ELECTRIC POWER TRANSMISSION CABLE WITH COMPOSITE CORES
20170133117 · 2017-05-11
Inventors
Cpc classification
H01B1/24
ELECTRICITY
H01B1/04
ELECTRICITY
International classification
H01B1/24
ELECTRICITY
H01B5/10
ELECTRICITY
Abstract
The invention relates to an electric power transmission cable comprising at least one central composite core (1A, 1B) formed of fibers embedded in a resin and around which metal conductive wires (2, 3) are positioned, said core (1) being coated with a coating layer (4) consisting of carbon nanotubes embedded in a resin.
According to the invention, said coating layer consists of only 4% to 8% by weight of carbon nanotubes embedded in said resin.
Claims
1. An electric power transmission cable comprising; at least one central composite core formed of fibers embedded in a resin and around which metal conductive wires are positioned, said core being coated with a coating layer having carbon nanotubes embedded in a resin, wherein said coating layer has only 4% to 8% by weight of carbon nanotubes embedded in said resin.
2. The cable as claimed in claim 1, wherein said coating layer comprises substantially 4% by weight of carbon nanoparticles.
3. The cable as claimed in claim 1, wherein said resin of said coating layer is an epoxy or polyurethane resin.
4. The cable as claimed in claim 1, wherein said core is made of epoxy resin-pultruded carbon fibers.
5. The cable as claimed in claim 1, wherein said conductive wires are made of aluminum or of aluminum alloy.
6-10. (canceled)
Description
[0022] The invention is described below in greater detail with the aid of figures that represent preferred embodiments of the invention.
[0023]
[0024]
[0025] As represented in
[0026] By way of example, as illustrated, the cable comprises a first inner layer of conductive wires 2 of trapezoidal cross section and two outer layers of wires 3 of Z-shaped cross section wound in the opposite direction. Any combination of conductive wires of circular, trapezoidal and/or Z-shaped cross section may be used according to sizing considerations.
[0027] The core 1 is coated with a coating layer 6, which consists of carbon nanotubes or of carbon black embedded in a resin, preferably epoxy or polyurethane resin, with a sufficient content to ensure an electrical conduction between the core 1 and the adjacent metal conductive wires 2. Preferably, the resistivity of the coating layer 6 is less than or equal to 10.sup.+5 .Math.m and, advantageously, substantially equal to 10.sup.+5 .Math.m.
[0028] According a first preferred embodiment, the coating layer comprises 4% to 8% by weight of carbon nanoparticles, and preferably substantially 4% by weight.
[0029] According a second embodiment, the coating layer consists of only 20% to 30% by weight of carbon black embedded in said resin, and preferably substantially 20% by weight of carbon black.
[0030] As illustrated in
[0031] The assembly of unitary cores 1 is coated with a first layer 4 and each unitary core 1A, 1B is covered with a second layer 5A, 5B.
[0032] This assembly of unitary cores 1 comprises a central unitary core 1A positioned in the longitudinal axis of the cable and around which several other unitary cores 1B, for example six in number, are stranded.
[0033] The central unitary core 1A advantageously has a diameter between 1 and 10 mm, preferably substantially equal to 4 mm, and the other unitary cores 1B advantageously have a diameter also between 1 and 10 mm, preferably substantially equal to 5.5 mm.
[0034] Preferably, the second layers 5A, 5B consist of carbon nanotubes or carbon black embedded in a resin, preferably epoxy resin, with a sufficient content to ensure an electrical conduction between the cores and the first layer 4 is metallic, preferably made of aluminum. Preferably, the resistivity of the second coating layers 5A, 5B is less than or equal to 10.sup.+5 .Math.m and, advantageously, substantially equal to 10.sup.+5 .Math.m.
[0035] According a first preferred embodiment, the coating layer comprises 4% to 8% by weight of carbon nanoparticles, and preferably substantially 4% by weight.
[0036] According a second embodiment, the coating layer consists of only 20% to 30% by weight of carbon black embedded in said resin, and preferably substantially 20% by weight of carbon black.
[0037] Advantageously, the second layers 5A, 5B have a thickness of less than 1 mm, preferably substantially equal to 0.3 mm.