Field of invention
[0001] The present invention is generally applicable to the technical field of electric
transformers and it particularly relates to a tap-changer for transformers.
[0002] More in detail, the present invention is particularly applicable to a tap-changer
for oil-filled electric transformers.
Background of the Invention
[0003] In the field of electric transformers the use of high voltage tap-changer is known.
The manufacturing of the latter is particularly delicate in case of transformers for
high electric potentials because the high potentials involved may cause electric shocks
between the poles of the tap-changers or in the tap-changer group in general. The
case of the oil-filled transformers is one of these. They are applied to power lines
crossed by high electric potentials. A tap-changer of the prior art is disclosed in
EP-A-0993010.
[0004] The tap-changers used in transformers that operate with high electric potentials
typically have a plurality of rods of electric contact, usually made of copper or
of a copper alloy, aligned on a support shaft made of insulating material. Such a
shaft is a guide for one or more slides whereon short-circuit contacts are assembled.
The arrangement of such slides with respect to the guide leads to short-circuit different
rods therebetween thus changing the ratios of electric transformation of the transformer.
[0005] The reciprocal movement between slides and guide is accomplished by means of a rack
associated with the slides and whereon a toothed gear engages that is rotated by means
of a moving group available to a user.
[0006] Typically, such moving group comprises a rotating pivot associated with the toothed
gear and provided, at one end, with a knob available to the user who, by driving on
it, puts in rotation the toothed gear that acts upon the rack creating a translational
movement of the slides along the guide.
[0007] However, such a movement is continuous, while it is clear that the positions wherein
the aforementioned short-circuit connections are accomplished are defined by the position
of the rods and of the contacts on the slide. In other words, the positions of the
slides with respect to the guide bar to ensure certain electric contacts between the
rods are very specific and they do not correspond to a continuous movement between
the two elements, but to a discrete movement from a contact position to another contact
position. The intermediate positions are to be avoided not only because they may not
power supply the desired parameters, but also because they may cause electric shocks
between contacts and rods such as to be potentially dangerous.
[0008] For such reasons, according to the prior art regarding the axis thereof of the toothed
gear there is a second star-shaped gear, that is substantially a star-shaped multi-tipped
ring-nut where the tips have a rounded concave shape while the fitting between the
tips is rounded convex.
[0009] Such a ring-nut is counter-placed with a ball pushed towards the ring-nut thereof
by a spring. By rotating such a ring-nut, in correspondence to the tips of the star
the ball is moved away thus compressing the spring, while in correspondence to the
fittings the spring, while running down, pushes the ball to be inserted therein. In
such operating instants the moving group reaches a stable position that corresponds
to a contact position. By imparting a rotary movement to the knob, the star-shaped
gear rotates until reaching the next stable position where the ball is inserted in
the adjacent fitting towards the direction of rotation.
[0010] If such an embodiment allows to make the movements of the slides discrete with respect
to the guide with reduced costs of implementation, however, it has as first drawback
the difficulty of rotating the knob.
[0011] In fact, the rotation of the knob requires a considerable effort because it is necessary
a sufficient torque to overcome the opposition to the compression of the spring that
pushes the ball to penetrate in the fittings. Since such connections are rounded convex,
it is clear that such a shape is not advantageous to such a movement.
[0012] A further drawback is that the described implementation does not allow to fully overcome
the above mentioned drawbacks, that is the possibility that the slides stop in an
intermediate position between two contact positions. The involved friction between
the guide and the slides, the internal friction of the moving group, the effect of
the decompression force of the spring that acts upon the ball together with the rounded
shape of the tips of the star contribute, all together, to ensure that the rotation
of the star-shaped gear thereof may be stopped in correspondence to one of its tips
and it reaches, in such a position, a stable configuration although not being in correspondence
to a contact point. Therefore, the above described risks and problems occur again
if the operator does not pay attention to have caused a complete rotary movement of
the moving group.
Summary of the invention
[0013] Object of the present invention is to at least partially overcome the above mentioned
drawbacks by providing a tap-changer for oil-filled transformers whose tap-changing
between a contact position and the next one does not require excessive effort.
[0014] Another object of the invention is to provide a tap-changer for oil-filled transformers
that ensures the exclusive tap-changing between contact positions avoiding the risk
that the tap-changer reaches unwanted intermediate positions.
[0015] A further object is to provide a tap-changer for oil-filled transformers that is
automatically arranged in correspondence to one of the contact points even in case
of an incomplete movement by the user.
[0016] Another object of the invention is to provide a tap-changer for oil-filled transformers
that has costs almost equivalent to the equivalent known tap-changers.
[0017] Such objects, and others that will appear more clear hereinafter, are fulfilled by
a tap-changer for oil-filled transformers according to the appended claims that are
an integral part of the present patent.
[0018] In particular, the tap-changer comprises, as known, at least one guide element provided
with a plurality of electric contacts and at least one slide sliding along the guide
element to change the electric connection between two or more contacts. Furthermore,
the tap-changer thereof comprises moving means of the slide along the guide element,
in their turn comprising a driving group having at least one rotatable portion available
to a user and at least one mechanical transmission to transform the rotation of the
rotatable portion in a sliding movement of the slide along the guide element.
[0019] More in detail, the driving group defines a plurality of discrete positions of the
slide with respect to the guide element, each one of them corresponds to a different
electric connection between the electric contacts.
[0020] According to an aspect of the invention, this occurs for a particular configuration
of the moving means.
[0021] In fact, they comprise at least one ring-nut susceptible to be put in rotation by
the rotatable portion of the driving group and whose side surface has two or more
flat surfaces. Moreover, they comprise at least one core associated with the driving
group and counter-moved by first elastic means with the side surface of the ring-nut.
Furthermore, the portion of the core faced towards the side surface of the ring-nut
has a flat surface susceptible to be arranged one-to-one with the flat surfaces of
the side surface of the ring-nut when the slide and the guide element are placed in
correspondence to one of the discrete positions.
[0022] In other words, the rotary movement of the rotatable portion of the driving group,
that is responsible for the translation of the slide on the guide element, is not
continuous, but it is subjected to a discretization due to the contrast between the
side surface of the ring-nut and the core moved thereto by the first elastic means.
More in detail, during such a rotary movement, the ring-nut pushes back the core until
there is a one-to-one contact between the flat surface of the core faced towards the
ring-nut and one of the flat surfaces of the side surface of the ring-nut.
[0023] Such a configuration of one-to-one contact is advantageously particularly stable
and it allows to block the rotation with the exception of the application of a high
torque to the rotatable portion. Whereas, during the rotation the necessary torque
is advantageously less than the starting one since the starting one shall push away
the core from the flat surface of the ring-nut compressing the first elastic means,
while during the rotation the elastic means promote the rotary motion in their expansive
thrust until a new position of one-to-one contact is reached between the core and
one flat surface of the side surface of the ring-nut.
[0024] However, advantageously, the torque to be given to leave a discrete position and
to move to the next one is, nevertheless, less than what occurs in the prior art due
to the different shape of the elements that are in contrast. In fact, it is evident
that a coupling one-to-one between two elements pushed against one another by elastic
means offers less resistance with respect to a coupling of at least partial interpenetration
as that one of the prior art.
[0025] Nevertheless, still advantageously, the coupling one-to-one is absolutely stable
and, therefore, it fully accomplishes its object.
[0026] According to another aspect of the invention, the flat surfaces are adjacent to each
other and functionally arranged in series along at least one portion of the side surface
of the ring-nut. Moreover, each flat surface is divided from the adjacent ones by
a corner.
[0027] Advantageously, such a detail with the action of the first elastic means that promote
the rotation of the ring-nut with respect to the core when they are not arranged in
one-to-one contact, allow to avoid that the contact position between a corner and
the flat surface of the core is a stable position. In this way, the danger that the
tap-changer reaches an intermediate position between a position of electric contact
and the next one is avoided.
Brief description of the drawings
[0028] Further features and advantages of the invention will appear more evident upon reading
the detailed description of a preferred but not exclusive embodiment of a tap-changer
for oil-filled transformers according to the invention, shown as non-limiting example
with the help of the annexed drawings wherein:
FIG. 1 shows a tap-changer for oil-filled transformers in an axonometric view;
FIG. 2 shows a detail of the tap-changers of FIG. 1;
FIG. 3 shows a tap-changer according to the invention in partially exploded view;
FIG. 4 shows a detail of the tap-changer of FIG. 3.
Detailed description of some preferred embodiments
[0029] With reference to the above mentioned figures, and particularly to fig. 1, it is
described a tap-changer 1 for oil-filled transformers. It is used to change the electric
parameters of such a type of transformer and, therefore, it has dimensions and physical
features such as to bear high electric values.
[0030] As may be seen in the figures, the tap-changer
1 comprises a guide element
2 provided with a plurality of electric contacts
3 and a slide
4 sliding along such a guide element
2. The movement of the slide
4 with respect to the guide element
2 allows to change the electric connection between two or more electric contacts
3.
[0031] Typically, the latter consist of copper rods, while the guide element
2 and the slide
4 are made of plastic or bakelite material, but such details should not be considered
as limitative for different embodiments of the invention where the materials and the
conformation of such components is different.
[0032] Moreover, the number of guide elements and of slides should not be considered as
limitative for different embodiments since a tap-changer with more guide elements
and / or more slides is, nevertheless, falling within the protective scope of the
present patent.
[0033] According to an aspect of the invention, the tap-changer
1 further comprises moving means
5 of the slide
4 on the guide element
2 comprising a driving group
6. The latter has a rotatable portion
8 available to a user and a mechanical transmission
9 to transform the rotation of the rotatable portion
8 in a sliding movement of the slide
4 along the guide element
2.
[0034] In particular, the rotatable portion
8 comprises a knob
10 suitably shaped for the handle of the user, while the mechanical transmission consists
of a rack
12 integral with the slide
4 and engaged by a toothed gear
14. The latter and the knob
10 are mechanically connected by a shaft
15 so as a rotary movement impressed on the knob
10 is transformed in a rotary movement of the toothed gear
14.
[0035] Obviously, even the described embodiments of the rotatable portion and of the mechanical
transmission are features to be considered as non-limitative for the present invention.
[0036] As aforementioned, a mechanical transmission such as the one just described leads,
in view of a continuous rotation of the knob
10, to a continuous movement of the slide
4 along the guide element
2. This is not acceptable since not only there is a risk to arrange the transformer
in a configuration having electric parameters not in conformity to its use, but also
because the voltages and the electric currents involved may have values such as to
create sparks or electric shocks dangerous not only for the integrity of the transformer
thereof, but also of what surrounds it.
[0037] For such a reason, according to another aspect of the invention, the driving group
6 is shaped so as to define a plurality of discrete positions of the slide
4 with respect to the guide element
2, each one corresponding to a different electric connection between the electric contacts
3.
[0038] To achieve such a technical effect, according to another aspect of the invention
the moving means
5 comprise, as it is also observed in fig. 2, a ring-nut
20 that is put in rotation by the rotatable portion
8 of the driving group
6 and whose side surface has two or more flat surfaces
21.
[0039] In particular, in the embodiment that is described the ring-nut
20 has a side surface that, in cross section, has a polygonal shape, however, such a
detail should not be considered as limitative for different embodiments of the invention
where, for example, only a part of the side surface of the ring-nut has flat surfaces,
while the remaining part has a curved profile.
[0040] The profile of the ring-nut
20 that is observed in the figures has the flat surfaces
21 adjacent to each other, functionally arranged in succession on at least one portion
of the side surface and divided from one another by a corner, however, this should
not be considered as limitative for the invention.
[0041] Besides the ring-nut
20, according to a further aspect of the invention the moving means
5 comprise a core
23 placed laterally to the ring-nut
20, associated with the driving group
6 and counter-moved with the side surface of the ring-nut
20 by first elastic means not shown in the figures and typically, but not necessarily,
consisting of a spring.
[0042] In particular, the portion
24 of the core
23 faced towards the perimeter of the ring-nut
20 has a flat surface
25 susceptible to be arranged in one-to-one contact with one of the flat surfaces
21 of the side surface of the ring-nut
20 when the slide
4 and the guide element
2 are placed in correspondence to one of the discrete positions.
[0043] In the figures it is observed that the toothed gear
14 and the ring-nut
20 are integral with the shaft
15 put in rotation by the rotatable portion
8 of the driving group
6. Evidently, even such an aspect should not be considered as limitative for the invention.
Advantageously, in any case, a rotary movement of the rotatable portion
8, that is responsible for the translation of the slide
4 along the guide element
2, is not continuous, but it is subjected to a discretization due to the contrast between
the side surface of the ring-nut
20 and the core
23 moved thereto by the first elastic means.
[0044] Even more in detail, during such a rotary movement, the ring-nut
20 pushes back the core
23 until there is a one-to-one contact between the flat surface
25 of the core
23 and one of the flat surfaces
21 on the side surface of the ring-nut
20.
[0045] Such a configuration of one-to-one contact is advantageously stable and it allows
to block the rotation with the exception of the application of a high torque to the
rotatable portion
8. However, it goes against the rotation of the tap-changer
1 in a less emphasised manner with respect to what occurs in the prior art, thus making
the tap-changer
1 thereof more manageable.
[0046] Whereas, during the rotation the necessary torque is advantageously lower than the
starting one. Moreover, during the rotation the first elastic means promote the rotary
movement in their expansive thrust until a new one-to-one contact position is reached
between the core
23 and one flat surface
21 of the side surface of the ring-nut
20.
[0047] Previously, it has been said that the flat surfaces
21 are adjacent to each other and divided by a corner. Such a detail, together with
the above mentioned action of the first elastic means, advantageously allows to avoid
that the contact position between a corner and the flat surface
25 of the core
23 is a stable position. In this way, the danger that the tap-changer
1 reaches an intermediate position between a position of electric contact and the next
one is avoided.
[0048] With regards to the implementation of the core
25, in the embodiment that is described it has a substantially parallelepiped body,
but such a detail should not be considered as limitative for different embodiments
of the invention wherein the core has different shapes. In fact, what is important
is that it has a flat surface faced towards the side surface of the ring-nut.
[0049] According to another aspect of the invention, the knob
10 comprises, as shown in fig. 3 and in the detail of fig. 4, a first body
30 shaped for the handle of the user and integral with the shaft
15 in rotation. However, the first body
30 thereof is movable with respect to the shaft
15 along the longitudinal axis of the latter. Moreover, the knob
10 comprises a second body
31 stably coupled to the fixed body of the driving group
6 and susceptible to receive as abutment the first body
30.
[0050] In particular, the reciprocally facing portions of the first body
30 and of the second body
31 have projections and recesses susceptible to reciprocally interpenetrate when the
first body
30 is arranged as abutment on the second body
31 so as a rotary movement imposed on the first body
30 is prevented.
[0051] Therefore, operationally, when it is necessary to vary the configuration of the tap-changer
1, the first body
30 is pushed away by the second body
31 so as it is free to integrally rotate with the shaft
15. This action is allowed by the freedom of axial movement of the first body
30 with respect to the shaft
15. Therefore, the rotation of the first body
30 causes the rotation of the toothed gear
14 and of the ring-nut
20. Once the rotation is finished, the first body
30 is arranged again in contact with the second body
31 so as to prevent further involuntary rotation thereof. Such an action is promoted
by the presence of second elastic means, even typically but not necessarily consisting
of a spring, susceptible to be compressed when the first body
30 is pushed away by the second body
31. Therefore, after the rotation, the release of the first body
30 allows the return to the rest position of the second elastic means that bring the
first body
30 in contact with the second body
31.
[0052] Even more in detail about the embodiment shown in the figures, the projections and
the recesses comprise a pivot
32 protruding from the first body
30 and faced towards the second body
31 and a plurality of recesses
33 on the surface
34 of the latter faced towards the first body
30. Obviously, such recesses
33 are suitably shaped so as to be at least partially penetrated by the protruding pivot
32.
[0053] According to an aspect of the invention, the recesses
33 have smoothed edges
35 towards the bottom of the recesses
33 thereof so as to accompany the penetrating pivot
32. Jointly, the latter has a sharp shape at least at the end
36 faced towards the second body
31.
[0054] Advantageously, this allows to increase the automatic positioning of the tap-changer
1 on one of the discrete positions even when the rotation imposed to the knob
10 is not finished. In fact, in this case, the action of the first elastic means on
the core
23 with the shape of the perimeter of the ring-nut
20 that has flat surfaces
21 connected by corners, already allows to avoid, as aforementioned, the intermediate
positions of the tap-changer
1 by accompanying the rotary movement of the moving means 5 until the closest discrete
position. However, the particular shape of the protruding pivot 32 and the smoothed
edges 35 of the recesses 33 allow to better accompany such a conclusion of the rotary
movement that ensures the impossibility that the tap-changer 1 reaches an intermediate
configuration.
[0055] Therefore, in light of the foregoing, it is understood that the tap-changer for oil-filled
transformers of the invention fulfils all the intended objects.
[0056] In particular, its tap-changing between a contact position and the next one does
not require excessive effort as, instead, occurs in the prior art.
[0057] Furthermore, the tap-changer thereof ensures the exclusive tap-changing between contact
positions avoiding the risk of reaching unwanted intermediate positions. Such a disposition
is automatic in case of incomplete movement by the user.
[0058] Moreover, the tap-changer thus manufactured has costs almost equivalent to the equivalent
known tap-changers.
[0059] Although the tap-changer of the invention has been described with particular reference
to the annexed figures, reference numbers used in the description and in the claims
are used to improve the intelligence of the invention and are not limitative for the
claimed object.
1. A tap-changer for oil-filled electric transformers comprising:
- at least one guide element (2) provided with a plurality of electric contacts (3) and at least one slide (4) slidable along said guide element (2) to change the electric connection between two or more of said electric contacts
(3);
- moving means (5) of said slide (4) along said guide element (2) comprising a driving group (6) having at least one rotatable portion (8) available to a user and at least one mechanical transmission (9) to transform the rotation of said rotatable portion (8) in a sliding movement of said slide (4) along said guide element (2), said driving group (6) defining a plurality of discrete positions of said slide (4) with respect to said guide element (2), each one of said discrete positions corresponding to a different electric connection
between said electric contacts (3), characterised bysaid moving means (5) comprising:
- at least one ring-nut (20) susceptible to be put in rotation by said rotatable portion (8) of said driving group (6) and whose side surface has two or more flat surfaces (21);
- at least one core (23) associated with said driving group (6) and counter-moved with said side surface of said ring-nut (20) by first elastic means, the portion (24) of said core (23) faced towards said side surface of said ring-nut (20) having a flat surface (25) susceptible to be arranged one-to-one with the flat surfaces (21) of said side surface of said ring-nut (20) when said slide (4) and said guide element (2) are in correspondence to one of said discrete positions.
2. Tap-changer according to claim 1, wherein said flat surfaces (21) of said ring-nut (20) are adjacent to each other, functionally arranged in succession on at least one
portion of said side surface and divided from one another by a corner.
3. Tap-changer according to claim 1 or 2, wherein said side surface of said ring-nut
(20) has, in cross section, a polygonal shape.
4. Tap-changer according to one or more of the preceding claims, wherein said core (23) has a substantially parallelepiped body.
5. Tap-changer according to one or more of the preceding claims, wherein said driving
group (6) comprises a knob (10) available to the user and associated with a shaft (15) integral with said ring-nut (20).
6. Tap-changer according to claim 5, wherein said knob (10) comprises a first shaped body (30) for the handle of the user, integral with said shaft (15) in rotation and movable with respect to said shaft (15) along the longitudinal axis of said shaft (15), and a second body (31) integral with said driving group (6) and susceptible to receive as abutment said first body (30), the reciprocally facing portions of said first and second body (30, 31) having projections and recesses suitable to reciprocally interpenetrate when said
first body (30) is arranged as abutment on said second body (31) so as said second body (31) prevents rotary movements of said first body (30).
7. Tap-changer according to claim 6, comprising second elastic means susceptible to be
compressed when said first body (30) is moved away from said second body (31).
8. Tap-changer according to claim 6 or 7, wherein said first body (30) comprises a pivot (32) protruding towards said second body (31) and said second body (31) comprises a plurality of recesses (33) on its surface (34) faced towards said first body (30) and shaped so as to be at least partially penetrated by said protruding pivot (32).
9. Tap-changer according to claim 8, wherein said recesses (33) have edges (35) smoothed towards the bottom of said recesses (33) so as to guide said pivot (32) in penetration into said recesses (33) when said pivot (32) comes in contrast with said edges (35).
10. Tap-changer according to claim 8 or 9, wherein said pivot (32) has a sharp shape at least at the end (36) faced towards said second body (31) of said knob (10).
1. Stufenschalter für ölgefüllte elektrische Transformatoren, umfassend:
- mindestens ein Führungselement (2) versehen mit einer Mehrzahl elektrischer Kontakte
(3) und mindestens einem Gleitstück (4), das entlang des Führungselements (2) gleitbeweglich
ist, um die elektrische Verbindung zwischen zwei oder mehreren der elektrischen Kontakte
(3) zu verändern;
- Bewegungsmittel (5) des Gleitstücks (4) entlang des Führungselements (2) umfassend
eine Antriebsgruppe (6) aufweisend mindestens einen einem Benutzer zugänglichen drehbaren
Abschnitt (8) und mindestens ein mechanisches Getriebe (9) zum Übertragen der Drehung
des drehbaren Abschnitts (8) in eine gleitende Bewegung des Gleitstücks (4) entlang
des Führungselements (2), wobei die Antriebsgruppe (6) eine Mehrzahl einzelner Positionen
des Gleitstücks (4) in Bezug auf das Führungselement (2) definiert, wobei jede der
einzelnen Positionen einer unterschiedlichen elektrischen Verbindung zwischen den
elektrischen Kontakten (3) entspricht, dadurch kennzeichnet, dass
die Bewegungsmittel (5) umfassen:
- mindestens eine Ringmutter (20), die durch den drehbaren Abschnitt (8) der Antriebsgruppe
(6) in Drehung versetzt werden kann und deren Seitenfläche zwei oder mehrere flache
Flächen (21) aufweist;
- der Antriebsgruppe (6) mindestens ein Kern (23) zugeordnet ist und sie mit der Seitenfläche
der Ringmutter (20) durch erste elastische Mittel gegenbewegt wird, wobei der zur
Seitenfläche der Ringmutter (20) gerichtete Abschnitt (24) des Kerns (23) eine flache
Fläche (25) aufweist, die auf jeweils eine der flachen Flächen (21) der Seitenfläche
der Ringmutter (20) ausgerichtet sein kann, wenndas Gleitstück (4) und dasFührungselement
(2) in Übereinstimmung mit einer der einzelnen Positionen angeordnet sind.
2. Stufenschalter nach Anspruch 1, wobei die flachen Flächen (21) der Ringmutter (20)
nebeneinander angeordnet sind, funktionell nacheinander auf mindestens einem Abschnitt
der Seitenfläche angeordnet sind und voneinander durch eine Ecke getrennt sind.
3. Stufenschalter nach Anspruch 1 oder 2, wobei die Seitenfläche der Ringmutter (20)
im Querschnitt eine polygonale Form aufweist.
4. Stufenschalter nach einem oder mehreren der vorstehenden Ansprüche, wobei der Kern
(23) einen im Wesentlichen quaderförmigen Körper aufweist.
5. Stufenschalter nach einem oder mehreren der vorstehenden Ansprüche, wobei die Antriebsgruppe
(6) einen dem Benutzer zugänglichen Knopf (10) umfasst, der mit einer einstückig mit
der Ringmutter (20) ausgebildeten Welle (15) verbunden ist.
6. Stufenschalter nach Anspruch 5, wobei der Knopf (10) einen ersten Formkörper (30)
für den Handgriff des Benutzers umfasst, der Formkörper drehfest mit der Welle (15)
angeordnet und in Bezug auf die Welle (15) entlang der Längsachse der Welle (15) beweglich
ist, sowie einen zweiten Körper (31), der einstückig mit der Antriebsgruppe (6) ausgebildet
ist und den ersten Körper (30) als Widerlager aufnehmen kann, die sich gegenüberstehenden
Abschnitte des ersten und des zweiten Körpers (30, 31) aufweisend Vorsprünge und Vertiefungen,
die dafür geeignet sind, sich ineinander zu fügen, wenn der erste Körper (30) als
Widerlager des zweiten Körpers (31) angeordnet ist, sodass der zweite Körper (31)
Drehbewegungen des ersten Körpers (30) verhindert.
7. Stufenschalter nach Anspruch 6, umfassend zweite elastische Mittel, die zusammengedrückt
werden können, wenn der erste Körper (30) vom zweiten Körper (31) wegbewegt wird.
8. Stufenschalter nach Anspruch 6 oder 7, wobei der erste Körper (30) einen Zapfen (32)
umfasst, der in Richtung des zweiten Körpers (31) vorsteht, und der zweite Körper
(31) eine Mehrzahl von Vertiefungen (33) auf seiner Fläche (34) umfasst, die zum ersten
Körper (30) gerichtet und derart geformt sind, dass der vorstehende Zapfen (32) mindestens
teilweise in sie eindringt.
9. Stufenschalter nach Anspruch 8, wobei die Vertiefungen (33) Kanten (35) aufweisen,
die zum Boden der Vertiefungen (33) hin derart geglättet sind, dass sie den Zapfen
(32) beim Eindringen in die Vertiefungen (33) führen, wenn der Zapfen (32) auf die
Kanten (35) trifft.
10. Stufenschalter nach Anspruch 8 oder 9, wobei der Zapfen (32) mindestens an seinem
zum zweiten Körper (31) des Knopfes (10) gerichteten Ende (36) eine scharfe Kante
aufweist.
1. Changeur de prise pour transformateurs électriques à bain d'huile comprenant :
- au moins un élément de guidage (2) muni d'une pluralité de contacts électriques
(3) et d'au moins un coulisseau (4) pouvant coulisser le long dudit élément de guidage
(2) pour changer la connexion électrique entre deux ou plus de deux desdits contacts
électriques (3) ;
- des moyens de déplacement (5) dudit coulisseau (4) le long dudit élément de guidage
(2) comprenant un groupe d'entraînement (6) ayant au moins une partie rotative (8)
disponible pour un utilisateur et au moins une transmission mécanique (9) pour transformer
la rotation de ladite partie rotative (8) en un mouvement de coulissement dudit coulisseau
(4) le long dudit élément de guidage (2), ledit groupe d'entraînement (6) définissant
une pluralité de positions discrètes dudit coulisseau (4) par rapport audit élément
de guidage (2), chacune desdites positions discrètes correspondant à une connexion
électrique différente entre lesdits contacts électriques (3), caractérisé en ce que lesdits moyens de déplacement (5) comprennent :
- au moins un écrou annulaire (20) susceptible d'être mis en rotation par ladite partie
rotative (8) dudit groupe d'entraînement (6) et dont une surface latérale présente
deux ou plus de deux surfaces plates (21) ;
- au moins un noyau (23) associé audit groupe d'entraînement (6) et contre-déplacé
avec ladite surface latérale dudit écrou annulaire (20) par des premiers moyens élastiques,
la partie (24) dudit noyau (23) qui fait faceà ladite surface latérale dudit écrou
annulaire (20) ayant une surface plate (25) susceptible d'être disposée de manière
biunivoque avec les surfaces plates (21) de ladite surface latérale dudit écrou annulaire
(20) lorsque ledit coulisseau (4) et ledit élément de guidage (2) sont en correspondance
avec l'une desdites positions discrètes.
2. Changeur de prise selon la revendication 1, dans lequel lesdites surfaces plates (21)
dudit écrou annulaire (20) sont adjacentes les unes aux autres, fonctionnellement
disposées successivement sur au moins une partie de ladite surface latérale et séparées
les unes des autres par un coin.
3. Changeur de prise selon la revendication 1 ou 2, dans lequel ladite surface latérale
dudit écrou annulaire (20) a, en coupe transversale, une forme polygonale.
4. Changeur de prise selon l'une ou plusieurs des revendications précédentes, dans lequel
ledit noyau (23) a un corps sensiblement parallélépipédique.
5. Changeur de prise selon l'une ou plusieurs des revendications précédentes, dans lequel
ledit groupe d'entraînement (6) comprend un bouton (10) disponible pour l'utilisateur
et associé à un arbre (15) venu de matière avec ledit écrou annulaire (20).
6. Changeur de prise selon la revendication 5, dans lequel ledit bouton (10) comprend
un premier corps façonné (30) pour la poignée de l'utilisateur, venu de matière avec
ledit arbre (15) en rotation et mobile par rapport audit arbre (15) le long de l'axe
longitudinal dudit arbre (15), et un second corps (31) venu de matière avec ledit
groupe d'entraînement (6) et susceptible de recevoir comme appui ledit premier corps
(30), les parties réciproquement en regard dudit premier et dudit second corps (30,
31) ayant des saillies et des évidements adaptés pour s'interpénétrer de manière réciproque
lorsque ledit premier corps (30) est agencé comme appui sur ledit second corps (31)
de sorte que ledit second corps (31) empêche des mouvements de rotation dudit premier
corps (30).
7. Changeur de prise selon la revendication 6, comprenant des seconds moyens élastiques
susceptibles d'être comprimés lorsque ledit premier corps (30) est éloigné dudit second
corps (31).
8. Changeur de prise selon la revendication 6 ou 7, dans lequel ledit premier corps (30)
comprend un pivot (32) faisant saillie vers ledit second corps (31) et ledit second
corps (31) comprend une pluralité d'évidements (33) sur sa surface (34) qui font faceaudit
premier corps (30) et formés de manière à être pénétrés au moins partiellement par
ledit pivot en saillie (32).
9. Changeur de prise selon la revendication 8, dans lequel lesdits évidements (33) ont
des bords (35) lissés vers le fond desdits évidements (33) de manière à guider ledit
pivot (32) pour qu'il pénètre dans lesdits évidements (33) lorsque ledit pivot (32)
vientà l'opposédesdits bords (35).
10. Changeur de prise selon la revendication 8 ou 9, dans lequel ledit pivot (32) a une
forme pointue au moins à l'extrémité (36) qui fait faceaudit second corps (31) dudit
bouton (10).