[0001] The present invention relates to a contact arrangement, in particular to a contact
arrangement of a Medium Voltage line switch, having improved resistance to arcing
phenomena. For the purposes of the present application the term Medium Voltage is
referred to applications in the range of between 1 and 52 kV.
[0002] Medium Voltage line switch are well known in the art and usually comprises, for each
phase a contact assembly having a fixed contact and a corresponding movable contact.
An arc chamber, provided with an arcing electrode, is also present in order to control
the arcing phenomena and minimize the arcing effects occurring during opening/closing
operations of the line switch. Various solutions have been proposed in order to minimize
the arcing effects on the contacts, said solutions being directed to improve the design
of the main contacts and/or of the arcing chamber and/or to increase the speed of
opening/closing operations.
[0003] However, at the present state of the art, the design of the contact arrangement is
not totally satisfactory. Indeed, erosion of the contacts, normally silver-plated
cupper contacts, still occurs as a consequence of relatively long pre-arcing times
and/or the location of the arc foot point in correspondence of the current-carrying
contacts. This reduce the life of the apparatus and may also have negative consequences
on the operation line switch.
[0004] Patent applications DE3820489A1 and EP1026710A2 disclose known examples of switch contact arrangements.
[0005] It is therefore an object of the present invention to provide a Medium Voltage line
switch contact arrangement in which the above-mentioned drawbacks are avoided or at
least reduced.
[0006] More in particular, it is an object of the present invention to provide a Medium
Voltage line switch contact arrangement in which contact erosion is reduced.
[0007] As a further object, the present invention is aimed at providing a Medium Voltage
line switch contact arrangement in which the prearcing time is reduced.
[0008] A further object of the present invention is to providing provide a Medium Voltage
line switch contact arrangement in which the arc burns far away from the main contacts,
thereby preventing or considerably reducing contact erosion.
[0009] Still another object of the present invention is to provide a Medium Voltage line
switch contact arrangement with reduced manufacturing and installation costs.
[0010] Thus, the present invention relates to a Medium Voltage line switch contact arrangement
according to the following claim 1 and the related claims.
[0011] It has been seen that, thanks to the particular design of the contact arrangement,
in particular of the fixed contact, the prearcing time was considerably reduced. Consequently,
also erosion of the contacts is considerably reduced.
[0012] For the purpose of the present invention the width L of the flat body is measured
along the perpendicular line drawn from the connection point between said first and
second segment to the fourth segment.
[0013] A Medium Voltage line switch comprising a contact arrangement as described above
is also part of the present invention.
[0014] Further characteristics and advantages of the invention will emerge from the description
of preferred, but not exclusive embodiments of a Medium Voltage line switch contact
arrangement according to the invention, non-limiting examples of which are provided
in the attached drawings, wherein:
Figure 1 is a side view of a first embodiment of a line switch contact arrangement
according to the invention;
Figure 2 is front view of the line switch contact arrangement of figure 1;
Figure 3 is a perspective view of a first embodiment of a fixed contact used in a
line switch contact arrangement according to the invention;
Figure 4 is a side view of the fixed contact of figure 3;
Figure 5 is front view of the fixed contact of figure 3;
Figure 6 is a perspective view of a second embodiment of a line switch contact arrangement
according to the invention.
[0015] With reference to the attached figures, a Medium Voltage line switch contact arrangement
according to the invention, globally designated with the reference numeral 1, generally
comprises a fixed contact 2 and a movable contact assembly 3 which can be operatively
connected to and disconnected from said fixed contact 2.
[0016] The movable contact assembly 3 normally comprises a first 31 and a second 32 substantially
flat blades which are arranged parallel to each other and at a distance from each
other. The flat blades 31, 32 are pivotally mounted on a support (not shown) in correspondence
of a pivot point 35. By rotation around the pivot point 35, the flat blades 31 and
32 can be connected to and disconnected from the fixed contact 2.
[0017] The fixed contact 2 comprises contact element having a substantially flat body 20
having a first 21 and a second 22 contact surfaces which, in the closed position of
the switch, interact with the inner surfaces of the flat blades 31 and 32 to close
the circuit.
[0018] The substantially flat body 20 is delimited by a base 23, which is electrically and
mechanically connected to a contact holder 24, and by a first 25, a second 26, a third
27 and a fourth 28 segments so as to have a particular shape.
[0019] In details, the substantially flat body 20 is positioned so as to have the first
21 and the second 22 contact surface substantially parallel to the flat blades 31
and 32 of the movable contact assembly 3, with the first 25 and second 26 segments
facing said movable contact assembly 3.
[0020] For what concerns the shape of the substantially flat body 20, the first segment
25 is substantially perpendicular to said third segment 27, with the second segment
26 connecting said first segment 25 to said third segment 27 and being inclined toward
said fourth segment 28 so that the length
l of the third segment 27 is shorter than the width L of said substantially flat body
20 as measured in correspondence of the connection point 29 between said first 25
and second 26 segment.
[0021] In other words, as shown in the attached figures, at least a portion of the substantially
flat body 20 of the fixed contact 2, in particular the portion facing the movable
contact assembly 3, is cut away.
[0022] As already said, for the purpose of the present invention the width L of the flat
body 20 is considered as the distance between the connection point 29 and the fourth
segment 28 as measured along the line drawn from the connection point 29 perpendicularly
to the fourth segment 28, as shown in figure 4.
[0023] Thanks to the particular shape of the flat body 20 of the fixed contact and to its
position with respect to the movable contact assembly 3, in particular with respect
to the substantially flat contact blades 31 and 32, the prearcing time is reduced
thereby greatly minimizing the erosion phenomena on the fixed contact. In the Medium
Voltage line switch contact arrangement 1 according to the invention, the length
l of said third segment 27 is between 0.75L and 0.85L, and more preferably is between
0.77L and 0.83L. According to the invention, the base 23 of the substantially flat
body 20 is substantially parallel to the third segment 27.
[0024] It has also been seen that the performances of the Medium Voltage line switch contact
arrangement 1 of the invention can be further improved by properly dimensioning the
length and inclination of the second segment 26. In particular, according to the invention,
the distance
d between the third segment 27 and the connection point 29 between the first 25 and
the second 26 segments is preferably between 0.30D and 0.40D, where D is the length
of the substantially flat body 20 as measured from the base 23 to the third segment
27.
[0025] More preferably, the distance
d between said third segment 27 and the connection point 29 between the first 25 and
the second 26 segments is between 0.33D and 0.38D.
[0026] For the purposes of the present invention, and as shown in figure 4 and 5, the distance
d between said third segment 27 and the connection point 29 is considered as the distance
between said connection point 29 and the third segment 27 as measured along the line
drawn from the connection point 29 perpendicularly to the third segment 27. According
to the invention, shown in the attached figures, said first 25 and fourth 28 segments
are substantially parallel to each other and substantially perpendicular to said third
segment 27. Thus, according to the invention the substantially flat body 20 has a
substantially rectangular shape with a corner, i.e. the one facing the movable contact
assembly 3, cut away. In this case, the length D of the substantially flat body 20
substantially corresponds to the length of the fourth segment 38, while the width
L of the flat body 20 substantially corresponds to the distance between said substantially
parallel first 25 and fourth 28 as measured along their perpendicular line. According
to the invention, the corners between said second 26 and third 27 segments and between
said third 27 and fourth 28 segments are rounded. In such a case, the length
l of the third segment 27 is considered as the distance between the points 81 and 82,
i.e. the distance between the interception point 81 of the prolongation of the fourth
28 and third 27 segments and the interception point 82 of the prolongation of the
second 26 and third 27 segments. Figure 4 shows how length
l is measured in a particular embodiment of the invention.
[0027] According to the invention, the edges of said substantially flat body 20 defined
by said first 25, second 26, third 27 and fourth 28 segments are rounded. In other
words, said edges are preferably not constituted by flat surfaces perpendicularly
connected to the contact surfaces 21 and 22, but they have at least a partially curved
profile.
[0028] In a particularly preferred embodiment of the invention, the length
l of said third segment 27 is between 0.77L and 0.83L, the distance
d between said third segment 27 and the connection point 29 between the first 25 and
the second 26 segments is between 0.33D and 0.38D, the first 25 and fourth 28 segments
are substantially parallel to each other and substantially perpendicular to said third
segment 27, the corners between said second 26 and third 27 segments and between said
third 27 and fourth 28 segments are rounded, the edges of said substantially flat
body 20 defined by said first 25, second 26, and third 27 segments are also rounded.
[0029] The Medium Voltage line switch contact arrangement 1 of the invention usually also
comprises an arc chamber 5. The arc chamber 5 comprises a supporting element 51 which
is fixed to said fixed contact 2 and extends in the direction of the movable contact
assembly 3. To this purpose a hole can be provided in the flat body 20 of the fixed
contact 2, the supporting element being fixed by fixing means (not shown in the figures),
e.g. by screw means, to said hole. Other fixing arrangement are also possible.
[0030] The arc chamber 5 further comprising a plurality of plates 52 having a first end
53 operatively connected to said supporting element 51 and a second end 54 which is
substantially U shaped and defines a passage for said first 31 and second 32 flat
blades of said movable contact assembly 3. As shown in figure 2, the U shaped end
can be obtained by using two substantially parallel arms 541 and 542 protruding from
the body of the plates 52. Other set-up of the arc chamber 5, which in itself is well
known in the art, are also possible.
[0031] According to a particular embodiment, shown in figure 6, the Medium Voltage line
switch contact arrangement 1 of the invention comprises an arcing electrode 55 which
is positioned on the supporting element 51 of the arc chamber 5. The arcing electrode
55 is preferably positioned in correspondence of the connection point 29 between said
first 25 and second 26 segments and protrudes in the direction of said movable contact
assembly 3, so as to be closely above the first 31 and second 32 flat blades of the
movable contact assembly 3, when said blades 31 and 32 are in the proximity of the
substantially flat body 20 of the fixed contact 2.
[0032] It has been seen that the use of the arcing electrode 55 helps improving the performances
of the Medium Voltage line switch contact arrangement 1 of the invention. In particular,
due to the presence of said arcing electrode 55, inception of the arc does not occur
on the fixed contact 2 but on the arcing electrode 55. Consequently the arc burns
far away from the fixed contact, thereby avoiding or at least minimizing the problems
of contact erosion due to the arc.
[0033] As it can be seen from the above description, the Medium Voltage line switch contact
arrangement of the present invention has a number of advantages with respect to the
Medium Voltage line switches equipped with conventional contact arrangements. For
instance, thanks to the particular shape and positioning of the fixed contact, prearcing
time is considerably reduced, thereby reducing also the erosion phenomena on the fixed
contact.
[0034] It is also possible to have inception of the arc not located on the main fixed contact,
but on an additional arcing electrode properly positioned, thereby further reducing
the problems of contact erosion of the fixed main contact.
[0035] The Medium Voltage line switch contact arrangement thus conceived may undergo numerous
modifications and come in several variants, all coming within the scope of the appended
claims.
1. A Medium Voltage line switch contact arrangement (1) comprising a fixed contact (2)
and a movable contact assembly (3) operatively connectable to said fixed contact (2),
wherein the movable contact assembly (3) comprises a first (31) and a second (32)
substantially flat blades parallel to each other, said flat blades (31, 32) being
pivotally mounted on a support and rotationally connectable to said fixed contact
(2);
wherein the fixed contact (2) comprises a contact element having a substantially flat
body (20) having a rectangular shape with a corner cut away and first (21) and a second (22) contact surfaces delimited by a base (23) connected
to a contact holder (24) and by a first (25), a second (26), a third (27) and a fourth
(28) segments, wherein said first segment (25) is substantially perpendicular to said
third segment (27),
wherein said second segment (26) faces said movable contact assembly (3) when said
blades (31, 32) are in proximity of the substantially flat body (20), wherein said
first (25) and fourth (28) segments are substantially parallel to each other and substantially
perpendicular to said third segment (27),
wherein said third segment (27) is substantially parallel to said base (23),
wherein said second segment (26) connects said first segment (25) to said third segment
(26) and is inclined toward said fourth segment (28) so that the length / of the third
segment (27) is shorter than the width L of said substantially flat body (20) as measured
in correspondence of the connection point between said first (25) and second (26)
segment,
wherein said flat body has rounded corners between said second (26) and third (27)
segments and between said third (27) and fourth (28) segments,
characterized in that said flat body has rounded edges defined by said first (25), second (26), third (27)
and fourth (28) segments,
wherein the length / of said third segment (27) is between 0.75L and 0.85L, where
L is the width of said substantially flat body (20),
wherein the distance d between the third segment (27) and the connection point between the first (25) and
the second (26) segments is between 0.30D and 0.40D, where D is the length of the
substantially flat body (20) as measured from the base (23) to the third segment (27).
2. The Medium Voltage line switch contact arrangement (1) according to claim 1, characterized in that the length / of said third segment (27) is between 0.77L and
3. The Medium Voltage line switch contact arrangement (1) according to claim 1, characterized in that the distance d between said third segment (27) and the connection point between the first (25) and
the second (26) segments is between 0.33D and 0.38D.
4. The Medium Voltage line switch contact arrangement (1) according to claim 1, characterized in that it comprises an arc chamber (5) comprising a supporting element (51) fixed to said
fixed contact (2) and extending in the direction of said movable contact assembly
(3), said arc chamber (5) further comprising a plurality of plates (52) having a first
end (53) operatively connected to said supporting element (51) and a second end (54)
which is substantially U shaped and defines a passage for said first (31) and second
(32) flat blades of said movable contact assembly (3).
5. The Medium Voltage line switch contact arrangement (1) according to claim 4, characterized in that it comprises an arcing electrode (55) positioned on said supporting element (51)
in correspondence of the connection point between said first (25) and second (26)
segments and protruding in the direction of said movable contact assembly (3).
6. A Medium voltage line switch comprising a contact arrangement (1) according to one
of the preceding claims.
1. Mittelspannungsnetzschalter-Kontaktanordnung (1), umfassend einen festen Kontakt (2)
und eine bewegliche Kontaktanordnung (3), die mit dem festen Kontakt (2) operativ
verbindbar ist, wobei die bewegliche Kontaktanordnung (3) ein erstes (31) und ein
zweites (32) im Wesentlichen flaches Blatt parallel zueinander aufweist, wobei die
flachen Blätter (31, 32) schwenkbar auf einem Träger montiert und mit dem festen Kontakt
(2) drehbar verbindbar sind;
wobei der feste Kontakt (2) ein Kontaktelement mit einem im Wesentlichen flachen Körper
(20) mit einer rechteckigen Form mit einer abgetrennten Ecke und einer ersten (21)
und einer zweiten (22) Kontaktfläche umfasst, die durch eine Basis (23), die mit einem
Kontakthalter (24) verbunden ist, und durch ein erstes (25), ein zweites (26), ein
drittes (27) und ein viertes (28) Segment begrenzt sind,
wobei das erste Segment (25) im Wesentlichen senkrecht zu dem dritten Segment (27)
ist,
wobei das zweite Segment (26) der beweglichen Kontaktanordnung (3) zugewandt ist,
wenn die Blätter (31, 32) in der Nähe des im Wesentlichen flachen Körpers (20) sind,
wobei das erste (25) und das vierte (28) Segment im Wesentlichen parallel zueinander
und im Wesentlichen senkrecht zu dem dritten Segment (27) sind,
wobei das dritte Segment (27) im Wesentlichen parallel zu der Basis (23) ist,
wobei das zweite Segment (26) das erste Segment (25) mit dem dritten Segment (26)
verbindet und zu dem vierten Segment (28) geneigt ist, so dass die Länge 1 des dritten
Segments (27) kürzer ist als die Breite L des im Wesentlichen flachen Körpers (20),
gemessen entsprechend dem Verbindungspunkt zwischen dem ersten (25) und dem zweiten
(26) Segment,
wobei der flache Körper abgerundete Ecken zwischen dem zweiten (26) und dritten (27)
Segment und zwischen dem dritten (27) und vierten (28) Segment hat,
dadurch gekennzeichnet, dass der flache Körper abgerundete Kanten hat, die durch das erste (25), zweite (26),
dritte (27) und vierte (28) Segment definiert sind,
wobei die Länge I des dritten Segments (27) zwischen 0,75L und 0,85L liegt, wobei
l die Breite des im Wesentlichen flachen Körpers (20) ist,
wobei der Abstand d zwischen dem dritten Segment (27) und dem Verbindungspunkt zwischen dem ersten (25)
und dem zweiten (26) Segment zwischen 0,30D und 0,40D liegt, wobei D die Länge des
im Wesentlichen flachen Körpers (20), gemessen von der Basis (23) zum dritten Segment
(27), ist.
2. Mittelspannungsnetzschalter-Kontaktanordnung (1) nach Anspruch 1, dadurch gekennzeichnet, dass die Länge I des dritten Segments (27) zwischen 0,77L und 0,83L liegt.
3. Mittelspannungsnetzschalter-Kontaktanordnung (1) nach Anspruch 1, dadurch gekennzeichnet, dass der Abstand d zwischen dem dritten Segment (27) und dem Verbindungspunkt zwischen dem ersten (25)
und dem zweiten (26) Segment zwischen 0,33D und 0,38D liegt.
4. Mittelspannungsnetzschalter-Kontaktanordnung (1) nach Anspruch 1, dadurch gekennzeichnet, dass sie eine Lichtbogenkammer (5) umfasst, die ein Tragelement (51) umfasst, das an dem
festen Kontakt (2) befestigt ist und sich in Richtung der beweglichen Kontaktanordnung
(3) erstreckt, wobei die Lichtbogenkammer (5) ferner eine Vielzahl von Platten (52)
umfasst, die ein erstes Ende (53), das mit dem Tragelement (51) operativ verbunden
ist, und ein zweites Ende (54) aufweisen, das im Wesentlichen U-förmig ist und einen
Durchgang für die ersten (31) und zweiten (32) flachen Blätter der beweglichen Kontaktanordnung
(3) definiert.
5. Mittelspannungsnetzschalter-Kontaktanordnung (1) nach Anspruch 4, dadurch gekennzeichnet, dass sie eine Lichtbogenelektrode (55) umfasst, die auf dem Tragelement (51) entsprechend
dem Verbindungspunkt zwischen dem ersten (25) und dem zweiten (26) Segment angeordnet
ist und in Richtung der beweglichen Kontaktanordnung (3) vorsteht.
6. Mittelspannungsnetzschalter, umfassend eine Kontaktanordnung (1) nach einem der vorstehenden
Ansprüche.
1. Agencement de contact de commutateur de ligne moyenne tension (1) comprenant un contact
fixe (2) et un ensemble de contact mobile (3) pouvant être relié opérationnellement
audit contact fixe (2), dans lequel l'ensemble de contact mobile (3) comprend une
première (31) et une seconde lame (32) sensiblement plates parallèles entre elles,
lesdites lames plates (31, 32) étant montées de manière pivotante sur un support et
pouvant être reliées en rotation audit contact fixe (2) ;
dans lequel le contact fixe (2) comprend un élément de contact ayant un corps sensiblement
plat (20) ayant une forme rectangulaire avec un coin découpé et une première (21)
et une seconde (22) surfaces de contact délimitées par une base (23) reliée à un porte-contact
(24) et par un premier (25), un deuxième (26), un troisième (27) et un quatrième (28)
segments,
dans lequel ledit premier segment (25) est sensiblement perpendiculaire audit troisième
segment (27),
dans lequel ledit deuxième segment (26) fait face audit ensemble de contact mobile
(3) lorsque lesdites lames (31, 32) sont à proximité du corps sensiblement plat (20),
dans lequel lesdits premier (25) et quatrième (28) segments sont sensiblement parallèles
entre eux et sensiblement perpendiculaires audit troisième segment (27),
dans lequel ledit troisième segment (27) est sensiblement parallèle à ladite base
(23), dans lequel ledit deuxième segment (26) relie ledit premier segment (25) audit
troisième segment (26) et est incliné vers ledit quatrième segment (28) de sorte que
la longueur l du troisième segment (27) est plus courte que la largeur L dudit corps sensiblement
plat (20) telle que mesurée en correspondance du point de connexion entre lesdits
premier (25) et deuxième (26) segments,
dans lequel ledit corps plat présente des coins arrondis entre lesdits deuxième (26)
et troisième (27) segments et entre lesdits troisième (27) et quatrième (28) segments,
caractérisé en ce que ledit corps plat a des bords arrondis définis par lesdits premier (25), deuxième
(26), troisième (27) et quatrième (28) segments,
dans lequel la longueur l dudit troisième segment (27) est comprise entre 0,75 L et 0,85 L, où L est la largeur
dudit corps sensiblement plat (20),
dans lequel la distance d entre le troisième segment (27) et le point de connexion entre le premier (25) et
le deuxième (26) segments est comprise entre 0,30 D et 0,40 D, où D est la longueur
du corps sensiblement plat (20) telle que mesurée depuis la base (23) jusqu'au troisième
segment (27).
2. Agencement de contact de commutateur de ligne moyenne tension (1) selon la revendication
1, caractérisé en ce que la longueur l dudit troisième segment (27) est comprise entre 0,77 L et 0,83 L.
3. Agencement de contact de commutateur de ligne moyenne tension (1) selon la revendication
1, caractérisé en ce que la distance d entre ledit troisième segment (27) et le point de connexion entre le premier (25)
et le deuxième (26) segment est comprise entre 0,33 D et 0,38 D.
4. Agencement de contact de commutateur de ligne moyenne tension (1) selon la revendication
1, caractérisé en ce qu'il comporte une chambre d'arc (5) comprenant un élément de support (51) fixé audit
contact fixe (2) et s'étendant dans la direction dudit ensemble de contact mobile
(3), ladite chambre d'arc (5) comprenant en outre une pluralité de plaques (52) ayant
une première extrémité (53) reliée fonctionnellement audit élément de support (51)
et une seconde extrémité (54) sensiblement en forme de U et définit un passage pour
lesdites première (31) et seconde (32) lames plates dudit ensemble de contact mobile
(3).
5. Agencement de contact de commutateur de ligne moyenne tension (1) selon la revendication
4, caractérisé en ce qu'il comporte une électrode d'arc (55) positionnée sur ledit élément support (51) en
correspondance du point de connexion entre ledit premier (25) et ledit deuxième (26)
segments et faisant saillie dans la direction dudit ensemble de contact mobile (3).
6. Commutateur de ligne moyenne tension comprenant un agencement de contact (1) selon
l'une des revendications précédentes.