vehicle comprising:
a fuselage;
an electronic controller system disposed in the fuselage; and
a plurality of rotor lift assemblies connected to the fuselage, each rotor lift assembly including a plurality of rotor blades, a nose cone, and a nacelle housing a motor,
wherein at least a portion of one of the fuselage and nacelle is constructed of crystalline carbon fibers.
2. The unmanned aerial vehicle of claim 1 , further comprising a tail section connected to the fuselage.
3. The unmanned aerial vehicle of claim 1 , wherein the crystalline carbon fibers are selected from the group consisting of pitch fiber, graphite, buckypaper, carbon nano materials, graphene, and PEMTEX.
4. The unmanned aerial vehicle of claim 1 , wherein the crystalline carbon fiber portion is proximate to at least one of the plurality of rotors.
5. The unmanned aerial vehicle of claim 1 , wherein the crystalline carbon fiber portion includes a first portion proximate to one of the motor and the electronic controller system, and a second portion proximate to at least one of the plurality of rotors.
6. The unmanned aerial vehicle of claim 5 , wherein the crystalline carbon fiber portion further includes a crystalline carbon fiber path extending from the first portion to the second portion.
7. The unmanned aerial vehicle of claim 1 , wherein substantially all of the crystalline carbon fibers are oriented in a same direction.
8. The unmanned aerial vehicle of claim 1 , wherein the crystalline carbon fiber portion is constructed from one of a slurry of crystalline carbon fibers and a fabric of woven crystalline carbon fibers.
9. The unmanned aerial vehicle of claim 1 , wherein the crystalline carbon fiber portion is constructed from a rope of crystalline carbon fiber.
10. The unmanned aerial vehicle of claim 1 , wherein the crystalline carbon fiber portion is constructed of crystalline carbon fiber and at least one other material selected from the group consisting of polyacrylonitrile fibers, aramid fibers, thermoplastic, thermoset, and boron nitride.
11. An unmanned aerial vehicle comprising:
a body;
a heat source enclosed by the body such that the heat source is not exposed to an exterior of the body, wherein the heat source includes at least one of an electronic controller system and a motor; and
a plurality of rotor blades,
wherein at least a portion of the body is constructed of crystalline carbon fibers.
12. The unmanned aerial vehicle of claim 11 , wherein the body includes a fuselage, a tail portion, and a plurality of rotor assemblies.
13. The unmanned aerial vehicle of claim 11 , wherein the portion of the body constructed of crystalline carbon fibers further includes polyacrylonitrile fibers.
14. The unmanned aerial vehicle of claim 11 , wherein the crystalline carbon fibers are pitch fibers.
15. The unmanned aerial vehicle of claim 11 , wherein the crystalline carbon fiber portion is constructed from a rope of crystalline carbon fiber.