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EP 3 244 422 B1 |
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EUROPEAN PATENT SPECIFICATION |
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Mention of the grant of the patent: |
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08.07.2020 Bulletin 2020/28 |
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Date of filing: 09.05.2016 |
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International Patent Classification (IPC):
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THREE CORE POWER CABLES WITH SURROUNDING PLASTIC FILLER
DREIADRIGE STROMKABEL MIT UMGEBENDEM KUNSTSTOFFFÜLLER
CÂBLES D'ALIMENTATION TRIPOLAIRES AVEC CHARGE PLASTIQUE ENVIRONNANTE
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Designated Contracting States: |
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AL AT BE BG CH CY CZ DE DK EE ES FI FR GB GR HR HU IE IS IT LI LT LU LV MC MK MT NL
NO PL PT RO RS SE SI SK SM TR |
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Date of publication of application: |
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15.11.2017 Bulletin 2017/46 |
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Proprietor: Nexans |
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92400 Courbevoie (FR) |
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Inventors: |
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- KVARME, Hans
1430 As (NO)
- LARSEN, Vegar Syrtveit
1314 Slependen (NO)
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Representative: Feray, Valérie et al |
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Ipsilon
Le Centralis
63, avenue du Général Leclerc 92340 Bourg-la-Reine 92340 Bourg-la-Reine (FR) |
| (56) |
References cited: :
EP-A1- 2 233 810 WO-A1-2004/111515 WO-A1-2008/075964 WO-A1-2011/059337 WO-A1-2014/202141 WO-A1-2015/077101 GB-A- 2 326 177 US-B2- 8 723 030
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WO-A1-01/16515 WO-A1-2005/124095 WO-A1-2008/075965 WO-A1-2012/079631 WO-A1-2015/040448 GB-A- 2 304 392 US-A1- 2005 199 415
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| Note: Within nine months from the publication of the mention of the grant of the European
patent, any person may give notice to the European Patent Office of opposition to
the European patent
granted. Notice of opposition shall be filed in a written reasoned statement. It shall
not be deemed to
have been filed until the opposition fee has been paid. (Art. 99(1) European Patent
Convention).
|
Filed of the invention
[0001] The invention relates to impact resistant power cables, in particular to multipolar
power cables, more particularly to three-core power cables.
Background
[0002] Impact resistant multipolar cables are employed in a number of industries. Such cables
provide protection against accidental impact to the cable. The cables can provide
distribution of low, medium or high voltage electrical power.
[0003] As used herein, "low voltage" means voltage less than about 1 kV.
[0004] As used herein, "medium voltage" means voltage between about 1kV - 36 kV..
[0005] As used herein, "high voltage" means voltage greater than about 36 kV.
[0006] A particular type of cable, known as a "steel wire armored cable" commonly abbreviated
"SWA", is a hard wearing power cable designed for the supply of mains electricity.
It is one type of a number of armored electrical cables, and is used in underground
systems, power networks and subsea applications. A particular type of SWA is an armored
three-core power cable, known to one skilled in the art of power cables.
[0007] Traditional three-core power cables comprise three insulated conductors grouped together
in the center of the cable, and surrounded by an outer covering or roving. The cable
has so-called interstitial zones between any two adjacent cores and the outer covering.
As used herein, the term "interstitial zone" refers to the generally triangular shaped
area defined by the space between two adjacent cores and the immediately opposing
inner surface of the outer layer. By "immediately opposing" is meant the general area
of the portion of the outer covering at a point that intersects the shortest segment
of a line that is perpendicular to a line bisecting the two cores. The term "triangular"
is only meant in a general sense, as the opposing segment of the outer cover is obviously
curved, as are the cores themselves.
[0008] An extruded plastic profile known as a "filler" is arranged to fill the interstitial
zones and hold the three conductors in a relative position so as to maintain the cable's
circular cross section. A binder layer is often arranged about the filler, and a layer
of wound metallic armoring wires is arranged between the binder and the outer covering.
An illustration of known prior art SWA cables is illustrated in Figure 1. The purpose
of the metallic armoring wires is to provide tensile strength and impact resistance
for the power cable. As shown in Figure 1, in traditional power cables the plastic
fillers do not completely surround the conductors. This is not necessary, as in the
prior art it is the steel wires, not the fillers, that provide impact protection for
the cores.
[0009] While the metallic armoring provides a benefit in terms of impact protection, the
armoring has drawbacks. The metallic armoring adds weight to the cable, as well as
cost. In addition, the metallic armoring causes a condition known as "armor loss",
that can decrease the current rating of the cable. Armor loss occurs due to circulating
currents in the armoring due to fluctuating electrical fields and due to charging
current. The current rating and current loss of three-core power cables is calculated
using the IEC 60287 standard.
[0010] WO2015040488 describes disadvantages of metal armor wires in a power cable, and suggests eliminating
them, and instead using a solid "expandable polymeric material" that surrounds the
cores 1 in addition to an "expanded resistance layer". The "expanded polymeric material"
is not, however, a pre-extruded plastic profile.
Summary of the invention
[0012] The present invention according to claim 1 has as its object to overcome the deficiencies
of the prior art, in particular the disadvantages caused by metallic armoring wires,
while providing a simple and cost effective arrangement for filling the interstitial
zones of the cable. The power cable of the invention comprises the components of a
traditional three-core power cable, but eliminates the metallic armoring wires. Impact
resistance is provided instead by extruded plastic fillers that surround the cores.
The fillers are arranged to fill the interstices between conductors, and surround
the conductors. The plastic fillers comprise an interstices-filling central portion
and two outwardly extending curved arm portions. The arm portions have a length and
shape such that ends of adjacent arm portions abut one another and form a barrier
between the intermediate core and the outer covering. The curved inner surface of
the arm portions, together with curved inner surfaces of the interstices-filling central
portion form semi-circular or mostly circular channels with which are positioned the
cores.
Brief description of the drawings
[0013] The invention will be described in detail with reference to the following figures,
wherein:
Figure 1 is an illustration of the prior art
Figure 2 is a cross sectional view of an embodiment of the cable according to the
invention
Figure 3 is a perspective view of an embodiment of the cable according to the invention
Detailed description
[0014] As shown in figures 2 and 3 a three-core power cable 1 is provided. Power cores can
have various designs. A power cord according to the invention is illustrated in figure
2 and 3, where the power cores comprise a conductor 9, typically made of copper or
aluminum in the form of twisted wires or a rod, surrounded by an insulation layer
8. Surrounding insulation layer 8 is an outer semi conductor 7. A water swellable
tape 6 surrounds semi conductor 7. Arranged about swellable tape 6 is a lead sheath
5. On the outside of the power core is a PE sheath.
[0015] Arranged between the power cores and filling the interstitial zones are three extruded
plastic profiles or "fillers" 3. The fillers, when viewed in cross section, have a
central, interstices-filling portion 12 as well as two curved "arm" portions 13. The
fillers have curved outer surfaces, whereby, when positioned within the cable, the
arm portions of adjacent fillers abut to form a continuous circumference radially
surrounding the power cores. According to one alternate aspect, the ends of the curved
arm portions of the profile, again when viewed in cross section, may be equipped with
a "male" protrusion and a "female" indentation, such that adjacent filler profiles
interlock. As can be seen in figure 2, the point of abutment of two adjacent arms
is immediately between a core and the inner surface of the outer covering.
[0016] The fillers 3 have a longitudinal, semi-circular curved face 14 along the inner surfaces
of the arm and interstices-filling portions of the filler profiles. When adjacent
fillers abut one another, the adjacent curved faces 14 create a mostly circular or
semi-circular longitudinal channel in which a power core is arranged. An outer covering
or server layer 2, made of for example of polypropylene (PP) yarn, polyethylene (PE)
sheath or other suitable material surrounds the fillers. The term "suitable" in this
connection means that that the material has properties allowing the serving layer
to perform the function of mechanical protection and to provide friction for pulling
units etc.
[0017] The extruded filler profiles have a plurality of internal longitudinal walls, forming
a honeycombed internal structure comprising a plurality of cells 16.
[0018] The fillers may optionally comprise one or more spaces formed by adjacent profiles
for arranging one or more auxiliary cables such as a fiber optical cable 10.
[0019] The filler are designed to withstand impact. The fillers according to one aspect
are formed of PE or other suitable plastic material.
1. A power cable (1) comprising:
a. a plurality of cores (9), surrounded by an outer covering (2), the area between
any two adjacent cores and the immediately opposing inner surface of the outer covering
defining an interstitial zone,
b. a plurality of elongated plastic fillers (3), said fillers having a central, interstices-filling
portion (12) arranged to essentially fill an interstitial zone, and two curved, outwardly
extending arm portions (13),
c. at least a part of the arm portions is arranged intermediate the cores and the
outer covering, forming a barrier between the cores and the inner surface of the outer
covering,
characterized in that the number of cores (9) as well as the number of fillers (3) is three, and wherein
the arm portions (13) of adjacent fillers (3) abutting to form the barrier between
the cores (9) and the outer covering (2).
2. A power cable according to claim 1 wherein two adjacent fillers abut between a core
(9) and the inner surface of the outer covering (2).
3. A power cable according to one of the preceding claims, wherein
a. the arm portions and the interstices-filling portion have a curved inner surface,
and
b. the curved inner surfaces of the arm portions and interstices-filling portions
of adjacent fillers form mostly circular or semi-circular channels, in which channels
are arranged the cores.
4. A power cable according to one of the preceding claims wherein the plastic material
of the filler is arranged to withstand and protect against accidental impact against
the cable.
5. A power cable according to one of the preceding claims wherein the fillers comprise
a plurality of internal walls 15 defining a plurality of elongated cells 16.
6. A power cable according to one of the preceding claims, wherein one or more auxiliary
cables is arranged in one or more of the elongated cells.
7. A power cable according to one of the preceding claims wherein the cable is a high
voltage cable.
8. A power cable according to one of the preceding claims wherein the cable is a medium
voltage cable.
9. A power cable according to one of the preceding claims wherein the cable is a low
voltage cable.
1. Stromkabel (1), umfassend:
a. eine Vielzahl von Adern (9), umgeben von einer äußeren Abdeckung (2), wobei der
Bereich zwischen zwei benachbarten Adern und der unmittelbar gegenüber liegenden inneren
Fläche der äußeren Abdeckung eine dazwischenliegende Zone definiert,
b. eine Vielzahl von länglichen Kunststofffüllern (3), wobei die Füller einen zentralen,
Zwischenraum-füllenden Abschnitt (12) aufweisen, der angeordnet ist, um im Wesentlichen
eine zwischenliegende Zone zu füllen, und zwei gekrümmte, sich nach außen erstreckende
Armabschnitte (13),
c. mindestens ein Teil der Armabschnitte zwischen den Adern und der äußeren Abdeckung
angeordnet ist, die eine Barriere zwischen den Adern und der inneren Fläche der äußeren
Abdeckung bildet,
dadurch gekennzeichnet, dass die Adern (9), ebenso wie die Füller (3), drei an der Zahl sind, und wobei
die Armabschnitte (13) von benachbarten Füllern (3) aneinander stoßen, um die Barriere
zwischen den Adern (9) und der äußeren Abdeckung (2) zu bilden.
2. Stromkabel nach Anspruch 1, wobei zwei benachbarte Füller zwischen einer Ader (9)
und der inneren Fläche der äußeren Abdeckung (2) anstoßen.
3. Stromkabel nach einem der vorhergehenden Ansprüche, wobei
a. die Armabschnitte und der Zwischenraum-füllende Abschnitt eine gekrümmte innere
Fläche aufweisen, und
b. die gekrümmten inneren Flächen der Armabschnitte und Zwischenraum-füllenden Abschnitte
von benachbarten Füllern meist kreisförmige oder halbkreisförmige Kanäle bilden, wobei
in den Kanälen die Adern angeordnet sind.
4. Stromkabel nach einem der vorhergehenden Ansprüche, wobei das Kunststoffmaterial des
Füllers angeordnet ist, um einem zufälligen Stoß gegen das Kabel standzuhalten und
dagegen zu schützen.
5. Stromkabel nach einem der vorhergehenden Ansprüche, wobei die Füller eine Vielzahl
von inneren Wänden 15 umfassen, die eine Vielzahl von länglichen Zellen 16 definieren.
6. Stromkabel nach einem der vorhergehenden Ansprüche, wobei ein oder mehrere Hilfskabel
in einer oder mehreren länglichen Zellen angeordnet sind.
7. Stromkabel nach einem der vorhergehenden Ansprüche, wobei das Kabel ein Hochspannungskabel
ist.
8. Stromkabel nach einem der vorhergehenden Ansprüche, wobei das Kabel ein Mittelspannungskabel
ist.
9. Stromkabel nach einem der vorhergehenden Ansprüche, wobei das Kabel ein Niederspannungskabel
ist.
1. Câble d'alimentation (1) comprenant :
a. une pluralité de noyaux (9), entourés par une couverture externe (2), la zone entre
deux noyaux adjacents quelconques et la surface interne immédiatement opposée de la
couverture externe définissant une zone interstitielle,
b. une pluralité de charges plastiques allongées (3), lesdites charges ayant une partie
de remplissage d'interstices centrale (12) agencée pour remplir essentiellement une
zone interstitielle, et deux parties de bras incurvées s'étendant vers l'extérieur
(13),
c. au moins une partie des parties de bras est agencée entre les noyaux et la couverture
externe, formant une barrière entre les noyaux et la surface interne de la couverture
externe,
caractérisé en ce que le nombre de noyaux (9) ainsi que le nombre de charges (3) est trois, et dans lequel
les parties de bras (13) de charges adjacentes (3) sont en butée de façon à former
la barrière entre les noyaux (9) et la couverture externe (2).
2. Câble d'alimentation selon la revendication 1, dans lequel deux charges adjacentes
sont en butée entre un noyau (9) et la surface interne de la couverture externe (2).
3. Câble d'alimentation selon l'une des revendications précédentes, dans lequel
a. les parties de bras et la partie de remplissage d'interstices ont une surface interne
incurvée, et
b. les surfaces internes incurvées des parties de bras et des parties de remplissage
d'interstices de charges adjacentes forment des canaux pratiquement circulaires ou
semi-circulaires, les noyaux étant agencées dans lesdits canaux.
4. Câble d'alimentation selon l'une des revendications précédentes, dans lequel la matière
plastique de la charge est agencée pour supporter et protéger contre un choc accidentel
contre le câble.
5. Câble d'alimentation selon l'une des revendications précédentes, dans lequel les charges
comprennent une pluralité de parois internes 15 définissant une pluralité de cellules
allongées 16.
6. Câble d'alimentation selon l'une des revendications précédentes, dans lequel un ou
plusieurs câbles auxiliaires sont agencés dans une ou plusieurs des cellules allongées.
7. Câble d'alimentation selon l'une des revendications précédentes, le câble étant un
câble à haute tension.
8. Câble d'alimentation selon l'une des revendications précédentes, le câble étant un
câble à moyenne tension.
9. Câble d'alimentation selon l'une des revendications précédentes, le câble étant un
câble à basse tension.
REFERENCES CITED IN THE DESCRIPTION
This list of references cited by the applicant is for the reader's convenience only.
It does not form part of the European patent document. Even though great care has
been taken in compiling the references, errors or omissions cannot be excluded and
the EPO disclaims all liability in this regard.
Patent documents cited in the description